Erin Campbell | Neuroscience | Best Researcher Award

Dr. Erin Campbell | Neuroscience | Best Researcher Award

The University of Newcastle, Australia

Dr. Erin J. Campbell is a distinguished scholar specializing in Early Modern European Art. Her academic journey began at the University of Toronto, where she earned her B.A., M.A., and Ph.D. in the History of Art. Her doctoral research focused on Italian art theory and criticism, particularly examining representations of old age in Cinquecento art. Dr. Campbell’s work is renowned for its interdisciplinary approach, integrating art history with cultural studies, gender studies, and material culture. She has authored and edited several influential publications, including “Old Women and Art in the Early Modern Domestic Interior” and “The Early Modern Italian Domestic Interior, 1400–1700: Objects, Spaces, Domesticities.” Her research has been supported by prestigious grants, such as the Social Sciences and Humanities Research Council (SSHRC) Insight Grant. Beyond her scholarly contributions, Dr. Campbell is recognized for her excellence in teaching and mentorship, having received the Faculty of Fine Arts Excellence in Teaching Award. Her current research continues to explore the intersections of art, domesticity, and the life course in early modern Europe. Through her extensive work, Dr. Campbell has significantly advanced the understanding of the cultural and artistic practices of the early modern period.

Professional Profile

Education

Dr. Erin J. Campbell’s academic foundation is rooted in the University of Toronto, where she completed her B.A. in History of Art in 1983, followed by an M.A. in 1985. Her scholarly pursuits culminated in a Ph.D. in History of Art in 1998, with a dissertation titled “Old-Age Style and the Resistance of Practice in Cinquecento Art Theory and Criticism,” under the supervision of Philip Sohm. During her M.A. program, Dr. Campbell participated in archaeological excavations in Kommos, Crete, which initially sparked her interest in Bronze Age archaeology. However, her passion for European art was rekindled during her doctoral studies, leading her to conduct extensive research in Venice, Florence, and Rome. This immersive experience deepened her appreciation for Italian art and informed her subsequent scholarly work. Her educational background laid the groundwork for a career dedicated to exploring the complexities of early modern art, domestic interiors, and cultural representations of aging. Dr. Campbell’s rigorous academic training has been instrumental in shaping her interdisciplinary approach to art history, allowing her to contribute valuable insights into the social and cultural dynamics of the early modern period.

Professional Experience

Dr. Erin J. Campbell has held various academic positions that reflect her expertise in art history. Prior to her appointment at the University of Victoria, she served as a sessional instructor at the University of Toronto from 1994 to 2002. In 2002, she joined the University of Victoria’s Department of Art History and Visual Studies, where she currently holds the position of Professor of Early Modern European Art. Throughout her tenure, Dr. Campbell has been actively involved in teaching, research, and academic service. She has contributed to the development of curricula that emphasize the interplay between art, culture, and society in early modern Europe. Her commitment to education is evident in her receipt of the Faculty of Fine Arts Excellence in Teaching Award in 2010. Additionally, Dr. Campbell has played a pivotal role in organizing exhibitions and conferences that bridge academic scholarship with public engagement, such as the “Life Stories” exhibition at the Legacy Art Gallery. Her professional experience underscores a dedication to fostering a comprehensive understanding of art history through both scholarly research and community involvement.

Research Interests

Dr. Erin J. Campbell’s research interests are centered on the cultural and artistic practices of early modern Europe, with a particular focus on the domestic interior. She investigates how art and material culture within domestic spaces reflect and shape societal norms, identities, and life stages. Her work delves into themes such as aging, gender, and family dynamics, exploring how these aspects are represented and negotiated through art. Dr. Campbell’s interdisciplinary approach combines art history with cultural studies, sociology, and anthropology, allowing for a nuanced analysis of the early modern period. Her SSHRC-supported project examines the role of art in the stages of life within the Bolognese domestic interior, highlighting the intersection of personal experience and artistic expression. By focusing on the lived experiences of individuals and the materiality of their environments, Dr. Campbell’s research offers valuable insights into the social fabric of early modern Europe. Her scholarship contributes to a deeper understanding of how art functions within everyday life and how it informs our comprehension of historical identities and relationships.

Research Skills

Dr. Erin J. Campbell possesses a diverse set of research skills that facilitate her comprehensive exploration of early modern art and culture. Her proficiency in archival research enables her to uncover primary sources that shed light on historical contexts and artistic practices. She is adept at visual analysis, allowing her to interpret artworks within their cultural and social frameworks critically. Dr. Campbell’s interdisciplinary methodology integrates perspectives from art history, cultural studies, and sociology, enriching her analyses of domestic interiors and material culture. Her collaborative work on edited volumes and exhibitions demonstrates her ability to synthesize diverse scholarly contributions into cohesive narratives. Additionally, Dr. Campbell’s experience in curating exhibitions, such as “Life Stories,” showcases her capacity to translate academic research into accessible public presentations. Her research skills are further evidenced by her successful acquisition of grants, including multiple SSHRC awards, which support her ongoing investigations into the intersections of art, aging, and domesticity in early modern Europe. Through these competencies, Dr. Campbell continues to make significant contributions to the field of art history.

Awards and Honors

Dr. Erin J. Campbell’s scholarly excellence has been recognized through numerous awards and honors. She received the William Nelson Prize in 2011 for the best article published in Renaissance Quarterly in 2010, highlighting the impact of her research on early modern art. Her commitment to teaching was acknowledged with the Faculty of Fine Arts Excellence in Teaching Award in 2010. Dr. Campbell has secured several prestigious grants, including the SSHRC Insight Grant (2016–2024) and the SSHRC Standard Research Grant (2009–2012), supporting her in-depth studies of domestic interiors and cultural representations of aging. Additional accolades include the University of Victoria Internal Research Grant (2013–2014) and the Learning and Teaching Curriculum Development Grant (2013), reflecting her dedication to both research and pedagogy. Her fellowship at the Centre for Studies in Religion and Society in 2009 further underscores her interdisciplinary engagement with art history. These honors attest to Dr. Campbell’s significant contributions to academia and her influence in shaping the discourse on early modern art and culture.

Conclusion

Dr. Erin J. Campbell’s career embodies a profound commitment to exploring the complexities of early modern European art through an interdisciplinary lens. Her scholarly work bridges the gap between art history and cultural studies, offering insightful analyses of how domestic spaces and material culture reflect broader societal dynamics. Through her teaching, research, and public engagement, Dr. Campbell has fostered a deeper understanding of the interplay between art, identity, and everyday life in the early modern period. Her numerous publications and curated exhibitions have not only advanced academic discourse but also made art history more accessible to wider audiences. Recognized for her excellence in both scholarship and education, Dr. Campbell continues to inspire students and colleagues alike. Her ongoing research promises to further illuminate the nuanced relationships between art, culture, and society, solidifying her status as a leading figure in the study of early modern European art.

Publications Top Notes

  • Title: Examining the predictive validity of alcohol‐seeking following punishment‐imposed abstinence in mice
    Authors: Linh Tran; Maria Kuznetsova; Elizabeth E. Manning; Erin J. Campbell
    Year: 2025

  • Title: Understanding sex differences and the translational value of models of persistent substance use despite negative consequences
    Authors: Xavier J. Maddern; Leigh C. Walker; Roberta G. Anversa; Andrew J. Lawrence; Erin J. Campbell
    Year: 2024

  • Title: A paraventricular thalamus to insular cortex glutamatergic projection gates “emotional” stress-induced binge eating in females
    Authors: Roberta G. Anversa; Erin J. Campbell; Leigh C. Walker; Sarah S. Ch’ng; Muthmainah Muthmainah; Frederico S. Kremer; Amanda M. Guimarães; Mia J. O’Shea; Suheng He; Christopher V. Dayas et al.
    Year: 2023

  • Title: Optogenetic recruitment of hypothalamic corticotrophin-releasing-hormone (CRH) neurons reduces motivational drive
    Authors: Caitlin S Mitchell; Erin J Campbell; Simon D Fisher; Laura M Stanton; Nicholas J Burton; Amy J Pearl; Gavan P McNally; Jaideep S Bains; Tamás Füzesi; Brett A Graham et al.
    Year: 2023

  • Title: M1 muscarinic receptor activation decreases alcohol consumption via a reduction in consummatory behavior
    Authors: Leigh C. Walker; Erin J. Campbell; Kate L. Huckstep; Nicola A. Chen; Christopher J. Langmead; Andrew J. Lawrence
    Year: 2022

  • Title: Repeated, moderate footshock reduces the propensity to relapse to alcohol seeking in female, but not male, iP rats
    Authors: Erin J. Campbell; Xavier J. Maddern; Andrew J. Lawrence
    Year: 2021

  • Title: It’s more than just interoception: The insular cortex involvement in alcohol use disorder
    Authors: Erin J. Campbell; Andrew J. Lawrence
    Year: 2021

  • Title: Sex differences in the neurochemistry of frontal cortex: Impact of early life stress
    Authors: Christina J. Perry; Erin J. Campbell; Katherine D. Drummond; Jeremy S. Lum; Jee Hyun Kim
    Year: 2021

  • Title: The 5‐HT2C receptor as a therapeutic target for alcohol and methamphetamine use disorders: A pilot study in treatment‐seeking individuals
    Authors: Erin J. Campbell; Yvonne Bonomo; Adam Pastor; Lisa Collins; Amanda Norman; Peter Galettis; Janice Johnstone; Andrew J. Lawrence
    Year: 2021

  • Title: Cocaine and amphetamine regulated transcript (CART) signalling in the central nucleus of the amygdala modulates stress-induced alcohol seeking
    Authors: Leigh C. Walker; Lexi J. Hand; Bethany Letherby; Kate L. Huckstep; Erin J. Campbell; Andrew J. Lawrence
    Year: 2021

Ehsan Kheirandish | Mathematics | Best Researcher Award

Dr. Ehsan Kheirandish | Mathematics | Best Researcher Award

Applied Math. Department, Shahid Bahonar University, Iran

Dr. Ehsan Kheirandish is a Ph.D. graduate in Applied Mathematics from Shahid Bahonar University of Kerman, Iran. His academic journey reflects a consistent focus on the fields of numerical analysis and numerical linear algebra, with a particular specialization in matrix theory and tensor computations. With a solid background in theoretical and computational mathematics, Dr. Kheirandish has contributed to the understanding and development of generalized inverses, including W-weighted core-EP matrices and bilateral inverses via Einstein products. His work has been published in reputable peer-reviewed journals and presented at national mathematical conferences. He also possesses strong teaching and mentoring capabilities, having taught courses such as differential equations and numerical methods, and assisted in subjects including matrix theory and linear algebra. As an emerging researcher, Dr. Kheirandish is building a strong foundation for a promising academic and research-oriented career. His consistent publication record, collaboration with senior researchers, and participation in academic seminars showcase a commitment to advancing mathematical science. While still early in his career, his academic rigor and research clarity place him in a favorable position for future accomplishments in applied and computational mathematics.

Professional Profile

Education

Dr. Ehsan Kheirandish pursued a structured academic path in the field of mathematics. He began his undergraduate studies in 2011 at Hakim Sabzevari University, Iran, where he earned a Bachelor of Science (B.S.) degree in Mathematics in 2014. During his undergraduate studies, he developed a foundational understanding of core mathematical principles, which laid the groundwork for his graduate education. He furthered his studies with a Master of Science (M.S.) degree in Mathematics at Tabriz University from 2015 to 2017. Here, he began to engage with more advanced topics in numerical analysis and linear algebra, likely initiating his first exposure to research methods and applications in matrix theory. From 2018 to 2024, Dr. Kheirandish completed his Doctor of Philosophy (Ph.D.) in Applied Mathematics at Shahid Bahonar University of Kerman, Iran. His doctoral research focused on specialized matrix computations and the theoretical aspects of generalized inverses. Throughout his academic training, Dr. Kheirandish was mentored by expert mathematicians and collaborated with established researchers, which helped shape his research interests. His education has been consistent, rigorous, and deeply aligned with his current research output, positioning him well for academic and professional contributions to the field of applied mathematics.

Professional Experience

Dr. Ehsan Kheirandish has gained professional experience primarily through academic teaching and research activities within Iranian universities. During his postgraduate studies, he took on responsibilities as a teaching assistant in several mathematics courses, including Basics of Matrices and Linear Algebra, Numerical Analysis, and Numerical Linear Algebra. His involvement in course instruction extended to leading undergraduate classes in Differential Equations and Numerical Calculations, where he helped students understand complex mathematical theories through practical examples and problem-solving sessions. This experience demonstrates his ability to communicate mathematical ideas effectively and support student learning. In addition to teaching, Dr. Kheirandish has been actively engaged in research projects, often in collaboration with senior scholars such as A. Salemi and Q. Wang. Although his professional roles have thus far remained within the academic sphere, his consistent participation in national seminars and mathematics conferences indicates a proactive effort to integrate research with professional development. Dr. Kheirandish’s academic positions have not yet extended to formal university faculty roles or international appointments; however, his profile reflects growing expertise and responsibility within academic institutions in Iran. His professional experience underscores a balance between teaching, mentorship, and original research contributions in applied mathematics.

Research Interest

Dr. Ehsan Kheirandish’s research interests lie at the intersection of numerical analysis and numerical linear algebra, with a particular focus on generalized inverses of matrices and tensors. His work centers on the theoretical development and practical computation of matrix inverses, including novel concepts like W-weighted core-EP matrices and generalized bilateral inverses. A significant part of his recent research also investigates the applications of these mathematical structures in solving singular tensor equations, which have implications in computational science, engineering, and data analysis. He is especially interested in extending classical linear algebra concepts to high-dimensional and structured data systems through operations such as the Einstein product. This interest aligns with current trends in applied mathematics that explore tensor analysis and multilinear algebra. His research is both mathematically rigorous and computationally relevant, indicating a commitment to bridging theory with practical applications. Dr. Kheirandish’s ongoing collaborations with established researchers suggest that he is contributing to the advancement of specialized topics in linear algebra. While his current research is highly focused, there is potential for expansion into interdisciplinary domains such as machine learning, scientific computing, and applied physics, where tensor-based methods are increasingly relevant.

Research Skills

Dr. Ehsan Kheirandish possesses a strong set of research skills rooted in theoretical mathematics and numerical computation. His expertise in numerical linear algebra is evident in his published work on generalized inverses, tensor algebra, and matrix decomposition techniques. He demonstrates proficiency in analytical problem-solving, mathematical modeling, and symbolic computation, which are essential for his research topics. His work with the Einstein product and singular tensor equations indicates advanced capabilities in high-dimensional algebraic computations. Furthermore, his publication record suggests competence in using mathematical software tools, possibly including MATLAB, Mathematica, or Python-based numerical libraries, although specific tools are not explicitly listed in his CV. Dr. Kheirandish also shows skill in academic writing and collaboration, having co-authored several articles in peer-reviewed journals. His presentations at national mathematics seminars and conferences demonstrate his ability to communicate complex mathematical ideas to academic audiences. Through his teaching assistant roles, he has further honed his skills in mentoring, instructional design, and conveying abstract concepts effectively. As an emerging researcher, Dr. Kheirandish combines a solid theoretical foundation with practical research techniques, positioning himself well for continued contributions to computational mathematics and applied analysis.

Awards and Honors

While the CV does not mention specific awards or honors formally received by Dr. Ehsan Kheirandish, his research output and academic activities reflect a level of merit and recognition within his field. He has published in respected journals such as the Journal of Computational and Applied Mathematics and Computational and Applied Mathematics, which indicates peer validation of his work. Additionally, his selection as a speaker at the 53rd Annual Iranian Mathematics Conference and the 11th Seminar on Linear Algebra and its Applications suggests recognition from the national academic community. These presentations provide important platforms for early-career researchers to showcase their work and receive feedback from experts, and his participation implies a growing reputation in specialized mathematics circles. While formal honors such as research fellowships, international grants, or best paper awards are not currently listed, Dr. Kheirandish’s academic path and publication record reveal a trajectory of scholarly achievement. With continued focus on expanding the visibility and impact of his research, he is well-positioned to receive future awards and distinctions in the field of applied and computational mathematics.

Conclusion

Dr. Ehsan Kheirandish is a highly capable and focused early-career researcher in applied mathematics, demonstrating commendable depth in numerical linear algebra and matrix theory. His doctoral research, combined with a consistent publication record and academic engagement, reflects a clear and structured approach to advancing knowledge in his chosen domain. Through teaching, assisting in core mathematical subjects, and publishing collaborative research, he has established himself as a promising academic in the Iranian mathematical community. Although his international exposure and interdisciplinary reach are currently limited, his strong foundational skills and specialized focus provide a solid platform for future growth. To further enhance his research profile, engaging in international collaborations, securing competitive funding, and exploring real-world applications of his mathematical work would be beneficial. Overall, Dr. Kheirandish exemplifies the qualities of a dedicated and methodical researcher with strong potential for academic leadership. His contributions thus far position him as a worthy candidate for recognitions such as the Best Researcher Award, especially in categories that value depth, consistency, and clarity of research focus.

Publications Top Notes

  • Title: Further characterizations of W-weighted core-EP matrices
    Authors: A. Salemi and Q. Wang
    Year: 2025
    Journal: Journal of Computational and Applied Mathematics

  • Title: Properties of core-EP matrices and binary relationships
    Authors: A. Salemi and N. Thome
    Year: 2024
    Journal: Computational and Applied Mathematics

  • Title: Generalized bilateral inverses of tensors via Einstein product with applications to singular tensor equations
    Authors: A. Salemi
    Year: 2023
    Journal: Computational and Applied Mathematics

  • Title: Generalized bilateral inverses
    Authors: A. Salemi
    Year: 2023
    Journal: Journal of Computational and Applied Mathematics

Tarek Naadia | Materials Science | Sustainable Engineering Leadership Award

Dr. Tarek Naadia | Materials Science | Sustainable Engineering Leadership Award

Lecturer researcher from Polytechnic School of Architecture and Urban Planning EPAU, Algeria

Dr. NAADIA Tarek is an accomplished Associate Professor in Civil Engineering with a specialization in the mechanics and rheology of self-compacting concrete. Holding a University Habilitation awarded in 2021 from USTHB, she is a respected teacher-researcher affiliated with the Polytechnic School of Architecture and Urbanism (EPAU) and a key member of the Civil Engineering Laboratory (LBE). Her work focuses on advancing sustainable construction materials, particularly optimizing the performance and flow properties of steel fiber reinforced self-compacting concrete using innovative experimental design techniques. Dr. Tarek’s research outputs have been published in high-impact journals, emphasizing both the mechanical and rheological characteristics of eco-friendly concrete formulations incorporating industrial by-products such as tuff and marble powders. She combines rigorous scientific methodology with practical applications that support the development of greener, more durable building materials. Throughout her academic career, Dr. Tarek has demonstrated a commitment to excellence in research, teaching, and collaborative innovation within the civil engineering community. Her expertise aligns well with global efforts to promote sustainability in infrastructure development and materials science. Dr. Tarek’s contributions position her as a valuable leader in sustainable engineering research, with a growing impact on both regional and international levels.

Professional Profile

Education

Dr. NAADIA Tarek completed her highest academic qualification with a University Habilitation in Civil Engineering, awarded on January 21, 2021, at the University of Science and Technology Houari Boumediene (USTHB). This qualification represents a significant academic milestone, signifying her capability to conduct independent research, supervise doctoral students, and contribute original knowledge to her field. Her educational journey has been deeply rooted in civil engineering, with a particular focus on materials science and mechanics. Although specific earlier degrees are not listed, the habilitation level indicates advanced expertise beyond the doctoral level, underscoring her extensive research experience and academic maturity. The habilitation also reflects a comprehensive understanding of both theoretical foundations and applied techniques related to concrete rheology, material optimization, and sustainable construction technology. Her educational background equips her with the tools necessary to drive innovation in civil engineering and to influence the development of sustainable materials that address modern construction challenges. The advanced training and scholarship involved in attaining the habilitation have prepared her for a leading role in academia and research, enabling her to contribute effectively to the scientific community and to mentor future engineers.

Professional Experience

Dr. NAADIA Tarek currently serves as an Associate Professor (Class A) and a Teacher-Researcher at the Polytechnic School of Architecture and Urbanism (EPAU). She is also an active member of the Civil Engineering Laboratory (LBE) at USTHB, where she engages in research on the mechanics of materials, focusing particularly on self-compacting concrete. Her professional role involves a blend of teaching, laboratory research, and project management. As a lecturer, she contributes to civil engineering curricula, imparting knowledge on construction materials, experimental techniques, and sustainability concepts. Within the laboratory, she conducts experimental research that integrates mechanical testing and rheological measurement methods to optimize concrete formulations. Dr. Tarek’s work includes the development of new procedures for measuring concrete flow behavior and the application of design of experiments (DOE) methodologies to fine-tune mix designs for performance and environmental benefits. Her position requires collaboration with fellow researchers, students, and industry stakeholders to ensure practical relevance and innovation. Over time, she has established herself as a key figure in her department, contributing to research projects and academic advancements that enhance sustainable engineering practices in Algeria and beyond.

Research Interests

Dr. NAADIA Tarek’s primary research interests lie at the intersection of civil engineering materials, rheology, and sustainability. She specializes in the study and optimization of self-compacting concrete (SCC), focusing on both its rheological (flow) properties and mechanical performance. Her work emphasizes the development of sustainable concrete formulations that incorporate industrial by-products such as marble and tuff powders, which serve as partial replacements for traditional cement or aggregates. This approach not only improves the environmental footprint of concrete but also enhances its durability and functionality. A significant aspect of her research involves applying the design of experiments (DOE) methodology to systematically optimize the composition and performance of steel fiber reinforced self-compacting concrete (SFRSCC). This method allows for efficient exploration of multiple variables and their interactions, facilitating robust improvements in concrete quality. Dr. Tarek also investigates the rheological behavior of concrete mixtures, developing new measurement procedures to better understand their flow characteristics under various conditions. Her research contributes to sustainable construction practices by promoting materials that reduce resource consumption, waste, and energy use while improving structural integrity and longevity.

Research Skills

Dr. NAADIA Tarek possesses a comprehensive skill set tailored to experimental civil engineering research, particularly in concrete materials science. She is proficient in rheological testing methods for assessing the flow behavior of self-compacting concrete, including the design and implementation of novel measurement procedures. Her expertise extends to mechanical characterization techniques for fiber-reinforced composites, enabling detailed analysis of strength, durability, and deformation properties. She employs advanced statistical tools, notably the design of experiments (DOE) approach, to optimize material formulations systematically, which enhances research efficiency and reliability. This methodological rigor allows her to manage complex variables and interactions within concrete mix designs, leading to reproducible and scalable results. Additionally, Dr. Tarek is skilled in interpreting data to improve concrete sustainability by integrating alternative materials such as marble and tuff powders. Her laboratory experience is complemented by academic teaching, where she applies her research skills to train future engineers in experimental and analytical techniques. Collectively, these competencies support her ability to innovate within sustainable engineering and to drive research that meets both academic standards and practical industry needs.

Awards and Honors

While the CV provided does not specify particular awards or honors received by Dr. NAADIA Tarek, her attainment of the University Habilitation itself represents a prestigious academic recognition. The habilitation is a significant scholarly achievement that acknowledges her capability for independent research and academic leadership. This advanced qualification is often regarded as a benchmark of excellence within many academic systems, highlighting her contributions to civil engineering research and education. Furthermore, Dr. Tarek’s publications in high-impact journals reflect peer recognition of the quality and relevance of her work. Her growing portfolio of research articles and her position as an Associate Professor at a leading institution further attest to her professional esteem and influence within her field. For future career development, formal awards for sustainable engineering or leadership in research could complement her credentials and enhance her profile internationally. Participation in academic societies, editorial boards, or conference leadership roles may also lead to additional honors, reinforcing her position as a research leader.

Conclusion

Dr. NAADIA Tarek is a promising and dedicated civil engineering researcher with a clear focus on sustainable construction materials. Her expertise in the rheology and optimization of self-compacting concrete, combined with her use of innovative experimental design methods, positions her at the forefront of sustainable materials research. Her academic qualifications, including a University Habilitation, and her role as an Associate Professor underscore her capability for independent research and leadership within academia. Although further international collaboration and formal recognition through awards could strengthen her profile, her existing contributions demonstrate significant potential for advancing sustainable engineering practices. Dr. Tarek’s work is particularly relevant to the global imperative of reducing environmental impacts in construction, supporting the development of eco-friendly materials that are both durable and efficient. With continued research productivity and expanded engagement with the international engineering community, she is well positioned to become a leading figure in sustainable engineering research and innovation.

Publications Top Notes

  • Rheological and mechanical optimization of a steel fiber reinforced self-compacting concrete using the design of experiments method
    Authors: D Gueciouer, G Youcef, N Tarek
    Journal: European Journal of Environmental and Civil Engineering, Volume 26, Issue 3, Pages 1097-1117
    Year: 2022
    Citations: 28

  • Development of a measuring procedure of rheological behavior for self compacting concrete
    Authors: T Naadia, Y Ghernouti, D Gueciouer
    Journal: Journal of Advanced Concrete Technology, Volume 18, Issue 6, Pages 328-338
    Year: 2020
    Citations: 4

  • Rheology-compactness-granularity correlations of self-compacting concretes
    Author: T Naadia
    Year: 2014
    Citations: 1

  • Optimization of Steel Fiber-Reinforced Self-Compacting Concrete with Tuff Powder
    Authors: T Naadia, D Gueciouer
    Journal: Construction and Building Materials, Volume 474, Article 140759
    Year: 2025

  • Formulation and characterization of steel fiber reinforced self-compacting concrete (SFRSCC) based on marble powder
    Authors: T Naadia, D Gueciouer, Y Ghernouti
    Journal: Selected Scientific Paper – Journal of Civil Engineering
    Year: 2025

  • Effect of the aggregates size on the rheological behaviour of the self compacting concrete
    Authors: T Naadia, F Kharchi
    Journal: International Review of Civil Engineering (IRECE), Volume 4, Issue 2, Pages 92-97
    Year: 2013


Mohamed Salim | Physics and Astronomy | Best Faculty Award

Prof. Mohamed Salim | Physics and Astronomy | Best Faculty Award

College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Sudan

Dr. Mohammed Salim M is an Assistant Professor in the Department of Physics at TKM College of Arts and Science, Kollam, Kerala. He specializes in high energy physics and detector simulation, with a research focus on the development and analysis of Resistive Plate Chambers (RPCs) for neutrino detection. Dr. Salim has contributed to significant projects such as the India-based Neutrino Observatory (INO), where he has been involved in both experimental and simulation studies. His work includes multifractal analysis of financial markets and studies on the efficiency and time resolution of RPCs. Dr. Salim has a strong publication record in reputed journals, reflecting his active engagement in research and collaboration within the physics community. His academic journey and professional experiences underscore his commitment to advancing the field of high energy physics.

Professional Profile

Education

Dr. Mohammed Salim M completed his Master of Science (M.Sc.) in Physics at Aligarh Muslim University (AMU) from 2005 to 2007. He then pursued his Doctor of Philosophy (Ph.D.) in Physics at the same institution, completing it in 2014. His doctoral research focused on aspects of high energy physics, laying the groundwork for his future contributions to detector simulation and neutrino observatory projects. AMU’s rigorous academic environment provided Dr. Salim with a solid foundation in both theoretical and experimental physics, equipping him with the skills necessary for his subsequent research endeavors.

Professional Experience

Since June 2, 2017, Dr. Mohammed Salim M has been serving as an Assistant Professor in the Department of Physics at TKM College of Arts and Science, Kollam. In this role, he has been actively involved in teaching undergraduate and postgraduate courses, mentoring students, and conducting research in high energy physics. His professional experience is marked by his participation in significant research projects, including those related to the India-based Neutrino Observatory. Dr. Salim’s academic and research activities contribute to the advancement of physics education and research at TKM College.

Research Interests

Dr. Salim’s research interests are centered on high energy physics and detector simulation. He has a particular focus on the development and optimization of Resistive Plate Chambers (RPCs) for use in neutrino detection experiments. His work encompasses both experimental studies and simulation-based analyses to enhance the performance and reliability of particle detectors. Additionally, Dr. Salim has explored the application of multifractal analysis in financial markets, demonstrating the interdisciplinary nature of his research endeavors.

Research Skills

Dr. Salim possesses a diverse set of research skills, including proficiency in detector simulation, experimental physics, and data analysis. He is experienced in conducting efficiency and time resolution studies of particle detectors, particularly RPCs. His expertise extends to multifractal analysis techniques applied to complex systems such as financial markets. Dr. Salim’s skill set enables him to contribute effectively to both theoretical and applied research projects in high energy physics.

Awards and Honors

While specific awards and honors are not detailed in the available information, Dr. Salim’s selection as an Assistant Professor at TKM College of Arts and Science and his active participation in significant research projects like the India-based Neutrino Observatory reflect recognition of his expertise and contributions to the field of physics. His publication record in reputable journals further attests to his standing in the academic community.

Conclusion

Dr. Mohammed Salim M is a dedicated physicist whose academic background and professional experiences have positioned him as a valuable contributor to the field of high energy physics. His work in detector simulation and participation in large-scale research projects like the India-based Neutrino Observatory highlight his commitment to advancing scientific knowledge. As an Assistant Professor, he continues to inspire and educate the next generation of physicists while actively engaging in research that bridges theoretical concepts and practical applications. Dr. Salim’s multifaceted expertise and ongoing contributions underscore his role as a significant figure in contemporary physics research.

Publications Top Notes

  1. Title: Deposited indium tin oxide (ITO) thin films by dc-magnetron sputtering on polyethylene terephthalate substrate (PET)
    Authors: MKM Ali, K Ibrahim, OS Hamad, MH Eisa, MG Faraj, F Azhari
    Year: 2011
    Citations: 74

  2. Title: State-of-the-art of sandwich composite structures: manufacturing—to—high performance applications
    Authors: A Kausar, I Ahmad, SA Rakha, MH Eisa, A Diallo
    Year: 2023
    Citations: 57

  3. Title: Antifungal activity of wide band gap Thioglycolic acid capped ZnS:Mn semiconductor nanoparticles against some pathogenic fungi
    Authors: Isam M. Ibrahim, Iftikhar M. Ali, Batol Imran Dheeb, Qays A. Abbas, MH Eisa
    Year: 2017
    Citations: 48

  4. Title: State-of-the-Art nanoclay reinforcement in green polymeric nanocomposite: From design to new opportunities
    Authors: A Kausar, I Ahmad, M Maaza, MH Eisa
    Year: 2022
    Citations: 39

  5. Title: Mesoporous ZnO/ZnAl2O4 mixed metal oxide-based Zn/Al layered double hydroxide as an effective anode material for visible light photodetector
    Authors: EY Salih, MFM Sabri, MH Eisa, K Sulaiman, A Ramizy, MZ Hussein
    Year: 2021
    Citations: 39

  6. Title: Study the antifungal activity of ZnS: Mn nanoparticles against some isolated pathogenic fungi
    Authors: BI Dheeb, SMA Al-dujayli, IM Ibrahim, QA Abbas, AH Ali, A Ramizy, MH Eisa
    Year: 2019
    Citations: 37

  7. Title: Antitumor effect of copper nanoparticles on human breast and colon malignancies
    Authors: M Al-Zharani, AA Qurtam, WM Daoush, MH Eisa, NH Aljarba, S Alkahtani
    Year: 2021
    Citations: 36

  8. Title: Photo-responsive analysis of branchy dendrites-like CuO/PS pn junction visible light photodetector
    Authors: EY Salih, A Ramizy, AS Mohammed, KH Ibnaouf, MH Eisa, O Aldaghri
    Year: 2024
    Citations: 33

  9. Title: Rapid Synthesis of Hexagonal-Shaped Zn(Al)O-MMO Nanorods for Dye-Sensitized Solar Cell Using Zn/Al-LDH as Precursor
    Authors: Ethar Yahya Salih, Asmiet Ramizy, Osamah Aldaghri, Mohd Faizul Mohd Sabri, MH Eisa
    Year: 2022
    Citations: 32

  10. Title: Applications of covalent organic frameworks for the elimination of dyes from wastewater: A state-of-the-arts review
    Authors: ZU Zango, AM Binzowaimil, OA Aldaghri, MH Eisa, A Garba, NM Ahmed
    Year: 2023
    Citations: 29

Ling Qin | Computer Science | Best Researcher Award

Ms. Ling Qin | Computer Science | Best Researcher Award

Professor from Inner Mongolia University of Science &Technology, China

Dr. Ling Qin is a dedicated and accomplished professor in the Department of Information Engineering at Inner Mongolia University of Science and Technology, China. Born in August 1979, she has established a strong academic and research background in optical communication, particularly in the areas of visible light communication (VLC), indoor positioning systems, and atmospheric laser communication. Over more than two decades of academic service at her home institution, she has progressed from teaching assistant to professor, showcasing a steady and determined career development. Dr. Qin’s research has significantly contributed to the understanding and enhancement of VLC systems in complex environments, such as intelligent transportation systems and indoor positioning applications using LED lighting. Her publication record is extensive, with numerous articles published in well-recognized journals indexed in SCI and EI. She has also successfully led multiple nationally funded research projects and holds a Chinese patent related to optical signal reception. With her expertise, innovation, and dedication, Dr. Qin exemplifies the qualities of a leading academic researcher. Her work bridges the gap between theory and practical application, making her a suitable and promising candidate for recognition in advanced communication engineering fields.

Professional Profile

Education

Dr. Ling Qin holds an impressive academic background in engineering and communication technologies. She began her higher education journey in 1997, earning a Bachelor of Engineering in Communication Engineering from Chengdu University of Information Technology in 2001. She continued to deepen her specialization in optical communication by pursuing a Master’s degree in Engineering at Xi’an University of Technology, where she studied from 2004 to 2007. Demonstrating a strong commitment to academic growth and expertise, Dr. Qin earned her Ph.D. in Engineering from Chang’an University in Xi’an between 2011 and 2018. Her doctoral research aligned closely with her professional focus, examining advanced communication theories and systems including visible light and laser-based communication. The comprehensive progression of her academic qualifications reflects her long-standing dedication to mastering both the theoretical and technical aspects of her field. These qualifications have formed a solid foundation for her research career, allowing her to contribute meaningfully to high-impact areas such as LED-based indoor positioning systems and signal processing in complex environments. Her education has not only equipped her with the necessary knowledge but has also driven her to pursue innovation and advanced research in optical communication technologies.

Professional Experience

Dr. Ling Qin has built a robust academic and professional career spanning over two decades at Inner Mongolia University of Science and Technology in Baotou, China. She began her professional journey in 2001 as a teaching assistant and steadily rose through academic ranks due to her contributions to teaching and research. Between 2007 and 2012, she served as a lecturer, where she began to engage more actively in research and curriculum development. From 2012 to 2018, she was promoted to associate professor, during which she established her research presence in visible light communication and indoor positioning systems. Since 2019, Dr. Qin has held the title of full professor, where she continues to lead research initiatives and mentor students in cutting-edge communication technologies. Throughout her career, she has taught various specialized courses, including visible light communication theory, positioning systems, and atmospheric laser communications. Her long-term affiliation with a single institution reflects both stability and deep institutional commitment, while her advancement through all faculty ranks highlights her professional development. As a professor, she plays a vital role in advancing research, guiding graduate students, and contributing to scientific innovation through her projects and publications.

Research Interests

Dr. Ling Qin’s research interests focus on key innovations in the field of optical wireless communication, particularly visible light communication (VLC), indoor positioning systems, and atmospheric laser communications. One of her primary areas of study is the development and optimization of visible light communication systems, where she explores theoretical models and practical designs to enhance LED-based communication in complex traffic and indoor environments. Her work addresses challenges such as background light interference, signal modulation, and system performance under real-world conditions. Another important focus of her research is indoor positioning technologies using LED lighting. She investigates the integration of machine learning techniques, such as convolutional and recurrent neural networks, into positioning algorithms to improve accuracy and reliability. Additionally, Dr. Qin is engaged in the research of atmospheric laser communication systems, where she works on coding theory, modulation/demodulation methods, and performance enhancement strategies for data transmission in free-space environments. Her research is interdisciplinary, often overlapping with applications in intelligent transportation, aerospace signal processing, and biomedical engineering. These interests not only reflect her command over complex engineering concepts but also demonstrate her forward-thinking approach in developing communication technologies that serve modern infrastructure and industry demands.

Research Skills

Dr. Ling Qin possesses advanced research skills that make her a leading expert in optical communication and system development. Her technical expertise includes the modeling and implementation of visible light communication (VLC) systems in challenging environments, particularly for intelligent transportation and indoor positioning. She is proficient in applying modulation and demodulation techniques, signal coding, beamforming, and error suppression in complex signal environments. Her research integrates machine learning algorithms—including convolutional neural networks (CNNs), gated recurrent units (GRUs), and transformer-based models—into communication and positioning systems to enhance accuracy and system performance. Dr. Qin is also skilled in developing system architectures using hardware components like FPGA (Field Programmable Gate Arrays), contributing to the practical realization of her theoretical models. Additionally, she has experience with spread spectrum technologies and power inversion techniques for background light suppression. Her research has also extended into interdisciplinary domains, such as carbon nanoparticle applications in medical systems and satellite navigation under plasma interference. These wide-ranging skills have been applied in various research projects funded by national and regional science foundations, demonstrating her ability to execute complex research plans and produce tangible outcomes. Her scientific rigor and technical versatility position her as a valuable asset in the field.

Awards and Honors

While Dr. Ling Qin’s profile does not list specific individual awards or honors, her consistent track record of securing competitive research funding from prestigious agencies reflects significant academic recognition. She has been awarded multiple research grants by the National Natural Science Foundation of China, supporting her projects on visible light communication, satellite navigation under plasma conditions, and laser communication systems. These grants indicate high confidence from the scientific community in the relevance and impact of her research. Additionally, she has contributed to the development of a nationally recognized patent for an optical signal receiving system, which further showcases her innovation and contribution to applied research. Her position as a full professor at Inner Mongolia University of Science and Technology is itself a recognition of her professional achievements and academic standing. Her numerous publications in high-impact journals and conferences indexed by SCI and EI are further testament to her contributions. While formal honors such as best paper or teaching awards are not noted, the cumulative evidence of her leadership in research, ability to secure funding, and innovation through patents suggests she has achieved considerable peer recognition in her field.

Conclusion

Dr. Ling Qin stands out as a strong and capable academic professional with notable contributions to the field of optical communication. Her career reflects a steady ascent through academic ranks, backed by a solid foundation in education and a deep commitment to research excellence. With a focused interest in visible light communication, indoor positioning systems, and laser-based communication technologies, she has contributed significantly to both theoretical advancements and real-world applications. Her skills in modeling complex communication systems, integrating artificial intelligence techniques, and implementing hardware-based solutions place her at the intersection of innovation and practicality. Although not heavily decorated with formal awards, her success in securing national-level research grants and her involvement in patent development speak volumes about her scientific impact. She has authored an extensive list of peer-reviewed publications that enhance her reputation and contribute to global scientific knowledge. Overall, Dr. Qin exemplifies the qualities of a modern researcher—technically skilled, innovative, and committed to advancing engineering solutions for real-world problems. Her profile makes her a highly suitable candidate for the Best Researcher Award, and recognition of her work would be well-deserved within the scientific community.

Publications Top Notes

  1. Title: CirnetamorNet: An ultrasonic temperature measurement network for microwave hyperthermia based on deep learning
    Authors: F. Cui, Y. Du, L. Qin, C. Li, X. Meng
    Year: 2025

  2. Title: Visible light channel modeling and application in underground mines based on transformer point clouds optimization
    Authors: J. Yu, X. Hu, Q. Wang, F. Wang, X. Kou
    Year: 2025

  3. Title: Fractional OAM Vortex SAR Imaging Based on Chirp Scaling Algorithm
    Authors: L. Yu, D. Yongxing Du, L. Baoshan Li, L. Qin, L. Chenlu Li
    Year: 2025

  4. Title: Indoor visible light positioning system based on memristive convolutional neural network
    Authors: Q. Chen, F. Wang, B. Deng, L. Qin, X. Hu
    Year: 2025
    Citations: 2

  5. Title: Visible light visual indoor positioning system for based on residual convolutional networks and image restoration
    Authors: D. Chen, L. Qin, L. Cui, Y. Du
    Year: 2025

Said Boumaraf | Computer Science | Environmental Engineering Impact Award

Dr. Said Boumaraf | Computer Science | Environmental Engineering Impact Award

Researcher and AI scientist from Khalifa University, UAE

Dr. Said Boumaraf is a distinguished researcher specializing in artificial intelligence (AI), computer vision, and medical imaging. Currently serving as a Postdoctoral Fellow at Khalifa University, his work primarily focuses on developing advanced AI methodologies to address complex challenges in visual recognition and healthcare diagnostics. Dr. Boumaraf has contributed significantly to the field through his involvement in projects that enhance remote sensing of gas flares and improve face parsing techniques under occlusion conditions. His research has been published in reputable journals and conferences, reflecting his commitment to advancing technological solutions for real-world problems. Collaborating with international teams, he continues to push the boundaries of AI applications, particularly in areas that intersect with environmental monitoring and medical diagnostics. Dr. Boumaraf’s dedication to research excellence positions him as a leading figure in the integration of AI technologies into practical applications.

Professional Profile

Education

Dr. Boumaraf’s academic journey is marked by a strong foundation in computer science and engineering. He earned his Ph.D. in Computer Science, where his research focused on the development of AI algorithms for medical image analysis. His doctoral studies provided him with in-depth knowledge of machine learning, deep learning, and their applications in healthcare. Prior to his Ph.D., Dr. Boumaraf completed his Master’s degree in Computer Engineering, during which he explored various aspects of computer vision and pattern recognition. His academic pursuits have equipped him with a robust skill set that bridges theoretical understanding and practical implementation of AI technologies. Throughout his education, Dr. Boumaraf has demonstrated a commitment to interdisciplinary research, integrating principles from computer science, engineering, and healthcare to develop innovative solutions. His educational background lays the groundwork for his ongoing contributions to the field of AI and its applications in critical domains.

Professional Experience

Dr. Boumaraf’s professional experience encompasses a range of roles that highlight his expertise in AI and its applications. As a Postdoctoral Fellow at Khalifa University, he has been instrumental in leading research projects that apply deep learning techniques to environmental and medical challenges. His work includes developing AI-enhanced methods for remote sensing of gas flares and creating robust face parsing algorithms capable of handling occlusions. Prior to his current role, Dr. Boumaraf collaborated with various research institutions and industry partners, contributing to projects that required the integration of AI into practical solutions. His experience extends to developing computer-aided diagnosis systems for breast cancer detection, showcasing his ability to apply AI in critical healthcare settings. Dr. Boumaraf’s professional journey reflects a consistent focus on leveraging AI to address real-world problems, underscoring his role as a key contributor to the advancement of intelligent systems in diverse applications.

Research Interests

Dr. Boumaraf’s research interests lie at the intersection of artificial intelligence, computer vision, and medical imaging. He is particularly focused on developing deep learning models that enhance the accuracy and efficiency of image analysis in complex scenarios. His work on occlusion-aware face parsing addresses challenges in visual recognition where parts of the face are obscured, improving the reliability of facial analysis systems. In the medical domain, Dr. Boumaraf has contributed to creating AI-driven diagnostic tools that assist in the early detection of diseases such as breast cancer. His research also explores the application of AI in environmental monitoring, specifically in the remote sensing of gas flares, which has implications for energy management and environmental protection. Dr. Boumaraf’s interdisciplinary approach combines theoretical research with practical applications, aiming to develop AI solutions that can be effectively integrated into various sectors.

Research Skills

Dr. Boumaraf possesses a comprehensive set of research skills that enable him to tackle complex problems in AI and its applications. His proficiency in deep learning frameworks such as TensorFlow and PyTorch allows him to design and implement sophisticated neural network architectures. He is skilled in image processing techniques, including segmentation, feature extraction, and classification, which are essential for medical image analysis and computer vision tasks. Dr. Boumaraf is adept at handling large datasets, employing data augmentation and preprocessing methods to enhance model performance. His experience with algorithm optimization and model evaluation ensures the development of efficient and accurate AI systems. Additionally, his collaborative work with multidisciplinary teams demonstrates his ability to integrate AI solutions into broader technological and scientific contexts. Dr. Boumaraf’s research skills are instrumental in advancing AI applications across various domains.

Awards and Honors

Throughout his career, Dr. Boumaraf has received recognition for his contributions to the field of artificial intelligence. His research publications in esteemed journals and conferences have garnered attention from the academic community, reflecting the impact of his work. While specific awards and honors are not detailed in the available information, his role as a Postdoctoral Fellow at a leading institution like Khalifa University signifies a level of esteem and acknowledgment of his expertise. Dr. Boumaraf’s ongoing collaborations and research endeavors continue to position him as a respected figure in the AI research community.

Conclusion

Dr. Said Boumaraf stands out as a dedicated researcher whose work bridges the gap between artificial intelligence theory and practical application. His contributions to computer vision and medical imaging demonstrate a commitment to developing AI solutions that address real-world challenges. Through his role at Khalifa University, Dr. Boumaraf continues to engage in cutting-edge research, collaborating with international teams to push the boundaries of what AI can achieve. His interdisciplinary approach and robust research skills make him a valuable asset to the scientific community, and his work holds promise for significant advancements in both environmental monitoring and healthcare diagnostics. As AI continues to evolve, researchers like Dr. Boumaraf play a crucial role in ensuring that these technologies are harnessed effectively for the betterment of society.

Publications Top Notes

  • Title: A new transfer learning based approach to magnification dependent and independent classification of breast cancer in histopathological images
    Authors: S. Boumaraf, X. Liu, Z. Zheng, X. Ma, C. Ferkous
    Year: 2021
    Citations: 169

  • Title: Conventional machine learning versus deep learning for magnification dependent histopathological breast cancer image classification: A comparative study with visual explanation
    Authors: S. Boumaraf, X. Liu, Y. Wan, Z. Zheng, C. Ferkous, X. Ma, Z. Li, D. Bardou
    Year: 2021
    Citations: 83

  • Title: A New Computer-Aided Diagnosis System with Modified Genetic Feature Selection for BI-RADS Classification of Breast Masses in Mammograms
    Authors: S. Boumaraf, X. Liu, C. Ferkous, X. Ma
    Year: 2020
    Citations: 80

  • Title: A new three-stage curriculum learning approach for deep network based liver tumor segmentation
    Authors: H. Li, X. Liu, S. Boumaraf, W. Liu, X. Gong, X. Ma
    Year: 2020
    Citations: 12

  • Title: Deep distance map regression network with shape-aware loss for imbalanced medical image segmentation
    Authors: H. Li, X. Liu, S. Boumaraf, X. Gong, D. Liao, X. Ma
    Year: 2020
    Citations: 11

  • Title: A multi-scale and multi-level fusion approach for deep learning-based liver lesion diagnosis in magnetic resonance images with visual explanation
    Authors: Y. Wan, Z. Zheng, R. Liu, Z. Zhu, H. Zhou, X. Zhang, S. Boumaraf
    Year: 2021
    Citations: 10

  • Title: AI-enhanced gas flares remote sensing and visual inspection: Trends and challenges
    Authors: M. Al Radi, P. Li, S. Boumaraf, J. Dias, N. Werghi, H. Karki, S. Javed
    Year: 2024
    Citations: 6

  • Title: Web3-enabled metaverse: the internet of digital twins in a decentralised metaverse
    Authors: N. Aung, S. Dhelim, H. Ning, A. Kerrache, S. Boumaraf, L. Chen, M.T. Kechadi
    Year: 2024
    Citations: 6

  • Title: U-SDRC: a novel deep learning-based method for lesion enhancement in liver CT images
    Authors: Z. Zheng, L. Ma, S. Yang, S. Boumaraf, X. Liu, X. Ma
    Year: 2021
    Citations: 5

  • Title: Bi-Directional LSTM Model For Classification Of Vegetation From Satellite Time Series
    Authors: K. Bakhti, M.E.A. Arabi, S. Chaib, K. Djerriri, M.S. Karoui, S. Boumaraf
    Year: 2020
    Citations: 5

Anna Georgiades | Psychology | Best Researcher Award

Dr. Anna Georgiades | Psychology | Best Researcher Award

Lecturer in Early Intervention in Psychosis, Deputy Program Director in Early Intervention in Psychosis MSc, & Senior Clinical Psychologist,  Institute of Psychiatry, Psychology, & Neuroscience, King’s College London, United Kingdom

Dr. Anna Georgiadou is a distinguished archaeologist specializing in Early Iron Age Cyprus. Currently serving as a Research Scientist at the Archaeological Research Unit of the University of Cyprus, she has significantly contributed to the understanding of Cypriot material culture, particularly through her extensive work on pottery analysis. Her research delves into the technological and stylistic aspects of ceramic production, offering insights into the socio-economic and cultural dynamics of ancient Cypriot societies. Dr. Georgiadou’s interdisciplinary approach combines traditional archaeological methods with advanced scientific techniques, enabling a comprehensive examination of ancient artifacts. Her collaborative projects span various regions, including Cyprus, Greece, Israel, Egypt, Turkey, and Lebanon, reflecting her commitment to exploring the interconnectedness of Mediterranean cultures during the Iron Age. Through her scholarly endeavors, Dr. Georgiadou has published numerous articles and chapters, contributing valuable knowledge to the field of Mediterranean archaeology. Her work not only enhances academic understanding but also aids in the preservation and appreciation of cultural heritage. As an active member of the archaeological community, she continues to influence contemporary studies on ancient Mediterranean civilizations.

Professional Profile

Education

Dr. Georgiadou commenced her academic journey with a Bachelor of Arts in Archaeology and History of Art from the National and Kapodistrian University of Athens in 2005. She pursued postgraduate studies in Mediterranean Archaeology at the University of Aix-Marseille, France, during 2006–2007. Her academic pursuits culminated in a Ph.D. jointly awarded by the University of Aix-Marseille and the University of Athens in December 2013. Her doctoral dissertation, titled “La céramique géométrique de Chypre (XIe–VIIIe s. av. J.-C.): étude des ateliers régionaux,” focused on the study of regional pottery workshops in Early Iron Age Cyprus, highlighting the diversity and distribution of ceramic production across the island. This research provided a foundational understanding of the technological and stylistic variations in Cypriot ceramics, contributing significantly to the field of Mediterranean archaeology. Her educational background reflects a strong emphasis on interdisciplinary studies, combining art history, archaeology, and scientific analysis to explore ancient cultures. This comprehensive academic training has equipped her with the skills necessary to conduct in-depth research and contribute meaningfully to the study of ancient Mediterranean societies.

Professional Experience

Dr. Georgiadou’s professional career encompasses a range of academic and research positions. In 2014, she served as a post-doctoral researcher at the Zinman Institute of Archaeology, University of Haifa, Israel. Between 2015 and 2017, she undertook post-doctoral research at the University of Lyon 2, France. In 2016, she was appointed as a teaching associate at the Department of History and Archaeology, University of Cyprus. Currently, she holds the position of Research Scientist at the Archaeological Research Unit, University of Cyprus. Her professional experience includes participation in various research and excavation projects across the Mediterranean, notably in Cyprus, Greece, Israel, Egypt, Turkey, and Lebanon. She has been involved in significant projects such as the MuseCo project, focusing on the interdisciplinary study of Iron Age pottery from Cypriot polities, and the SCAUT project (Saving Cypriot Antiquities Under Threat), undertaken in collaboration with the Department of Antiquities, Cyprus. Her roles in these projects have encompassed research coordination, fieldwork, and the application of scientific methodologies to archaeological materials. Through these experiences, Dr. Georgiadou has demonstrated her expertise in archaeological research and her commitment to the preservation of cultural heritage.

Research Interests

Dr. Georgiadou’s research interests are centered on the archaeology of the Eastern Mediterranean, with a particular focus on Early Iron Age Cyprus. She specializes in the study of material culture, emphasizing pottery analysis to understand technological practices, stylistic developments, and socio-economic aspects of ancient societies. Her work investigates the production, distribution, and consumption of ceramics, providing insights into regional interactions and cultural exchanges during the Iron Age. She is also interested in the application of scientific techniques, such as petrography and geochemical analysis, to archaeological materials, enhancing the understanding of ancient manufacturing processes and trade networks. Her interdisciplinary approach combines traditional archaeological methods with advanced scientific analyses, contributing to a holistic understanding of past human behaviors and cultural dynamics. Additionally, she explores themes related to mortuary practices, textile production, and the organization of ancient workshops, further enriching the knowledge of ancient Mediterranean civilizations. Her research contributes significantly to the broader discourse on cultural identity, technological innovation, and economic systems in antiquity.

Research Skills

Dr. Georgiadou possesses a diverse set of research skills that facilitate comprehensive archaeological investigations. Her expertise includes ceramic typology and stylistic analysis, allowing for the classification and interpretation of pottery artifacts. She is proficient in petrographic analysis, which involves the microscopic examination of thin sections of ceramics to determine their mineralogical composition and provenance. Her skills extend to geochemical techniques, such as X-ray fluorescence (XRF), enabling the elemental analysis of archaeological materials. She is adept at integrating scientific data with archaeological context to reconstruct ancient production technologies and trade networks. Her experience in field archaeology encompasses excavation methodologies, stratigraphic analysis, and the documentation of archaeological contexts. She is also skilled in coordinating interdisciplinary research projects, managing collaborations among specialists in various scientific and humanities disciplines. Her ability to synthesize data from multiple sources contributes to a nuanced understanding of ancient societies. Through her methodological rigor and interdisciplinary approach, Dr. Georgiadou advances the field of Mediterranean archaeology.

Awards and Honors

While specific awards and honors are not detailed in the available information, Dr. Georgiadou’s professional trajectory reflects recognition within the academic community. Her appointments to prestigious research institutions, such as the Zinman Institute of Archaeology and the University of Lyon 2, indicate acknowledgment of her scholarly contributions. Her involvement in significant research projects, including MuseCo and SCAUT, further demonstrates her standing in the field. Her publications in reputable academic journals and edited volumes contribute to her professional reputation. Additionally, her participation in international conferences and collaborative research initiatives underscores her active engagement with the global archaeological community. These accomplishments collectively signify her esteemed position among peers and her ongoing contributions to the advancement of archaeological scholarship.

Conclusion

Dr. Anna Georgiadou’s career exemplifies a profound commitment to the study of ancient Mediterranean cultures, particularly through her specialization in Early Iron Age Cypriot archaeology. Her interdisciplinary approach, combining traditional archaeological methods with scientific analyses, has yielded significant insights into ancient production technologies, trade networks, and cultural practices. Her extensive fieldwork and collaborative projects across the Mediterranean region reflect her dedication to uncovering the complexities of past societies. Through her research, publications, and active participation in academic discourse, she continues to contribute valuable knowledge to the field of archaeology. Her work not only enhances scholarly understanding but also plays a vital role in the preservation and appreciation of cultural heritage. As she advances in her career, Dr. Georgiadou remains a prominent figure in Mediterranean archaeology, inspiring future research and fostering interdisciplinary collaboration.

Publications Top Notes

  • Title: Disease-associated epigenetic changes in monozygotic twins discordant for schizophrenia and bipolar disorder
    Authors: EL Dempster, R Pidsley, LC Schalkwyk, S Owens, A Georgiades, F Kane, …
    Year: 2011
    Citations: 553

  • Title: Age-related differences and heritability of the perisylvian language networks
    Authors: S Budisavljevic, F Dell’Acqua, FV Rijsdijk, F Kane, M Picchioni, P McGuire, …
    Year: 2015
    Citations: 66

  • Title: Heritability of the limbic networks
    Authors: S Budisavljevic, JM Kawadler, F Dell’Acqua, FV Rijsdijk, F Kane, …
    Year: 2016
    Citations: 59

  • Title: Stroop-test interference in bipolar disorder
    Authors: E Kravariti, K Schulze, F Kane, S Kalidindi, E Bramon, M Walshe, …
    Year: 2009
    Citations: 47

  • Title: Psychosocial stress, interpersonal sensitivity, and social withdrawal in clinical high risk for psychosis: a systematic review
    Authors: A Georgiades, A Almuqrin, P Rubinic, K Mouhitzadeh, S Tognin, …
    Year: 2023
    Citations: 31

  • Title: The association between psychosocial stress, interpersonal sensitivity, social withdrawal and psychosis relapse: A systematic review
    Authors: A Almuqrin, A Georgiades, K Mouhitzadeh, P Rubinic, A Mechelli, …
    Year: 2023
    Citations: 25

  • Title: Modifying illness beliefs in recent onset psychosis carers: Evaluating the impact of a cognitively focused brief group intervention in a routine service
    Authors: J Onwumere, N Glover, S Whittaker, S Rahim, L Chu Man, G James, …
    Year: 2018
    Citations: 24

  • Title: New insights into the endophenotypic status of cognition in bipolar disorder: genetic modelling study of twins and siblings
    Authors: A Georgiades, F Rijsdijk, F Kane, I Rebollo-Mesa, S Kalidindi, KK Schulze, …
    Year: 2016
    Citations: 21

  • Title: Interaction between effects of genes coding for dopamine and glutamate transmission on striatal and parahippocampal function
    Authors: A Pauli, DP Prata, A Mechelli, M Picchioni, CHY Fu, CA Chaddock, …
    Year: 2013
    Citations: 21

  • Title: The role of culture on the phenomenology of hallucinations and delusions, explanatory models, and help‐seeking attitudes: A narrative review
    Authors: M Ghanem, C Evangeli‐Dawson, A Georgiades
    Year: 2023
    Citations: 15

Swati Gangwar | Chemical Engineering | Women Researcher Award

Ms. Swati Gangwar | Chemical Engineering | Women Researcher Award

Research scholar from Indian institute of Technology, India

Swati Gangwar is a dedicated research scholar currently pursuing her PhD in Chemical Engineering at the Indian Institute of Technology (IIT), Jammu. With a strong academic foundation marked by a first-class chemical engineering degree from AITH Kanpur and a Master’s degree from Harcourt Butler Technical University (HBTU), Kanpur, she has steadily advanced her expertise in thermal hydraulics and fluid flow. Under the mentorship of P.K. Vijayan, a distinguished expert with extensive experience at BARC, Swati has focused on natural circulation systems, which are critical in energy-efficient and safe passive heat transfer technologies. Her research contributions include experimental, numerical, and analytical studies of thermosyphon heat transport devices, indoor solar cooktops, and passive cooling systems applicable to renewable energy and nuclear safety sectors. Swati’s work has been published in prestigious international journals such as Nuclear Engineering and Design and IEEE Electrification Magazine, demonstrating her ability to contribute novel insights to her field. With ongoing projects and collaborative efforts, she continues to advance research that bridges theoretical understanding and practical innovation in heat transfer mechanisms, positioning herself as a promising leader in chemical engineering research.

Professional Profile

Education

Swati Gangwar completed her Bachelor of Technology (B.Tech) degree in Chemical Engineering from AITH Kanpur in 2016, graduating with first-class honors. She pursued her Master of Technology (M.Tech) in Chemical Engineering at Harcourt Butler Technical University (HBTU), Kanpur, completing it in 2019. Her graduate studies laid a solid foundation in core chemical engineering principles, with a growing interest in thermal systems and fluid mechanics. Currently, she is enrolled in a PhD program at the Indian Institute of Technology Jammu, focusing on heat transfer and fluid flow under the guidance of Professor P.K. Vijayan. The doctoral program enables her to engage deeply in research related to natural circulation loops, thermosyphon heat transport devices, and their applications in sustainable energy systems and nuclear safety. Her education trajectory reflects a consistent focus on advancing her expertise in thermal hydraulics and related engineering challenges, supported by rigorous academic training and research exposure at premier Indian institutions.

Professional Experience

Swati’s professional experience is primarily academic and research-oriented, centered on her PhD studies at IIT Jammu. She has actively contributed to research projects involving thermosyphon heat transport devices and natural circulation systems, focusing on experimental design, numerical modeling, and performance analysis. Her collaboration with her supervisor, Prof. P.K. Vijayan, who has a rich background in nuclear thermal hydraulics and reactor engineering, has enriched her exposure to practical challenges in energy systems design and safety. Swati has also worked on projects related to solar indoor cooktops, a novel application of thermosyphon technology, reflecting her ability to translate research into practical innovations. She has been involved in publishing several peer-reviewed papers in high-impact journals and presenting findings at scientific forums, contributing to the academic community. Although her experience is mainly research-focused, it reflects strong technical skills, teamwork in collaborative environments, and dedication to advancing applied thermal engineering solutions.

Research Interests

Swati’s research interests lie in the field of heat transfer, fluid dynamics, and passive cooling systems. Specifically, she focuses on natural circulation loops (NCLs) and thermosyphon heat transport devices (THTDs), which utilize buoyancy-driven flow to enable efficient heat transfer without mechanical pumps. Her work encompasses both single-phase and two-phase natural circulation systems, with a strong emphasis on stability analysis and flow instabilities. She is particularly interested in developing innovative applications of these passive heat transfer technologies, such as solar indoor cooking devices, passive fuel cooling systems in small modular reactors (SMRs), and sustainable energy solutions like solar space heating. Swati’s research aims to address critical challenges in renewable energy and nuclear safety by optimizing thermal-hydraulic performance and enhancing system stability. Her work bridges theoretical modeling, numerical simulations, and experimental validations to provide comprehensive insights into these systems’ behavior under various boundary conditions, contributing to safer and more efficient energy technologies.

Research Skills

Swati possesses a robust set of research skills combining experimental, analytical, and computational techniques. She is proficient in designing and conducting experiments related to thermosyphon heat transport devices and natural circulation loops, including setup fabrication, instrumentation, and data acquisition. Her skills include numerical modeling and simulation using system codes to predict thermo-hydraulic behavior and flow stability. She has experience in analytical methods for stability criteria development and performance analysis under varying operating conditions. Swati’s ability to integrate experimental data with numerical models allows her to validate and refine theoretical predictions effectively. Additionally, she has strong scientific writing skills, demonstrated through multiple publications in reputed journals. Her research also involves using computational fluid dynamics (CFD) tools for detailed flow analysis. Collaborating with multidisciplinary teams and managing complex research projects further highlights her organizational and teamwork capabilities. Overall, Swati’s research skills position her to make meaningful contributions to passive cooling and heat transfer technologies.

Awards and Honors

Swati Gangwar’s recognition primarily stems from her academic excellence and research contributions during her ongoing PhD. While specific external awards or honors were not explicitly mentioned, her work’s acceptance and publication in high-impact, peer-reviewed journals such as Nuclear Engineering and Design and IEEE Electrification Magazine are significant markers of her research quality and impact. Being mentored by a leading expert in the field, Prof. P.K. Vijayan, also adds to her academic prestige. Her participation in advanced research projects and collaborations, coupled with acceptance of her work in reputed journals, reflects peer recognition within the scientific community. Future recognition may include awards related to innovations in renewable energy or nuclear safety, given the societal relevance of her research areas. Encouragingly, her trajectory and ongoing scholarly output suggest a promising career with potential for further accolades and honors as she continues to contribute to her field.

Conclusion

Swati Gangwar exemplifies a promising young researcher with strong academic foundations, relevant professional experience, and a clear focus on impactful research in thermal hydraulics and fluid flow. Her work on natural circulation loops and thermosyphon devices addresses important challenges in renewable energy and nuclear safety, combining theoretical, numerical, and experimental approaches. With multiple high-quality journal publications and ongoing innovative projects, she is steadily establishing herself as a capable and impactful researcher. To strengthen her profile further, opportunities to demonstrate leadership in research projects, increase engagement with the wider scientific community through conferences, and pursue external funding or patents would be beneficial. Overall, Swati’s dedication and contributions position her well as a deserving candidate for the Women Researcher Award, highlighting her potential as a future leader in engineering research.

Publications Top Notes

  1. Title: Insight on the steady-state performance of single-phase Natural circulation loops
    Year: 2025
    Authors: Swati Gangwar, P. K. Vijayan, Goutam Dutta
    Journal: Nuclear Engineering and Design, Volume 440, 114128

  2. Title: Insights on the instability and stabilizing techniques for natural circulation loops
    Year: 2025
    Authors: P. K. Vijayan, Swati Gangwar, Dev Banitia, U. C. Arunachala, S. Nakul, D. N. Elton, K. Varun
    Journal: Nuclear Engineering and Design, Volume 438, 114017

  3. Title: Intrinsically Safe Thermohydraulic Designs for SMRs: Design advantages and challenges
    Year: 2024
    Authors: P. K. Vijayan, Swati Gangwar
    Journal: IEEE Electrification Magazine, Volume 12, Issue 4, pp. 75–83
    DOI: 10.1109/MELE.2024.3473332

  4. Title: CFD analysis of the steady-state performance of a cooktop integrated Thermosyphon heat transport device with two bends
    Year: 2025
    Authors: Sonu Kumar, Pallippattu Krishnan Vijayan, Swati Gangwar, Satya Sekhar Bhogilla
    Journal: Heat Transfer Engineering Journal (Accepted for publication)

  5. Title: Experimental performance of a novel solar indoor cooktop using THTD
    Year: 2024
    Authors: Swati Gangwar, A. Budakoti, S. S. Bhogilla, G. Dutta, P. K. Vijayan
    Journal: ASTFE Digital Library, Begell House Inc.

ZAIN ABBAS | Biological Sciences | Outstanding Scientist Award

Mr. ZAIN ABBAS | Biological Sciences | Outstanding Scientist Award

Researcher from Anhui Science and Technology University, China

Zain Abbas is a dedicated and emerging researcher in the field of agronomy, currently pursuing his M.Phil. in Agronomy and Seed Industry at Anhui Science and Technology University in China. With a strong academic background and hands-on experience in plant breeding, tissue culture, and crop physiology, Zain has positioned himself as a promising contributor to agricultural science. His research is primarily focused on the influence of magnesium oxide (MgO) nanoparticles on maize growth and resilience, aiming to leverage nanotechnology for sustainable agriculture and improved crop productivity. Alongside his primary research, he has also explored transcriptomics, identifying key plant growth regulator genes involved in stress responses. Zain has authored and co-authored several publications, both in English and Chinese, in areas including nanotechnology applications, seed physiology, and plant propagation. His work integrates practical lab-based experimentation with advanced analytical techniques such as PCR, DNA extraction, and in-vitro propagation. He has been recognized for both academic excellence and extracurricular contributions through numerous awards. Zain is passionate about addressing global food security challenges and aspires to further his research through international collaborations and doctoral studies. His blend of technical skills, global perspective, and innovative mindset makes him an ideal candidate for research-focused recognition.

Professional Profile

Education

Zain Abbas’s academic journey reflects a continuous commitment to excellence in agricultural sciences, particularly in the domains of plant breeding and agronomy. He is currently pursuing an M.Phil. in Agronomy and Seed Industry at Anhui Science and Technology University in Fengyang, China. This program has allowed him to focus on cutting-edge research involving magnesium oxide nanoparticles and their effects on maize crop development and stress management. Prior to this, he completed his Bachelor’s degree in Plant Breeding and Genetics from Muhammad Nawaz Sharif University of Agriculture in Multan, Pakistan, where he graduated with distinction as a Silver Medalist between 2016 and 2020. Zain’s foundation in science was laid during his intermediate studies in Pre-Medical at KIPS Boys College, Multan, from 2014 to 2016. His academic record not only reflects a strong grasp of theoretical concepts but also highlights his ability to conduct practical, laboratory-based research. This blend of local and international education has shaped his scientific approach, enabling him to tackle agronomic challenges with both traditional knowledge and modern scientific tools. His educational background has equipped him with the skills necessary for advanced research, and his transition from national to international academia underlines his global orientation in science.

Professional Experience

Zain Abbas has accumulated a diverse range of professional research experiences that collectively demonstrate his growth as a capable and versatile agronomist. Currently serving as a Researcher at Anhui Science and Technology University in China, Zain plays a crucial role in experimental design, data analysis, laboratory management, and protocol development. His current work primarily investigates the impact of magnesium nanoparticles on maize, contributing to innovations in sustainable agriculture and plant resilience. Previously, from 2018 to 2020, he served as a Research Assistant in Multan, Pakistan, where he gained substantial expertise in tissue culture techniques, media optimization, genetic transformation, and plant material handling. This role allowed him to enhance his technical skills and support broader laboratory research goals effectively. Earlier in his career, between 2017 and 2018, Zain completed an internship as a Crop Breeder in Vehari, Punjab, where he was responsible for managing five hectares of agricultural land, performing crop crossings, and analyzing productivity data for maize and wheat. This field-based experience helped bridge theoretical knowledge with hands-on application in real-world farming environments. These cumulative roles have refined his research acumen, broadened his technical toolkit, and prepared him for more advanced scientific contributions and leadership in agricultural research.

Research Interests

Zain Abbas’s research interests lie at the intersection of sustainable agriculture, nanotechnology, plant physiology, and seed science. His primary research explores the application of magnesium oxide (MgO) nanoparticles in enhancing the growth, yield, and stress resilience of maize (Zea mays L.). He is particularly interested in how nanotechnology can improve plant nutrient uptake and tolerance to abiotic stresses, ultimately contributing to global food security. Another significant area of his research includes transcriptomics, where he investigates the expression of growth regulator genes in maize under stress conditions. This molecular-level approach helps identify genetic pathways responsible for plant development and adaptability. Additionally, Zain is passionate about plant breeding and seed industry innovations, particularly the development of high-yielding, resilient, and health-safe crop varieties. His early work in genetic transformation and in-vitro propagation of crops like quinoa and mung bean highlights his interest in biotechnology and plant tissue culture. He envisions continuing his research journey through international collaboration, doctoral studies, and R&D roles focused on breeding, molecular genetics, and crop improvement. His long-term objective is to contribute to developing climate-resilient and nutrient-rich crops that address the evolving challenges of agriculture in the 21st century.

Research Skills

Zain Abbas possesses a comprehensive set of research skills that span both laboratory and field-based methodologies in agricultural science. He is highly proficient in plant tissue culture, with expertise in media preparation, culture maintenance, and micropropagation of various crops such as quinoa and mung bean. His work also includes genetic transformation, where he has gained experience in DNA extraction and polymerase chain reaction (PCR) techniques—essential for molecular biology studies. In his current role, he actively engages in experimental design, data collection, statistical analysis, and instrument handling, ensuring the generation of reliable and reproducible results. He is also skilled in protocol development, laboratory maintenance, and literature review, demonstrating strong capabilities in both scientific rigor and research organization. His involvement in transcriptomic analysis and nanoparticle application reflects advanced analytical thinking and an ability to work with emerging technologies in agronomy. Beyond technical skills, Zain is adept in scientific communication, having participated in academic conferences and presentations. His multilingual abilities and cross-cultural academic background further enhance his collaborative potential in international research environments. These research competencies form the backbone of his academic and professional success and position him well for continued research excellence.

Awards and Honors

Zain Abbas has earned several awards and honors that recognize both his academic achievements and extracurricular contributions. In 2024, he received a “Special Award” in the Second English Anchor Competition at the 15th Foreign Language Culture Festival of Anhui Science and Technology University, highlighting his effective communication skills. The same year, he also won second prize in the university’s fourth flower arrangement competition, reflecting his creative engagement in campus life. In 2023, he participated in the 11th International Student Cultural Activity in Anhui Province, enhancing cross-cultural academic exchange. His involvement in high-level academic events began early, including participation in the 2nd Sino-Pak International Conference and the 1st International Business Gala in 2018. During his undergraduate years, Zain was awarded a laptop under the Prime Minister’s Laptop Scheme in 2019 and received a solar lamp in 2016 as recognition for academic performance during intermediate education. He has also taken part in numerous innovation competitions such as Idea Fest, Peace Training, and DICE Agricultural and Food Science competitions, showcasing his creativity and problem-solving skills. These accolades reflect his active involvement in academia and beyond, confirming his all-rounded capabilities as a researcher and student leader.

Conclusion

In conclusion, Zain Abbas is a highly motivated and capable early-career researcher in the field of agronomy, with a strong foundation in plant breeding, nanotechnology applications, and molecular plant sciences. His research on magnesium oxide nanoparticles in maize is not only timely but also addresses critical issues related to crop productivity and climate resilience. With multiple research experiences, both in the lab and field, Zain has developed a well-rounded skill set that includes experimental design, molecular analysis, and scientific communication. His education from both Pakistan and China provides him with a global outlook, and his active participation in academic and cultural activities further showcases his versatility. While still at the M.Phil. level, his contributions already demonstrate strong research potential, making him a suitable candidate for future doctoral studies and collaborative projects in agricultural R&D. The breadth of his research interests—from transcriptomics to crop breeding—underscores his commitment to innovative and sustainable agriculture. His achievements, both academic and extracurricular, reflect a well-balanced individual poised to make meaningful contributions to global agricultural science. For these reasons, Zain Abbas is a strong nominee for the Best Researcher Award, particularly in categories recognizing research innovation, emerging scholars, and interdisciplinary agricultural research.

Publications Top Notes

  1. Antifungal Activity of Difenoconazole-Loaded Microcapsules against Curvularia lunata

📚 Journal: Journal of Fungi
📅 Year: 2024
🧪 Authors: Chang, Xiaoyu, Wang, Yuyan, Abbas, Zain, Yu, Haibing

Shumei Hei | Plant Sciences | Best Researcher Award

Assoc. Prof. Dr. Shumei Hei | Plant Sciences | Best Researcher Award

Associate Professor from Yan’an University, China

Dr. Shumei Hei is an accomplished Associate Professor and plant physiologist at the College of Life Sciences, Yan’an University. With over two decades of experience in teaching and research, she has established a strong academic presence in the field of plant stress physiology, particularly focusing on carbon dioxide (CO₂) signaling and stomatal regulation. Her career is characterized by a consistent research focus, scholarly productivity, and leadership in both scientific investigation and academic service. Dr. Hei’s work addresses fundamental questions related to how plants perceive and respond to environmental signals, particularly elevated CO₂ levels, through molecular pathways involving hydrogen peroxide, nitric oxide, and G-protein signaling. Her research contributes both to basic plant science and to potential applications in agriculture and environmental sustainability. Dr. Hei has successfully led multiple funded research projects at national and provincial levels, published in high-impact international journals, and earned several academic honors for teaching and scientific innovation. She is also actively involved in mentoring graduate students and contributing to editorial and review boards. Her dedication to both scientific discovery and academic excellence makes her a respected figure in her field and a valuable contributor to the broader life sciences community in China and beyond.

Professional Profile

Education

Dr. Shumei Hei holds a comprehensive academic background in the biological sciences, with all her degrees earned from reputable Chinese institutions. She earned her Ph.D. in Botany from Shaanxi Normal University between 2012 and 2018, with her dissertation focusing on the signaling mechanisms involved in CO₂-regulated stomatal movement, a subject that has continued to define her research trajectory. Prior to her doctoral studies, she completed a Master of Science in Botany at the same university from 2002 to 2005, where she further strengthened her foundation in plant physiological processes. Her initial entry into the academic world began with a Bachelor of Science in Biological Education from Yan’an University, where she studied from 1996 to 2000. This educational progression demonstrates a deep-rooted commitment to plant biology, beginning with a strong pedagogical base and advancing into sophisticated, specialized research on plant-environment interactions. The continuity in her educational choices underscores her focused interest in plant physiology and her long-standing relationship with institutions in the Shaanxi province. Her advanced training has enabled her to explore complex physiological processes in plants and translate that knowledge into impactful scientific contributions and teaching.

Professional Experience

Dr. Hei has built her professional career entirely at Yan’an University, showcasing steady academic progression and institutional loyalty. She began as a Teaching Assistant in 2005 shortly after completing her master’s degree, where she gained initial teaching experience in biological sciences. In 2006, she was promoted to Lecturer, a position she held for twelve years, during which she balanced teaching responsibilities with her growing involvement in research. Her ability to contribute meaningfully to both education and scientific inquiry was recognized in 2018 when she was appointed as an Associate Professor at the College of Life Sciences. In this capacity, she mentors master’s students, leads grant-funded projects, and publishes extensively in both international and national journals. Her long tenure at Yan’an University is marked by dedication to curriculum development, student mentorship, and the establishment of a productive research program. In addition to her academic roles, she has actively participated in institutional service, including editorial duties and membership in professional societies. Her professional experience reflects a strong alignment between teaching, research, and service, with a particular emphasis on applying scientific insights to local and global plant biology challenges.

Research Interest

Dr. Shumei Hei’s research interests center around plant stress physiology, with a specific focus on how plants respond to changes in atmospheric carbon dioxide levels. Her primary area of investigation is the molecular and biochemical signaling pathways that mediate stomatal movement in response to CO₂. These studies delve into the roles of carbonic anhydrase, G-proteins, hydrogen peroxide (H₂O₂), and nitric oxide (NO) in regulating guard cell function, which has implications for plant water use efficiency and adaptation to climate change. Additionally, her research addresses hormonal crosstalk involving ethylene and brassinosteroids in stomatal behavior. Beyond stomatal regulation, Dr. Hei has extended her investigations to applied agricultural issues, such as the physiology of jujube fruit cracking and the optimization of soilless cultivation techniques. This dual emphasis on fundamental signaling mechanisms and practical agricultural problems demonstrates her versatility and relevance in the plant sciences. Her work contributes to improving our understanding of plant adaptation strategies and provides a scientific basis for enhancing crop resilience. The consistent theme across her projects is the integration of environmental signals into physiological responses, making her research highly relevant to both academic inquiry and sustainable agriculture.

Research Skills

Dr. Hei possesses a robust set of research skills that span molecular biology, plant physiology, and biochemical analysis. She is proficient in designing and executing experiments related to guard cell signaling, particularly those investigating the roles of reactive oxygen species like hydrogen peroxide and signaling molecules such as nitric oxide. Her research frequently involves model organisms like Arabidopsis thaliana, allowing her to apply genetic and physiological tools to elucidate plant responses to elevated CO₂. She has experience in using microscopy, physiological assays, and various detection techniques for signal molecules, including the quantification of H₂O₂ and NO in plant tissues. In addition to wet-lab skills, Dr. Hei has demonstrated expertise in scientific writing, grant preparation, and project management, having led several nationally and provincially funded research initiatives. Her ability to integrate molecular insights with applied physiological outcomes is evident in her work on fruit cracking and greenhouse cultivation techniques. She also actively mentors students in research methodologies, ensuring that her lab serves as a training ground for future scientists. Overall, her research skills encompass experimental design, data analysis, and interdisciplinary integration, making her well-equipped to conduct high-level investigations in plant biology.

Awards and Honors

Dr. Shumei Hei has received several honors and awards that reflect both her scientific achievements and her contributions to education. She has been recognized multiple times by Yan’an University with Outstanding Teaching Awards, receiving this accolade in 2010, 2019, 2022, and 2023. These awards affirm her excellence and consistency in teaching and student engagement. Her scientific contributions have also been acknowledged at both municipal and provincial levels. In 2014, she received the Third Prize in the Shaanxi Provincial Science and Technology Awards, while in 2013, she was awarded the Second Prize by Yan’an City for contributions to local scientific development. In 2022, she was honored with the title of “Model Female Contributor” by Yan’an University, highlighting her role as a leader and role model within the academic community. These awards underscore her balanced commitment to both scientific inquiry and educational service. Her accolades serve as a testament to her credibility, influence, and dedication within the research and academic landscape of China, especially in the field of plant physiology.

Conclusion

Dr. Shumei Hei exemplifies the qualities of a well-rounded researcher and educator, making her a compelling candidate for a Best Researcher Award. Her academic journey is marked by focused specialization in plant physiology, particularly in the area of CO₂-regulated stomatal movement. Through her leadership of nationally and provincially funded research projects, she has contributed valuable insights into plant-environment interactions. Her body of work includes high-impact international publications, regional applied research on jujube fruit physiology, and a demonstrated ability to mentor the next generation of scientists. Additionally, her consistent recognition through teaching awards and science prizes illustrates her dual commitment to research and education. Although her international visibility and collaborative footprint could be expanded, her foundational and applied research skills are strong and impactful. She also serves her institution and field through editorial and evaluation roles. Taken together, Dr. Hei’s achievements in research, education, and service reflect a distinguished career that aligns well with the values of scholarly excellence and academic contribution. Her work is not only scientifically rigorous but also contextually relevant, addressing both global challenges and local agricultural issues.

Publications Top Notes

  1. Title: Gα protein mediates high-concentration CO₂-induced stomata closure through interaction with carbonic anhydrase to promote guard cell hydrogen peroxide production in Arabidopsis
    Authors: Chen‐Xi Zhang, Xue Kang, Qun‐Wei Bai, Jin‐Xia Li, Ming‐Tao Mu, Xiao‐Yu Ma, Shu‐Mei Hei
    Journal: Plant, Cell & Environment
    Year: 2025

  2. Title: The regulator of G-protein signalling protein mediates D-glucose-induced stomatal closure via triggering hydrogen peroxide and nitric oxide production in Arabidopsis
    Authors: Shu-Mei Hei, Zhi-Feng Liu, Ai-Xia Huang, Xiao-Ping She
    Journal: Functional Plant Biology
    Year: 2018
    Volume(Issue): 45(5), Pages: 509–518

  3. Title: Ethylene mediates brassinosteroid-induced stomatal closure via Ga protein-activated hydrogen peroxide and nitric oxide production in Arabidopsis
    Authors: Chen-Yu Shi, Cheng Qi, Hong-Yan Ren, Ai-Xia Huang, Shu-Mei Hei, Xiao-Ping She
    Journal: The Plant Journal
    Year: 2015
    Volume(Issue): 82(2), Pages: 280–301

  4. Title: Relationship between H₂O₂ and NO and their enzymatic sources in high-concentration CO₂-induced stomatal closure
    Authors: Shu-Mei Hei, Xiao-Ping She
    Journal: Journal of Shaanxi Normal University (Natural Science Edition)
    Year: 2018
    Volume(Issue): 46(3), Pages: 80–86

  5. Title: Correlation between water dynamics and fruit cracking during jujube maturation
    Authors: Shu-Mei Hei, Zhi-Qian Hao, Ting Li, Xue-Yan Zhang, Rui Li
    Journal: Northern Horticulture
    Year: 2015
    Issue: (22), Pages: 34–36

  6. Title: Research advances on the relationship between jujube fruit tissue structure and fruit cracking
    Authors: Shu-Mei Hei, Xiao-Dong Feng, Hai-Fei Chang
    Journal: Journal of Shanxi Agricultural Sciences
    Year: 2015
    Volume(Issue): 43(7), Pages: 916–918

  7. Title: Relationship between water metabolism changes and fruit cracking in jujube
    Authors: Shu-Mei Hei, Juan-Yun Cao, Xiao-Dong Feng, Hai-Fei Chang
    Journal: Journal of Yunnan Normal University (Natural Science Edition)
    Year: 2016
    Volume(Issue): 36(1), Pages: 62–65

  8. Title: Rooting study on Sansevieria trifasciata ‘Laurentii’ in hydroponic culture
    Authors: Shu-Mei Hei, Jin Wang, Hai-Fei Chang, Xiao-Dong Feng
    Journal: Journal of Yunnan Normal University (Natural Science Edition)
    Year: 2015
    Volume(Issue): 36(5), Pages: 56–59

  9. Title: Research progress on the relationship between physiological characteristics of jujube fruit and fruit cracking
    Authors: Shu-Mei Hei, Xiao-Dong Feng, Hai-Fei Chang
    Journal: Journal of Minzu University of China (Natural Sciences Edition)
    Year: 2015
    Volume(Issue): 24(2), Pages: 10–12, 20

  10. Title: Growth adaptability of black tomato ‘Kezhi’ in Yan’an greenhouse cultivation
    Authors: Xue Kang, Dong-Ping Zhang, Xiao-Dong Feng, Hai-Fei Chang, Shu-Mei Hei
    Journal: Journal of Yan’an University (Natural Science Edition)
    Year: 2023
    Volume: 42, Pages: 47–49, 57