Feixiang Yuan | Sensing in Neuroscience | Best Researcher Award

Dr. Feixiang Yuan | Sensing in Neuroscience | Best Researcher Award

Associate Researcher from Fudan University, China

Dr. Feixiang Yuan is an Associate Researcher at the Institute for Translational Brain Research, Fudan University, affiliated with Zhongshan Hospital. His research focuses on the central regulatory mechanisms of metabolic homeostasis, particularly the interplay between nutrient sensing, neuroendocrine signaling, and metabolic diseases. Dr. Yuan has made significant contributions to understanding how amino acid sensing in the brain influences systemic metabolism, with implications for conditions such as obesity, diabetes, and depression. His work has been published in high-impact journals, including Nature Communications, Proceedings of the National Academy of Sciences, and Diabetes. Through his research, Dr. Yuan aims to elucidate the neural circuits and molecular pathways that govern energy balance and metabolic health.

Professional Profile

Education

Dr. Yuan earned his Bachelor of Engineering in Food Science and Engineering from Ocean University of China in 2014. He then pursued doctoral studies at the University of Chinese Academy of Sciences, obtaining a Ph.D. in Physiology in 2019. His doctoral research was conducted at the Shanghai Institute of Biological Sciences, where he investigated the molecular mechanisms underlying metabolic regulation. This academic foundation provided him with a multidisciplinary perspective, integrating principles from food science, physiology, and molecular biology. Dr. Yuan’s educational background has equipped him with the skills necessary to explore complex biological systems and contribute to advancements in metabolic research.

Professional Experience

Following his Ph.D., Dr. Yuan completed a postdoctoral fellowship at the Institute of Nutrition and Health, Chinese Academy of Sciences, from 2019 to 2022. During this period, he focused on the central nervous system’s role in metabolic regulation, particularly how nutrient signals influence energy homeostasis. In 2022, he joined Fudan University as an Associate Researcher at the Institute for Translational Brain Research. In this role, Dr. Yuan leads research projects investigating the neural mechanisms of metabolic control, collaborating with interdisciplinary teams to translate basic research findings into potential therapeutic strategies for metabolic disorders.

Research Interests

Dr. Yuan’s research interests center on the central regulation of metabolic homeostasis. He investigates how the brain senses and responds to nutrient signals, particularly amino acids, and how these processes affect systemic metabolism. His work explores the neural circuits and molecular pathways involved in energy balance, glucose and lipid metabolism, and the development of metabolic diseases. By understanding the brain’s role in metabolic regulation, Dr. Yuan aims to identify novel targets for the treatment of conditions such as obesity, type 2 diabetes, and metabolic syndrome. His interdisciplinary approach combines neuroscience, physiology, and molecular biology to unravel the complex interactions between the central nervous system and peripheral metabolic processes.

Research Skills

Dr. Yuan possesses a robust set of research skills that enable him to conduct comprehensive studies on metabolic regulation. He is proficient in various molecular biology techniques, including gene expression analysis, protein assays, and genetic manipulation. His expertise extends to neuroanatomical methods, such as brain region-specific manipulations and neuronal activity mapping, allowing him to dissect neural circuits involved in metabolic control. Dr. Yuan is also skilled in metabolic phenotyping, including assessments of glucose tolerance, insulin sensitivity, and energy expenditure in animal models. His ability to integrate these methodologies facilitates a holistic understanding of the mechanisms governing energy homeostasis.

Awards and Honors

Dr. Yuan’s contributions to metabolic research have been recognized through various awards and honors. He has secured funding from the National Natural Science Foundation of China (NSFC) for multiple projects, serving as both principal investigator and co-investigator. His research excellence has been acknowledged by his peers, as evidenced by his publications in prestigious scientific journals. These accolades reflect Dr. Yuan’s commitment to advancing our understanding of metabolic regulation and his potential to make significant impacts in the field.

Conclusion

Dr. Feixiang Yuan is a dedicated researcher whose work bridges the gap between neuroscience and metabolism. His investigations into the central mechanisms of metabolic regulation have provided valuable insights into how the brain influences systemic energy balance. Through his interdisciplinary approach, Dr. Yuan has advanced our understanding of the neural control of metabolism, paving the way for novel therapeutic strategies for metabolic diseases. His continued research promises to contribute significantly to the field, making him a strong candidate for recognition as a leading researcher in metabolic science.

Publications Top Notes

  1. Title: Hypothalamic SLC7A14 accounts for aging-reduced lipolysis in white adipose tissue of male mice
    Authors: Jiang, Xiaoxue; Liu, Kan; Luo, Peixiang; Ni, Shihong; Guo, Feifan
    Journal: Nature Communications
    Year: 2024

  2. Title: Inhibition of c-Jun in AgRP neurons increases stress-induced anxiety and colitis susceptibility
    Authors: Jiao, Fuxin; Hu, Xiaoming; Yin, Hanrui; Liu, Zhanju; Guo, Feifan
    Journal: Communications Biology
    Year: 2023
    Citations: 1

Yung Ting | Sensor Actuator | Excellence in Research

Prof Dr. Yung Ting | Sensor Actuator | Excellence in Research

Professor at Chung Yung Christian University, Taiwan.

Yung Ting, born in Taiwan in 1961, is a distinguished mechanical engineer with a notable academic and professional career. He earned his B.S. from Chung Yuan Christian University, followed by an M.S. from the University of Virginia and a Ph.D. from the University of Texas at Austin. His career began with industry experience before joining Chung Yuan Christian University in 1996, where he also served as Department Chairman from 2011 to 2015. Yung Ting’s research focuses on mechatronics, control, robotics, and the development of piezoelectric sensors and actuators. Over the past two decades, he has made significant advancements in piezoelectric motors, ceramics, and sensors, and has contributed to technologies such as high-precision positioning platforms and medical ultrasonic devices. He has published numerous papers, holds many patents, and has received international awards for his innovations, reflecting his substantial impact on his field.

Profile

Education🎓

Yung Ting’s educational journey began with his Bachelor of Science degree in Mechanical Engineering from Chung Yuan Christian University (CYCU) in Taiwan, awarded in 1983. Following his undergraduate studies, he joined the Chung Shan Institute of Science and Technology (CSIST), where he gained valuable industry experience until 1987. Ting furthered his academic pursuits in the United States, earning a Master of Science degree in Mechanical Engineering from the University of Virginia in 1989. His quest for advanced knowledge continued at the University of Texas at Austin, where he completed his Doctorate in Mechanical Engineering in 1993. This robust educational foundation equipped him with a deep understanding of mechanical systems and engineering principles, paving the way for his future research and professional achievements. His educational background reflects a strong commitment to mechanical engineering and a solid preparation for his innovative work in the field.

Professional Experience 🏢

Yung Ting has a robust professional background marked by significant contributions to mechanical engineering. After completing his B.S. degree in 1983 from Chung Yuan Christian University (CYCU), he began his career at the Chung Shan Institute of Science and Technology (CSIST), where he worked until 1987. He pursued advanced studies at the University of Virginia and the University of Texas at Austin, obtaining his M.S. and Ph.D. degrees, respectively. His professional journey includes nearly two years of industry experience before joining CYCU in 1996. At CYCU, he has held various roles, including serving as the Department Chairman from 2011 to 2015. His research expertise focuses on mechatronics, control, and robotics, with notable work in piezoelectric sensors and actuators. His career is distinguished by his leadership roles, extensive research, and practical applications of his innovations in various technological domains.

Research Interests 🔬

Yung Ting’s research interests are centered around mechatronics, control systems, and robotics, with a particular focus on the development and application of piezoelectric technologies. His work encompasses the creation and optimization of piezoelectric sensors and actuators, which are critical for various advanced engineering applications. Over the past two decades, Yung Ting has explored the development of piezoelectric motors, both linear and rotary, as well as piezoelectric ceramics, polymers, and composite sensors. His research extends to high-precision positioning platforms driven by piezoelectric mechanisms, ultrasonic-assisted machining systems, and innovative energy harvesting solutions. Additionally, he has made significant contributions to medical ultrasonic therapy devices and micro blowers. His work integrates theoretical research with practical applications, aiming to enhance the performance and functionality of piezoelectric systems across diverse fields.

Award and Honors

Yung Ting has garnered numerous awards and honors throughout his distinguished career, underscoring his exceptional contributions to the field of mechanical engineering. His innovative research on piezoelectric sensors and actuators has earned him several prestigious international invention awards, reflecting his impact on advancing technology. These accolades recognize his breakthroughs in areas such as piezoelectric motors, high-precision positioning platforms, and ultrasonic-assisted machining systems. In addition to his invention awards, Yung Ting has been acknowledged for his leadership and academic excellence, particularly during his tenure as Department Chairman at Chung Yuan Christian University. His accolades not only highlight his technical expertise but also his dedication to advancing the frontiers of engineering research and applications. These honors collectively celebrate his influential role in the development of cutting-edge technologies and his substantial contributions to both academia and industry.

Research Skills

Yung Ting possesses a robust array of research skills that have significantly advanced the fields of mechatronics, control, and robotics. His expertise in piezoelectric sensors and actuators is marked by a deep understanding of material science, particularly in the development of piezoelectric ceramics and polymers. Ting’s proficiency extends to designing and implementing high-precision positioning platforms and ultrasonic-assisted machining systems, showcasing his capability in both theoretical and practical aspects of engineering. His work on energy harvesting systems and medical ultrasonic therapy devices further demonstrates his innovative approach to solving complex engineering problems. Ting’s extensive experience is supported by a strong publication record and numerous patents, reflecting his ability to translate research into practical applications. His skills in experimental design, data analysis, and interdisciplinary collaboration underline his role as a leading researcher in advancing piezoelectric technologies and their applications.

Research Contributions and Innovations

Yung Ting’s research spans mechatronics, control, and robotics, with a specific focus on the development of piezoelectric sensors and actuators. Over the past two decades, his work has included advancements in piezoelectric motors, piezoelectric ceramics, and polymer composite sensors. He has also made significant contributions to piezo-driven high-precision positioning platforms, ultrasonic-assisted machining systems, energy harvesting systems, and medical ultrasonic therapy devices. His research is distinguished by its practical applications and innovations.

Conclusion

Yung Ting’s extensive research in piezoelectric systems, coupled with his significant number of patents and international awards, positions him as a strong candidate for the Best Researcher Award. His contributions have not only advanced the field of mechanical engineering but also had practical applications across various industries, demonstrating his excellence and innovation in research.

Publications Top Notes 📚
  1. Fabrication of PZT/PVDF Composite Film and the Influence of Homogeneity to Dielectric Constant
    • Authors: Ting, Y., Sofi, M.A., Joo, M.Y., Simanullang, R., Lu, P.C.
    • Journal: Journal of Applied Polymer Science
    • Year: 2024
  2. Fabrication and Characterization of PZT/PVDF Composite Films for Force Sensor Applications
    • Authors: Suprapto, Ting, Y., Gunawan, H., Hikmawan, M.F., Jubaidah
    • Journal: Polymer International
    • Year: 2024
  3. Design of a Dual-Chamber Piezoelectric-Driven Micro Blower: Example of Heat Dissipation Use
    • Authors: Ting, Y., Pangestu, R., Joo, M.Y., Yu, C.-H.
    • Journal: Integrated Ferroelectrics
    • Year: 2024
    • Volume: 240
    • Issue: 1
    • Pages: 31–45
  4. Design a Rate-Hysteresis Reduction Task-Space Control on a Stewart Robotic Platform
    • Authors: Ting, Y., Van Nguyen, T., Joo, M.Y., Lu, P.C.
    • Journal: Control Engineering and Applied Informatics
    • Year: 2023
    • Volume: 25
    • Issue: 4
    • Pages: 59–72
  5. Using a Traveling-Wave Piezoelectric Device to Generate a Liquid Wave for Efficient Lightweight Particle Transfer
    • Authors: Ting, Y., Yu, C.-H., Abbas, S., Chien, Y.-C.
    • Journal: IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control
    • Year: 2022
    • Volume: 69
    • Issue: 9
    • Pages: 2696–2702
  6. Design and Performance Evaluation of a Multi-Axis Thin-Film Sensor for Milling Process Measurement
    • Authors: Ting, Y., Chen, H.-Y., Chen, J.-H., Suprapto, Yu, C.-H.
    • Journal: Sensors and Actuators A: Physical
    • Year: 2021
    • Volume: 332
    • Article Number: 113147
  7. Design of a Short-Beam Linear Traveling-Wave Piezoelectric Motor
    • Authors: Ting, Y., Yu, C.-H., Lin, J.-H., Johar, T., Wang, C.-W.
    • Journal: IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control
    • Year: 2021
    • Volume: 68
    • Issue: 8
    • Pages: 2815–2823
  8. Effect and Evaluation of an Ultrasonic Atomizer With Large Vibration Amplitude
    • Authors: Ting, Y., Sugondo, A., Yu, C.-H., Yang, Y.-J., Lee, Y.-L.
    • Journal: Integrated Ferroelectrics
    • Year: 2021
    • Volume: 221
    • Issue: 1
    • Pages: 73–87
  9. Design of a Single and Dual Hybrid Piezoelectric Motors
    • Authors: Ting, Y., Chang, K.-C., Yu, C.-H., Sugondo, A.
    • Journal: International Journal of Acoustics and Vibrations
    • Year: 2020
    • Volume: 25
    • Issue: 2
    • Pages: 236–242
  10. Using Annealing Treatment on Fabrication Ionic Liquid-Based PVDF Films
    • Authors: Ting, Y., Suprapto, Bunekar, N., Sivasankar, K., Aldori, Y.R.
    • Journal: Coatings
    • Year: 2020
    • Volume: 10
    • Issue: 1
    • Article Number: 44