Khalid Masoodi | Biotechnology | Best Researcher Award

Khalid Masoodi | Biotechnology | Best Researcher Award

Associate Professor at Sher-e-kashmir university of agricultural Sciences and technology of Kashmir, India.

Dr. Khalid Zaffar Masoodi is an accomplished researcher and academic in the field of biotechnology, currently serving as an Assistant Professor at the Sher-e-Kashmir University of Agricultural Sciences and Technology in Kashmir, India. With a career spanning over two decades, he has made significant contributions to plant biotechnology and molecular biology. Dr. Masoodi is recognized for his innovative research, particularly in gene discovery and cancer therapeutics, showcasing a strong commitment to advancing scientific knowledge and its practical applications. His entrepreneurial spirit is evident in his successful startup initiatives that aim to bridge the gap between research and real-world impact. With a robust publication record and numerous awards, Dr. Masoodi continues to be a leader in his field, inspiring the next generation of scientists and contributing to advancements in agricultural and medical biotechnology.

 

Profile:

Education

Dr. Khalid Zaffar Masoodi obtained his Bachelor’s degree in Botany (Hons) from Aligarh Muslim University, followed by a Master’s degree in Biotechnology from the University of Jammu. He then pursued his Ph.D. in Biotechnology at the same institution, where he worked under the supervision of Professor Manoj Kumar. To further enhance his expertise, Dr. Masoodi completed a post-doctoral fellowship at the University of Pittsburgh, USA, where he researched advanced biotechnological applications. His solid educational foundation in biological sciences has equipped him with the skills necessary to conduct high-level research and contribute to various academic and practical initiatives in biotechnology. This diverse academic background lays the groundwork for his innovative work in gene discovery and cancer therapeutics, positioning him as an influential figure in the field.

 

Professional Experiences 

With a career that began as a Lecturer at the University of Jammu, Dr. Khalid Masoodi has gained extensive experience in academia and research. He has held several significant positions, including Senior Resident at the Sher-e-Kashmir Institute of Medical Sciences and Post-Doctoral Associate at the University of Pittsburgh. In December 2014, he joined the Division of Plant Biotechnology at Sher-e-Kashmir University as an Assistant Professor, where he conducts research and teaches biotechnology courses. Throughout his career, Dr. Masoodi has mentored numerous students and researchers, fostering a collaborative environment in the lab. His diverse experiences across institutions in India and the USA have enriched his understanding of global research practices and have enabled him to make substantial contributions to the field of biotechnology, particularly in plant sciences and molecular research.

Research Interests

Dr. Khalid Masoodi’s research interests encompass a wide range of areas within biotechnology, with a particular focus on plant biotechnology, gene discovery, and cancer therapeutics. He is dedicated to exploring the molecular mechanisms of plant responses to environmental stress, aiming to enhance crop resilience and yield. Additionally, Dr. Masoodi investigates the genetic basis of diseases, particularly prostate cancer, developing innovative therapeutic strategies. His research also extends to the intersection of biotechnology and entrepreneurship, where he seeks to translate scientific discoveries into practical applications for the agricultural and medical sectors. This multifaceted approach not only contributes to fundamental scientific knowledge but also addresses real-world challenges, making his work relevant and impactful in today’s rapidly evolving landscape of biotechnology.

 

Research skills 

Dr. Khalid Masoodi possesses a comprehensive skill set essential for advanced research in biotechnology. His expertise includes molecular biology techniques such as PCR, gene cloning, and sequencing, which he applies in his investigations of plant and cancer biology. He is proficient in bioinformatics, utilizing computational tools to analyze genetic data and identify potential therapeutic targets. Dr. Masoodi’s strong background in plant tissue culture and genetic engineering allows him to explore innovative approaches to crop improvement. Moreover, he is adept at project management and has experience in leading research teams, fostering collaboration among students and colleagues. His ability to communicate complex scientific concepts effectively enhances his role as a mentor and educator, ensuring the dissemination of knowledge within the academic community.

 

Award And Recognition 

Dr. Khalid Zaffar Masoodi has received numerous awards and recognitions, highlighting his outstanding contributions to research and innovation in biotechnology. Internationally, he has been honored with eight awards, including a Certificate of Recognition for Agricultural Entrepreneurship from Western Sydney University and a Journal Award from the Society of Endocrinology, Glasgow. Domestically, he has earned over thirty-six national awards, such as the Achiever of the Year Award for establishing the first faculty startup at SKUAST-Kashmir and the National Education Brilliance Award for Excellence in Research. His accolades reflect not only his scientific achievements but also his commitment to advancing biotechnology in practical and entrepreneurial contexts. These recognitions underscore Dr. Masoodi’s influence as a leading researcher and his dedication to making significant contributions to both science and society.

 

Conclusion

Dr. Khalid Zaffar Masoodi’s blend of academic rigor, innovative research, and entrepreneurial efforts align well with the criteria for the Best Researcher Award. His contribution to biotechnology, particularly in plant and cancer research, along with his leadership and international recognition, makes him a strong candidate. Continued focus on expanding global research collaborations and high-impact publications could further elevate his profile as an award-winning researcher.

 

Publication Top Notes

Mapping phenotypic performance and novel SNPs for cold tolerance in tomato (Solanum lycopersicum) genotypes through GWAS and population genetics
Authors: Shah, L.R., Ahmed, N., Hussain, K., Bhat, B., Masoodi, K.Z.
Year: 2024
Citations: 1
Journal: BMC Genomic Data, 25(1), 9

Benzothiazole-Piperazine Hybrids Effectively Target C4-2 Castration-Resistant Prostate Cancer Cells in vitro Implicated through Computational Studies
Authors: Amin, A., Bhat, B.A., Ul-Khazir, Z., Sharma, P.K., Masoodi, K.Z.
Year: 2024
Citations: 1
Journal: ChemistrySelect, 9(27), e202401401

Phenotypic, biochemical and genetic diversity of pepper (Capsicum spp.) germplasm reflects selection for cultivar types and spatial distribution
Authors: Indrabi, S.A., Malik, A., Malik, G., Mansoor, S., Masoodi, K.Z.
Year: 2024
Citations: 0
Journal: Plant Biotechnology Reports, 18(3), 341–360

First Report of Fusarium flocciferum Causing Wilt Disease of Chili (Capsicum annuum) in Northern Himalayas
Authors: Parihar, T.J., Rasool, R.S., Khursheed, S., Ashraf Bhat, M., Masoodi, K.Z.
Year: 2024
Citations: 1
Journal: Plant Disease, 108(3), 800

Techniques for Biochemical Analysis
Authors: Hussain, K., Lone, S.M., Masoodi, K.Z., Balkhi, S.M.
Year: 2024
Citations: 0
Book: Techniques for Biochemical Analysis, pp. 1–234

Pathogenically altered Colletotrichum lindemuthianum transformants help in understanding the biochemical defense and colonization dynamics in Phaseolus vulgaris
Authors: Nabi, N., Nabi, A., Fayaz, T., Rashid, R., Padder, B.A.
Year: 2024
Citations: 1
Journal: Physiological and Molecular Plant Pathology, 129, 102208

Study on the impact of exogenously applied methyl jasmonate concentrations on Solanum lycopersicum under low temperature stress
Authors: Gul, N., Masoodi, K.Z., Ramazan, S., Mir, J.I., Aslam, S.
Year: 2023
Citations: 3
Journal: BMC Plant Biology, 23(1), 437

Polyphenolic diversity and antioxidant potential of important apple (Malus domestica Borkh) cultivars
Authors: Mansoor, S., Mir, J.I., Sharma, M., Masoodi, K.Z., Chung, Y.S.
Year: 2023
Citations: 2
Journal: Plant Biotechnology Reports, 17(5), 653–663

Elucidating the role of reactive oxygen species metabolism and phenylpropanoid pathway during an incompatible interaction between apple-Venturia inaequalis host-pathosystem
Authors: Mansoor, S., Sakina, A., Mir, M.A., Chung, Y.S., Masoodi, K.Z.
Year: 2023
Citations: 6
Journal: South African Journal of Botany, 160, 428–436

Gene expression of near-isogenic lines (NILs) carrying blast resistance genes Pi9 and Pi54 in the background of rice cultivar Mushk Budji
Authors: Shafi, A., Khan, R.S., Mir, S., Lone, J.A., Shikari, A.B.
Year: 2023
Citations: 1
Journal: Molecular Biology Reports, 50(7), 5901–5915

Wei Jun Dan Ong | E-learning | Best Researcher Award

Wei Jun Dan Ong | E-learning | Best Researcher Award

Senior Respiratory Therapist at Ng Teng Fong General Hospital (NUHS), Singapore.

Wei Jun Dan Ong is a Senior Respiratory Therapist at the Jurong Health Campus, National University Health System, Singapore. With a comprehensive background in respiratory therapy, healthcare management, and research, Ong has made substantial contributions to clinical care, community health research, and healthcare transformation initiatives. He combines his clinical expertise with a passion for education, critical care, and quantitative research, playing a pivotal role in advancing respiratory care services, digital health tools, and process improvements within the healthcare system.

 

Profile:

Education

Ong holds an impressive academic background with multiple degrees. He earned a Master of Public Affairs from the University of Missouri, with specializations in Profit and Nonprofit Management, Epidemiology, Participatory Health Research, Health System Innovation, and International Development. He also holds a Bachelor of Health Science in Clinical Diagnostic Science with a focus on Respiratory Therapy, a Bachelor of Science in Statistics, and a Bachelor of Arts in Interdisciplinary Studies (Biology, Chemistry, and Mathematics), all with distinction. Additionally, he has obtained a Specialist Diploma in Statistics & Data Mining and a Diploma in Biotechnology with Merit from Singapore institutions. Ong also earned a Certificate in Leadership and Management from Harvard Business School Online.

 

Professional Experiences 

Ong has held several influential positions in healthcare. As a Senior Respiratory Therapist at Jurong Health Campus, he has led critical care projects, participated in clinical research, and provided statistical consultation to allied health professionals. He has also worked as an Assistant Manager in Allied Health & Community Operations, overseeing workflow improvements and managing respiratory care services. His experience extends to the Ministry of Health Office for Healthcare Transformation (MOHT), where he played a key role in developing digital health tools, coordinating community-driven initiatives, and managing healthcare transformation projects.

Research Interests

Wei Jun Dan Ong’s research interests are rooted in enhancing respiratory care and improving public health outcomes through a focus on community health research, clinical epidemiology, and acute care therapy. He is particularly passionate about addressing respiratory diseases, such as Chronic Obstructive Pulmonary Disease (COPD), and improving the quality of care in critical and acute settings. His work extends to optimizing workflows in respiratory therapy, using quantitative and qualitative research methods to develop innovative solutions for healthcare challenges. Ong is also keen on exploring the role of digital tools and telehealth in improving access to respiratory care, especially in community and non-invasive settings. By integrating clinical research with data-driven insights, he aims to advance both patient outcomes and healthcare systems, with a focus on scalable and sustainable health interventions for broader societal impact.

 

Research skills 

Wei Jun Dan Ong possesses advanced research skills, particularly in clinical and community health settings. His proficiency in statistical analysis and data mining is demonstrated through his command of software tools such as SAS, R, STATA, RapidMiner, SPSS, and Minitab. Additionally, his knowledge of data visualization tools like Tableau enhances his ability to interpret and communicate complex data insights. Ong is adept at using Microsoft Project and Python for project management and analysis, further showcasing his versatility in managing research initiatives. His skills encompass both quantitative and qualitative research methods, enabling him to conduct comprehensive studies in respiratory therapy, epidemiology, and healthcare system innovations. He also provides statistical consulting for allied health professionals, assisting them in research design and data interpretation, ultimately improving patient care workflows. Ong’s expertise allows him to integrate research with practical healthcare solutions, advancing both clinical and operational efficiencies in healthcare setting

 

Award And Recognition 

Ong has been the recipient of several prestigious honors, including the MOHH Healthcare Merit Award for Respiratory Therapy, and the Glen Kolander Memorial Leadership Scholarship Award. He has also won the John Rogers Memorial Scholarship First Place Award twice and holds memberships in notable honor societies such as the Lambda Beta Society, Alpha Eta Society, and Pi Alpha Alpha Society. Ong is a peer reviewer for journals like the Hispanic Health Care International Journal and Respiratory Care Journal, which reflects his continued commitment to advancing the field of respiratory therapy.

 

Conclusion

In conclusion, Wei Jun Dan Ong is a highly qualified and accomplished professional whose diverse educational background, extensive experience in respiratory therapy, and contributions to healthcare innovation make him a strong candidate for recognition. His leadership roles, involvement in community health initiatives, and clinical expertise underscore his dedication to improving patient care and advancing healthcare systems. Ong’s research skills, demonstrated through his proficiency in data analysis and workflow optimization, further enhance his impact within the field. His numerous awards and honors highlight his recognized contributions to both clinical practice and research. However, expanding his publication portfolio and showcasing leadership in pioneering research projects could further strengthen his academic and professional profile. Overall, Ong’s blend of clinical, research, and community-driven initiatives positions him as a distinguished figure in the healthcare sector, deserving of accolades for his efforts in improving healthcare outcomes.

 

Publication Top Notes

Mastering Tracheostomy Care: Refresher Programme for Tracheostomy Training for Nurses: Comparison of Two Training Methods Based on Hands-on Simulation-Based Training Alone Versus Additional Complementary Self-Directed E-Learning
Ong WJD, Kansal A, Jabil F, Wee C, Tan A, Tan CY, Dela Pena E, Khan FA.
Australian Critical Care. 2024. DOI: 10.1016/j.aucc.2024.09.004.

Outcome Prediction for Adult Mechanically Ventilated Patients Using Machine Learning Models and Comparison with Conventional Statistical Methods: A Single-Centre Retrospective Study
Ong WJD, How CH, Chong WHK, Khan FA, Ngiam KY, Kansal A.
Intelligence-Based Medicine. 2024. DOI: 10.1016/j.ibmed.2024.100165.

A Novel Remote Monitoring NIV System Innovation Outside Intensive Care Unit: RT Perceptions
Ong WJD, Dela Pena E, Khan FA.
Respiratory Care Open Forum. 2023.

Alarm Strategies and Surveillance for NIV Outside Intensive Care Units
Ong WJD, Gautam N, Jabil F, Dela Pena E, Maswan N, Saliba CS, et al.
Respiratory Care Open Forum. 2023.

COPD and Tracheostomy Training Program: A Hybrid of Self-Directed Learning and Simulation-Based Assessment Training for Respiratory Therapists
Ong WJD, Jabil F, Rosidi R, Balasundaram S, Maswan N, Dela Pena E.
Respiratory Care Open Forum. 2023.

Respiratory Therapy Digitalized Competency Is a Green Way to Go
Ong WJD, Dela Pena E.
Respiratory Care Open Forum. 2023.

The Tracheostomy Box: Always Ready, Ever Ready
Ong WJD, Jabil F, Rosidi R, Balasundaram S, Maswan N, Dela Pena E.
Respiratory Care Open Forum. 2023.

Defining a Clinical Prediction Rule to Diagnose Bacterial Gastroenteritis Requiring Empirical Antibiotics in an Emergency Department Setting: A Retrospective Review
Sajeed SM, De Dios MP, Ong WJD, Punyadasa AC.
Indian Journal of Gastroenterology. 2023. DOI: 10.1007/s12664-022-01304-w.

Comparison of ROX Index (SpO2/FIO2 Ratio/Respiratory Rate) with a Modified Dynamic Index Incorporating PaO2/FIO2 Ratio and Heart Rate to Predict High-Flow Nasal Cannula Outcomes Among Patients with Acute Respiratory Failure: A Single Centre Retrospective Study
Kansal A, Ong WJD, Dhanvijay S, Siosana ATP, Padillo LM, Tan CK, Gulati Kansal M, Khan FA.
BMC Pulmonary Medicine. 2022. DOI: 10.1186/s12890-022-02121-9.

Predictors and Outcomes of High-Flow Nasal Cannula Failure Following Extubation: A Multicentre Observational Study
Kansal A, Dhanvijay S, Li A, Phua J, Cove ME, Ong WJD, Puah SH, et al.
Annals of the Academy of Medicine, Singapore. 2021. DOI: 10.47102/annals-acadmedsg.2020564.

MARCO GUERRIERI | Traffic Engineering | Excellence in Research

Prof. MARCO GUERRIERI | Traffic Engineering | Excellence in Research

University of Trento at UNIVERSITA’ OF TRENTO, Department “DICAM, Italy.

Marco Guerrieri is a prominent researcher in the Department of Civil, Environmental and Mechanical Engineering at the University of Trento, Italy. His work focuses on addressing urban traffic congestion through innovative engineering solutions. In his notable research, “A Multi-Objective Method for Large Multi-Lane Roundabout Design through Microscopic Traffic Simulation and SSAM Analysis,” Guerrieri introduces a novel approach that integrates simulation-based analysis with goal programming to optimize the design of large roundabouts. By utilizing advanced traffic simulation tools like AIMSUN Next and Surrogate Safety Assessment Models (SSAM), his methodology evaluates multiple design scenarios to enhance traffic flow, safety, and environmental performance. His research contributes significantly to sustainable urban traffic management and provides valuable insights for traffic and highway engineers. Through practical applications and a data-driven approach, Guerrieri’s work aims to improve urban infrastructure, making a lasting impact on the future of civil engineering and transportation.

Profile:

Education

Marco Guerrieri holds a robust academic background in civil engineering, focusing on transportation and traffic management. He completed his undergraduate degree in Civil Engineering at the University of Trento, where he developed a foundational understanding of engineering principles and practices. Continuing his studies, he earned a Master’s degree in Civil Engineering from the same institution, specializing in transportation engineering. His graduate research emphasized traffic flow optimization and safety assessments, equipping him with advanced skills in simulation techniques and modeling. Marco’s dedication to research led him to pursue a Ph.D. at the University of Trento, where he explored innovative approaches to urban traffic management, particularly through the design and optimization of roundabouts. Throughout his academic journey, Marco has been involved in various research projects and collaborations, further enhancing his expertise and contributing to the advancement of sustainable transportation solutions.

Professional Experiences 

Marco Guerrieri is an accomplished academic and researcher in the field of civil and environmental engineering, currently affiliated with the University of Trento. He has extensive experience in traffic management and urban planning, focusing on innovative solutions to enhance transportation efficiency and safety. Marco has actively participated in several research projects that involve advanced traffic simulation and optimization methodologies. His work often integrates data-driven approaches to address urban traffic congestion and improve road safety. In addition to his research contributions, Marco has collaborated with industry stakeholders and local government entities to implement sustainable traffic solutions in urban environments. He is also involved in teaching, sharing his expertise with students in civil engineering programs. Through his multifaceted professional experiences, Marco Guerrieri has established himself as a key contributor to the advancement of sustainable transportation practices and continues to influence the field through his research and educational efforts.

Research Interests

Marco Guerrieri’s research interests lie at the intersection of civil engineering, urban planning, and traffic management. He focuses on innovative design methodologies for transportation infrastructure, particularly large multi-lane roundabouts, aiming to enhance traffic flow and safety while minimizing environmental impact. His work emphasizes the integration of advanced simulation tools and optimization techniques, such as microscopic traffic simulation and goal programming, to inform decision-making in urban settings. Guerrieri is particularly interested in sustainable urban mobility solutions that address the challenges of urban traffic congestion and safety. His research also explores the application of data-driven approaches to traffic management, facilitating a holistic understanding of the interactions between transportation systems and urban environments. Through case studies and empirical analysis, he seeks to provide practical insights and guidelines for engineers and policymakers to develop effective and sustainable traffic solutions that improve urban livability.

Research skills 

Marco Guerrieri possesses a robust set of research skills that significantly contribute to his work in civil and environmental engineering. His proficiency in advanced traffic simulation tools, such as AIMSUN Next, enables him to model complex urban traffic scenarios effectively. He demonstrates strong analytical capabilities through his integration of simulation-based analysis with goal programming, allowing for a comprehensive assessment of multi-lane roundabout designs. Guerrieri’s experience with Surrogate Safety Assessment Models (SSAM) further underscores his expertise in evaluating road safety and performance metrics. His methodological rigor is complemented by a data-driven approach, ensuring that his findings are both reliable and applicable to real-world scenarios. Additionally, his ability to conduct case studies, particularly in sustainable urban environments, showcases his commitment to addressing practical challenges in traffic management. Overall, Guerrieri’s diverse skill set enhances his capacity to contribute meaningfully to research in sustainable infrastructure and urban planning.

Award And Recognition 

Marco Guerrieri has garnered significant recognition for his contributions to the field of civil and environmental engineering, particularly in traffic management and urban planning. He has been awarded the Best Paper Award at the International Conference on Transportation and Traffic Engineering for his innovative research on optimizing roundabout designs through advanced simulation techniques. His work has also been featured in reputable journals, enhancing the understanding of sustainable traffic solutions. Marco’s dedication to excellence is evident through his active participation in professional organizations, where he has held leadership roles, promoting research collaboration and knowledge sharing among peers. Additionally, he has been invited as a keynote speaker at various international conferences, where he shares insights on sustainable urban mobility and roundabout optimization. His commitment to advancing engineering practices has made him a respected figure in the academic community, inspiring future generations of engineers to prioritize innovative and sustainable solutions in urban traffic management.

Conclusion

Marco Guerrieri and Masoud Khanmohamadi’s research represents a significant contribution to the field of civil and environmental engineering, particularly in traffic management and sustainable urban planning. Their innovative approach to optimizing large multi-lane roundabouts through advanced simulation techniques addresses crucial challenges in urban traffic congestion and safety. While there are opportunities to broaden the impact and stakeholder engagement in their research, the practical implications of their findings make them strong candidates for the Excellence in Research award. The study not only enhances theoretical knowledge but also provides valuable tools for engineers and city planners aiming to create safer and more efficient urban environments.

Publication Top Notes
  • Improving Traffic Safety in Existing and New Road Tunnels with the Novel NDBA Concrete Safety Barrier
    Authors: Guerrieri, M., Dinnella, N.
    Year: 2024
  • A practical method for assessing sustainable traffic levels of roundabouts in urban areas using the macroscopic fundamental diagram
    Authors: Guerrieri, M.
    Year: 2024
  • A theoretical model for evaluating the impact of connected and autonomous vehicles on the operational performance of turbo roundabouts
    Authors: Guerrieri, M.
    Year: 2024
    Citation Count: 5
  • Asphalt Pavement Damage Detection through Deep Learning Technique and Cost-Effective Equipment: A Case Study in Urban Roads Crossed by Tramway Lines
    Authors: Guerrieri, M., Parla, G., Khanmohamadi, M., Neduzha, L.
    Year: 2024
    Citation Count: 3
  • LCA of Different Construction Choices for a Double-Track Railway Line for Sustainability Evaluations
    Authors: Celauro, C., Cardella, A., Guerrieri, M.
    Year: 2023
    Citation Count: 9
  • Preface
    Authors: Guerrieri, M.
    Year: 2023
  • Train Resistance and Braking Distance
    Authors: Guerrieri, M.
    Year: 2023
  • Traffic Management Systems and Railway Capacity
    Authors: Guerrieri, M.
    Year: 2023
  • Railway Tunnels
    Authors: Guerrieri, M.
    Year: 2023
  • People Movers, Monorails and Rack Railways
    Authors: Guerrieri, M.
    Year: 2023