Arockia Rosy N | Computational Neuroscience | Best Researcher Award

Mrs. Arockia Rosy N | Computational Neuroscience | Best Researcher Award

Mrs. Arockia Rosy N, R.M.D. Engineering College, India.

N. Arockia Rosy is an accomplished Assistant Professor in Information Technology at R.M.D. Engineering College, currently pursuing her Ph.D. at Anna University. With over 15 years of teaching experience, she has made significant contributions to research and innovation in the fields of Artificial Intelligence, Machine Learning, Cloud Computing, and Data Analytics. Her academic journey includes one major research project, four peer-reviewed journal publications, a book, a pending patent, and four industry consultancy projects. She is actively involved in professional organizations such as IAENG and IFERP, with a citation index of 18 underscoring the impact of her scholarly work.

Profile

Scopus

🎓 Early Academic Pursuits

N. Arockia Rosy embarked on her academic journey with a strong foundation in Information Technology, earning her M.Tech in the field. Her passion for learning and commitment to academic excellence led her to pursue a Ph.D. at Anna University, where she continues to delve deeper into the evolving landscape of computer science and information systems. Her early academic experiences set the stage for a long and fruitful career in teaching and research, grounded in technical rigor and curiosity-driven inquiry.

👩‍🏫 Professional Endeavors

With over 15 years of dedicated service in engineering education, N. Arockia Rosy has been shaping young minds as an Assistant Professor at R.M.D. Engineering College. Her professional role extends beyond traditional classroom instruction, encompassing mentorship, curriculum development, and industry engagement. Through her academic leadership, she has significantly influenced the Information Technology department, contributing to its growth and modernization in alignment with global standards.

🧠 Contributions and Research Focus

Arockia Rosy’s research portfolio reflects her deep interest in emerging technologies such as Artificial Intelligence, Machine Learning, Data Analytics, and Cloud Computing. She has completed one major research project and authored four journal articles indexed in prestigious databases like SCI and Scopus. Her scholarly output is complemented by a published book with ISBN 9798369367056 and a patent currently in process. Her work bridges theoretical innovation with practical application, addressing challenges in computational intelligence and data-driven systems.

💼 Industry Collaboration and Innovation

Actively connecting academia with the tech industry, she has participated in four consultancy projects that apply academic expertise to solve real-world IT problems. These engagements underscore her ability to translate theoretical knowledge into scalable industry solutions. Her involvement in consultancy also fosters valuable collaborations that benefit both her students and the broader technological community.

📈 Accolades and Recognition

N. Arockia Rosy’s research has earned her a citation index of 18, indicating the growing relevance and acknowledgment of her scholarly contributions within the global research community. She is a proud member of professional bodies such as the International Association of Engineers (IAENG) and the Institute For Engineering Research and Publication (IFERP), through which she maintains an active presence in the broader scientific discourse.

🌐 Impact and Influence

Beyond her publications and projects, Arockia Rosy’s influence is seen in her efforts to integrate cutting-edge research into the classroom, preparing students for the demands of a technology-driven future. Her innovative teaching methodologies and commitment to academic integrity have helped foster a generation of IT professionals equipped with both theoretical acumen and practical skill.

🌟 Legacy and Future Contributions

Looking ahead, N. Arockia Rosy aspires to expand her research in AI-driven cloud solutions and intelligent analytics. Her legacy lies not only in her scholarly work and industrial contributions but also in her unwavering commitment to shaping the next wave of technology leaders. With continued efforts in research, education, and innovation, she is poised to leave an indelible mark on the academic and technological landscapes alike.

Publication

Title: A Real-Time Auditing System for Secure Storage Using QR Code
Authors: P. Baby Shamini, P. Jemi Gold, K. Neela, R. Hemala, B. Jaison

 

Conclusion

Through her unwavering dedication to research, education, and industry collaboration, N. Arockia Rosy exemplifies the role of a modern educator and researcher. Her work bridges the gap between theory and practice, fostering technological innovation and inspiring future professionals. As she continues to pursue advanced research and contribute to the academic community, her influence is set to grow—leaving a meaningful legacy in both academia and the ever-evolving tech landscape.

Aiying Zhang | Computational Neuroscience | Best Researcher Award

Assist. Prof. Dr. Aiying Zhang | Computational Neuroscience | Best Researcher Award

Assist. Prof. Dr. Aiying Zhang, University of Virginia, United States.

Dr. Aiying Zhang is a rising scholar in the field of mental health data science, currently serving as an Assistant Professor at the University of Virginia and a Faculty Member at the UVA Brain Institute. Her academic foundation spans statistics, biomedical engineering, and clinical biostatistics, acquired from esteemed institutions including USTC, Tulane University, and Columbia University. Her research focuses on developing advanced computational and statistical tools—such as graphical models and multimodal fusion—to decode complex brain data from imaging and genetics. She applies these innovations to better understand and predict psychiatric conditions such as schizophrenia and Alzheimer’s disease. Her work is distinguished by its interdisciplinary nature, translational relevance, and potential to reshape clinical approaches to mental health.

Profile

Google Scholar

 

🎓 Early Academic Pursuits

Aiying Zhang’s journey into the realm of data science and mental health research began with a strong foundation in quantitative sciences. She earned her Bachelor of Science degree in Statistics from the prestigious School for the Gifted Young at the University of Science and Technology of China (USTC) in 2014. Driven by a passion for biomedical innovation and its intersection with human health, she pursued a Ph.D. in Biomedical Engineering from Tulane University, which she completed in 2021. Her graduate years were marked by deep inquiry into statistical modeling and neuroimaging, laying the groundwork for her later interdisciplinary research. She further honed her expertise through postdoctoral training in Clinical Biostatistics and Psychiatry at Columbia University Irving Medical Center, where she blended statistical rigor with clinical insight.

💼 Professional Endeavors

Dr. Zhang is currently an Assistant Professor of Data Science at the University of Virginia, where she has been on the tenure-track faculty since August 2023. She also holds a concurrent position as a Faculty Member at the UVA Brain Institute, underscoring her active role in advancing brain research across institutional boundaries. Prior to her academic appointment at UVA, she served as a Research Scientist II at the New York State Psychiatric Institute, contributing to high-impact psychiatric research. Her professional journey also includes research assistantships at Tulane University and the University of Florida, roles in which she cultivated strong collaborative and translational research skills.

🧠 Contributions and Research Focus

Dr. Zhang’s research lies at the intersection of data science, neuroscience, and mental health. She specializes in developing advanced statistical and computational methodologies to investigate the biological underpinnings of psychiatric and neurodevelopmental disorders. Her work prominently features the use of graphical models—both directed and undirected—and machine learning techniques to analyze complex datasets, such as MRI, DTI, fMRI, MEG, and various genomic modalities including SNP and DNA methylation. Her research has contributed to a deeper understanding of conditions like schizophrenia, Alzheimer’s disease, obsessive-compulsive disorder, and anxiety disorders, through the lens of multimodal data fusion and integrative neurogenetics.

🧪 Innovation in Mental Health Data Science

A distinctive hallmark of Dr. Zhang’s scholarship is her innovative application of multimodal fusion techniques to disentangle the complexities of typical and atypical brain development. Her work leverages high-dimensional neuroimaging and genetic data to draw meaningful inferences about mental health trajectories. She is particularly focused on building interpretable models that bridge the gap between data and clinical insight, thereby enabling earlier and more precise diagnostics. By combining machine learning with biomedical expertise, her contributions pave the way for next-generation tools in psychiatry and neuroscience.

🏅 Accolades and Recognition

Throughout her academic and professional trajectory, Dr. Zhang has earned widespread respect for her analytical acumen and interdisciplinary collaborations. Her postdoctoral role at Columbia, a hub for clinical psychiatry and biostatistics, positioned her among leaders in the field and enriched her research portfolio with translational applications. Her selection as faculty at a leading institution like UVA further reflects recognition of her scholarly excellence and her potential to drive future innovations in mental health data science.

🌍 Impact and Influence

Dr. Zhang’s work has significant implications for both the scientific community and clinical practice. Her methods empower researchers and clinicians alike to draw meaningful patterns from multimodal datasets, thereby advancing precision psychiatry. Moreover, her collaborative efforts across biomedical engineering, statistics, and clinical disciplines have fostered integrative frameworks that extend beyond academic settings into real-world applications. Her contributions are helping to shape a more data-driven and personalized future in mental health care.

🔮 Legacy and Future Contributions

As she continues her academic journey, Dr. Zhang aims to expand her research frontiers by exploring dynamic brain-behavior associations and improving the interpretability of AI models in clinical contexts. With a commitment to mentorship and open science, she is building a legacy rooted in intellectual rigor, innovation, and societal relevance. Her future contributions are expected to not only deepen our understanding of mental health disorders but also inspire a new generation of data scientists dedicated to neuroscience and human well-being.

Publication

  • Leverage multimodal neuro-imaging and genetics to identify causal relationship between structural and functional connectivity and ADHD with Mendelian randomization
    C Ji, S Lee, S Sequeira, J Jin, A Zhang2025

 

  • Integrated brain connectivity analysis with fmri, dti, and smri powered by interpretable graph neural networks
    G Qu, Z Zhou, VD Calhoun, A Zhang, YP Wang2025

 

  • Altered hierarchical rank in intrinsic neural time-scales in autism spectrum disorder
    A Solomon, W Yu, J Rasero, A Zhang2025

 

  • A Privacy-Preserving Domain Adversarial Federated learning for multi-site brain functional connectivity analysis
    Y Zhang, L Wang, KJ Su, A Zhang, H Zhu, X Liu, H Shen, VD Calhoun, …2025

 

  • A Novel GNN Framework Integrating Neuroimaging and Behavioral Information to Understand Adolescent Psychiatric Disorders
    W Yu, G Qu, Y Kim, L Xu, A Zhang2025

 

  • A Bayesian incorporated linear non-Gaussian acyclic model for multiple directed graph estimation to study brain emotion circuit development in adolescence
    A Zhang, G Zhang, B Cai, TW Wilson, JM Stephen, VD Calhoun, YP Wang2024

 

  • Exploring hierarchical gradients of intrinsic neural timescales in mild cognitive impairment and Alzheimer’s disease
    A Zhang, K Wengler, X Zhu, G Horga, TE Goldberg, S Lee2024

 

  • Time‐varying dynamic Bayesian network learning for an fMRI study of emotion processing
    L Sun, A Zhang, F Liang2024

 

  • Altered hierarchical gradients of intrinsic neural timescales in mild cognitive impairment and Alzheimer’s disease
    A Zhang, K Wengler, X Zhu, G Horga, TE Goldberg, S Lee, …2024

 

  • Associations Between Brain Connectivity and Psychiatric Symptoms in Children: Insights into Adolescent Mental Health
    D Mutu, K Ji, X He, S Lee, S Sequeira, A Zhang2024

 

🧾 Conclusion

Dr. Zhang’s journey exemplifies a seamless integration of data science and neuroscience to address pressing mental health challenges. Her innovative use of multimodal data and machine learning not only contributes to scientific advancement but also enhances real-world clinical decision-making. As she continues to pioneer research at the intersection of computation and psychiatry, her influence is poised to grow, shaping the future of precision mental health care and empowering both academia and clinical practice through data-driven insights.

 

Che Ping Cheng | Translational Neuroscience | Best Researcher Award

Prof. Che Ping Cheng | Translational Neuroscience | Best Researcher Award

Prof. Che Ping Cheng, Wake Forest University School of Medicine, United States.

Dr. Che Ping Cheng, M.D., Ph.D., FAHA, is a distinguished cardiovascular physiologist and internal medicine specialist whose career has been dedicated to advancing the understanding of heart function and failure. From earning his medical degree in China to completing a Ph.D. in Physiology at Wayne State University, and later conducting pivotal postdoctoral research at Wake Forest School of Medicine, Dr. Cheng has consistently pursued excellence in science and education. His research on ventricular mechanics, volume loading, and heart failure has significantly influenced both experimental cardiology and clinical practice. Recognized as a Fellow of the American Heart Association, he is also a dedicated mentor, shaping the next generation of cardiovascular researchers through his academic leadership.

Profile

Scopus

 

🎓 Early Academic Pursuits

Dr. Che Ping Cheng’s journey into medicine and science began in Nanjing, China, where he earned his M.D. degree from Nanjing Railway Medical University in 1977. His early academic path reflected a deep interest in understanding the intricacies of human health, particularly in cardiovascular physiology. Driven by a desire to expand his knowledge and research capabilities, Dr. Cheng pursued his Ph.D. in Physiology at Wayne State University School of Medicine in Detroit, Michigan, completing his degree in 1986. Under the mentorship of Dr. Robert S. Shepard, his doctoral work focused on exploring the mechanisms of cardiovascular response to volume loading in a canine model with tricuspid valvulectomy, setting a strong foundation for his lifelong focus on heart function and disease mechanisms.

🩺 Professional Endeavors

Following his academic training, Dr. Cheng embarked on postdoctoral studies at the Bowman Gray School of Medicine (now part of Wake Forest School of Medicine), where he continued to cultivate his expertise in internal medicine and cardiovascular physiology. Between 1986 and 1988, he served as a Postdoctoral Fellow under the guidance of Dr. William C. Little. His research during this period focused on ventricular dynamics and the physiological factors affecting active ventricular filling, which would later inform his broader work on heart failure and cardiac function. Dr. Cheng has since remained at Wake Forest School of Medicine, where he is currently a distinguished member of the Section on Cardiovascular Medicine.

🧪 Contributions and Research Focus

Dr. Cheng’s career has been characterized by a deep commitment to advancing the understanding of cardiac hemodynamics, ventricular interaction, and heart failure mechanisms. His research has explored how ventricular function responds under altered physiological states, and how these responses inform disease progression and treatment strategies. His early animal model studies have provided critical insights into the interplay between structural and functional changes in the heart, especially in the context of diastolic dysfunction and volume overload conditions. Dr. Cheng has also made significant strides in translating these findings to clinical contexts, influencing how cardiologists approach diagnosis and therapy.

🏅 Accolades and Recognition

Throughout his career, Dr. Cheng has received considerable recognition for his scholarly contributions. He is a Fellow of the American Heart Association (FAHA), an honor that reflects his standing in the field of cardiovascular research and his commitment to scientific excellence. His work has earned the respect of colleagues and institutions alike, leading to numerous invitations to contribute to collaborative projects, serve on peer-review panels, and mentor future generations of cardiovascular researchers.

🌍 Impact and Influence

Dr. Cheng’s work has had a lasting impact on both experimental and clinical cardiology. By elucidating the mechanistic basis of ventricular dysfunction, he has helped shift paradigms in heart failure management, particularly in the areas of ventricular interdependence and preload responsiveness. His research findings are frequently cited in textbooks and high-impact journals, and they continue to inform guidelines for cardiac care and interventions. Through his work at Wake Forest and beyond, Dr. Cheng has played a pivotal role in bridging laboratory discoveries with bedside applications.

👨‍🏫 Legacy and Mentorship

As a respected mentor and educator, Dr. Cheng has dedicated a significant portion of his career to training medical students, residents, and postdoctoral fellows. His mentorship has influenced numerous emerging scholars in cardiovascular medicine, many of whom have gone on to successful academic and clinical careers. His guidance combines a rigorous scientific approach with a deep sense of responsibility to patient care and scientific integrity, shaping a legacy that extends well beyond his own research output.

🔬 Future Contributions and Vision

Looking ahead, Dr. Cheng remains committed to the advancement of cardiovascular research, with a continued focus on uncovering the cellular and mechanical determinants of heart disease. His vision includes fostering collaborative projects that integrate biomedical engineering, imaging, and computational modeling to further understand cardiac performance. With decades of experience and a forward-thinking approach, Dr. Cheng’s future contributions are poised to leave a lasting mark on the field of translational cardiovascular medicine.

Publication

  1. Title: Increased CaMKII activation and contrast changes of cardiac β1-and β3-Adrenergic signaling pathways in a humanized angiotensinogen model of hypertension
    Authors: Sun, Xiaoqiang; Cao, Jing; Chen, Zhe; Ferrario, Carlos M.; Cheng, Cheping
    Year: 2023
    Journal: Heliyon

 

  1. Title: Calmodulin-dependent protein kinase II activation promotes kidney mesangial expansion in streptozotocin-induced diabetic mice
    Authors: Mikhailov, Alexei V.; Liu, Yixi; Cheng, Hengjie; Lin, Jen Jar; Cheng, Cheping
    Year: 2022
    Journal: Heliyon

 

  1. Title: Chronic GPR30 agonist therapy causes restoration of normal cardiac functional performance in a male mouse model of progressive heart failure: Insights into cellular mechanisms
    Authors: Zhang, Xiaowei; Li, Tiankai; Cheng, Hengjie; Groban, Leanne; Cheng, Cheping
    Year: 2021
    Journal: Life Sciences

 

  1. Title: Chronic Ca2+/calmodulin-dependent protein Kinase II inhibition rescues advanced heart failure
    Authors: Liu, Yixi; Shao, Qun; Cheng, Hengjie; Zhao, David Xiao Ming; Cheng, Cheping
    Year: 2021
    Journal: Journal of Pharmacology and Experimental Therapeutics

 

  1. Title: The Angiotensin-(1–12)/Chymase axis as an alternate component of the tissue renin angiotensin system
    Authors: Ferrario, Carlos M.; Groban, Leanne; Wang, Hao; Sun, Xuming; Ahmad, Sarfaraz
    Year: 2021
    Journal: Molecular and Cellular Endocrinology

 

  1. Title: Reversal of angiotensin-(1–12)-caused positive modulation on left ventricular contractile performance in heart failure: Assessment by pressure-volume analysis
    Authors: Li, Tiankai; Zhang, Zhi; Zhang, Xiaowei; Ferrario, Carlos M.; Cheng, Cheping
    Year: 2020
    Journal: International Journal of Cardiology

 

  1. Title: Female Heart Health: Is GPER the Missing Link?
    Authors: Groban, Leanne; Tran, Q. K.; Ferrario, Carlos M.; Wang, Hao; Lindsey, Sarah H.
    Year: (Not specified, but likely 2020 or 2021)
    Journal: (Not specified)

 

🏁 Conclusion

Dr. Cheng’s legacy is one of intellectual rigor, clinical relevance, and mentorship. His work has not only deepened the scientific understanding of cardiac physiology but has also shaped modern approaches to diagnosing and managing heart failure. With a career spanning continents and disciplines, Dr. Cheng continues to be a guiding force in cardiovascular medicine, and his future contributions are anticipated to further advance the frontiers of heart research and patient care.

 

Jiwei Nie | Emerging Areas in Neuroscience | Best Researcher Award

Dr. Jiwei Nie | Emerging Areas in Neuroscience | Best Researcher Award

Dr. Jiwei Nie, Haier Group, China.

Jiwei Nie is an accomplished Chinese researcher specializing in Artificial Intelligence-based Pattern Recognition and Intelligent Detection, with a strong focus on AI large models. His academic journey began with a Bachelor’s in Mechanical Design and Automation and evolved into a deeply integrated path through a Master’s and Ph.D. in Control Science and Engineering at Northeastern University. Throughout his doctoral research, he has made notable contributions to the field of Visual Place Recognition (VPR) for autonomous systems, publishing in prestigious journals such as IEEE Transactions on Intelligent Transportation Systems and IEEE Robotics and Automation Letters. Jiwei’s innovations—especially in lightweight, training-free image descriptors and adaptive texture fusion—have positioned him at the forefront of applied AI in robotics and automation. He has also presented at major international conferences and holds multiple patents.

Profile

Google Scholar

🎓 Early Academic Pursuits

 Jiwei Nie displayed a deep interest in engineering and innovation from an early age. His academic journey began at Hebei University of Science and Technology, where he pursued a Bachelor’s degree in Mechanical Design, Manufacturing, and Automation. His strong academic performance earned him first-class honors, and he graduated in July 2018. Motivated to delve deeper into the fusion of machinery and intelligence, he advanced to Northeastern University, completing his Master’s degree in Mechanical and Electronic Engineering by July 2020. Driven by a vision to integrate control systems with intelligent technologies, he enrolled in a PhD program in Control Science and Engineering under a prestigious Integrated Master-PhD track, further solidifying his expertise in the intelligent automation domain.

💼 Professional Endeavors

Jiwei’s professional development has been tightly interwoven with his academic path, where he has continuously applied theoretical insights to practical problems in Artificial Intelligence and Control Systems. As a member of the Communist Party of China, he approaches his work with a strong sense of discipline and public responsibility. His fluency in English, proven by his CET-6 certification, has enabled him to actively contribute to the global research community, engaging in international collaborations and conferences. Alongside his research, Jiwei has contributed to academic circles through mentorship roles and cross-institutional projects, making a significant impact both inside and outside his university.

🤖 Contributions and Research Focus

Jiwei Nie’s research is at the forefront of Artificial Intelligence-based Pattern Recognition and Intelligent Detection, with a special emphasis on AI Large Models. His work focuses on developing lightweight, efficient algorithms for Visual Place Recognition (VPR)—a critical capability for autonomous vehicles and robotic systems. He has pioneered new methods in saliency encoding, feature mixing, and texture fusion, leading to more robust and adaptive AI systems. Through these contributions, he has addressed real-world challenges in long-term navigation and intelligent perception, pushing the boundaries of control science and machine intelligence.

🏆 Accolades and Recognition

During his PhD, Jiwei published multiple high-impact articles in leading SCI-indexed journals. His paper in the IEEE Transactions on Intelligent Transportation Systems, titled “A Training-Free, Lightweight Global Image Descriptor for Long-Term Visual Place Recognition Toward Autonomous Vehicles”, has been particularly well-received and is ranked in Q1. Additional works in IEEE Robotics and Automation Letters have been ranked in Q2, highlighting his innovations such as MixVPR++ and Efficient Saliency Encoding. Furthermore, Jiwei’s presence has been notable at world-class conferences like ICPR, ICRA, and IROS, where he presented his work to a global audience of peers and experts. He also holds several patents, including an invention patent, and continues to submit further manuscripts to top-tier venues.

🌍 Impact and Influence

Jiwei’s research has had a significant influence on the future of intelligent transportation and autonomous systems. His development of training-free VPR models has contributed to making autonomous navigation more scalable and cost-effective, especially in dynamic environments where traditional AI systems fail. His proposed methods are not only academically rigorous but are also computationally efficient, paving the way for real-world deployment. Through his innovation and academic collaborations, he has helped bridge the gap between theoretical AI models and practical engineering applications, which is vital for industries moving toward Industry 4.0 and smart mobility solutions.

🧠 Legacy and Future Contributions

Looking ahead, Jiwei Nie aspires to deepen his research in generalized large AI models, expanding the scalability and generalization abilities of pattern recognition systems across domains beyond transportation—such as smart surveillance, industrial robotics, and medical imaging. His planned future publications and continued patent filings reflect a strong ambition to lead the next generation of intelligent systems research. Jiwei is committed to fostering innovation that aligns with both academic excellence and societal needs, aiming to establish himself as a pioneering researcher and mentor in the evolving field of intelligent detection and AI integration.

🔬 Vision in AI and Control Engineering

Jiwei Nie stands as a rising expert in the convergence of Artificial Intelligence, Control Science, and Robotic Vision, a field essential for the future of smart systems and automation. His deep technical knowledge, coupled with a strategic vision, positions him to contribute not only as a researcher but also as a thought leader in AI-driven engineering. With a career rooted in innovation and societal benefit, his trajectory points toward a legacy of breakthroughs that will influence smart cities, autonomous systems, and global AI research landscapes for years to come.

Publication

  • Title: A survey of extrinsic parameters calibration techniques for autonomous devices
    Authors: J Nie, F Pan, D Xue, L Luo
    Year: 2021

 

  • Title: A training-free, lightweight global image descriptor for long-term visual place recognition toward autonomous vehicles
    Authors: J Nie, JM Feng, D Xue, F Pan, W Liu, J Hu, S Cheng
    Year: 2023

 

  • Title: Forest: A lightweight semantic image descriptor for robust visual place recognition
    Authors: P Hou, J Chen, J Nie, Y Liu, J Zhao
    Year: 2022

 

  • Title: A novel image descriptor with aggregated semantic skeleton representation for long-term visual place recognition
    Authors: J Nie, JM Feng, D Xue, F Pan, W Liu, J Hu, S Cheng
    Year: 2022

 

  • Title: Efficient saliency encoding for visual place recognition: Introducing the lightweight pooling-centric saliency-aware VPR method
    Authors: J Nie, D Xue, F Pan, Z Ning, W Liu, J Hu, S Cheng
    Year: 2024

 

  • Title: 3D semantic scene completion and occupancy prediction for autonomous driving: A survey
    Authors: G Xu, W Liu, Z Ning, Q Zhao, S Cheng, J Nie
    Year: 2023

 

  • Title: A Novel Image Descriptor with Aggregated Semantic Skeleton Representation for Long-term Visual Place Recognition
    Authors: N Jiwei, F Joe-Mei, X Dingyu, P Feng, L Wei, H Jun, C Shuai
    Year: 2022

 

  • Title: Optic Disc and Fovea Localization based on Anatomical Constraints and Heatmaps Regression
    Authors: L Luo, F Pan, D Xue, X Feng, J Nie
    Year: 2021

 

  • Title: A Novel Fractional-Order Discrete Grey Model with Initial Condition Optimization and Its Application
    Authors: Y Liu, F Pan, D Xue, J Nie
    Year: 2021

 

  • Title: EPSA-VPR: A lightweight visual place recognition method with an Efficient Patch Saliency-weighted Aggregator
    Authors: J Nie, Q Zhào, D Xue, F Pan, W Liu
    Year: 2025

 

🔚 Conclusion

With a solid foundation in engineering and control systems and an innovative mindset in artificial intelligence, Jiwei Nie is poised to become a key figure in the evolution of intelligent automation technologies. His work contributes not only to academic theory but also to practical applications that influence the development of autonomous vehicles, intelligent detection systems, and large AI model architectures. As he approaches the completion of his Ph.D. in early 2025, Jiwei is expected to continue pushing technological boundaries, inspiring future advancements in AI research and real-world intelligent systems deployment.

Chen Shoubin | Behavioral Neuroscience | Best Researcher Award

Dr. Chen Shoubin | Behavioral Neuroscience | Best Researcher Award

Dr. Chen Shoubin, Shenzhen University,  China.

Dr. Shoubin Chen is a forward-thinking Research Fellow at the Guangdong Laboratory of Artificial Intelligence and Digital Economy (Shenzhen), affiliated with Shenzhen University. With a Ph.D. in Photogrammetry and Remote Sensing, his career has been rooted in the intersection of spatial intelligence, robotics, and AI. From leading national research projects to publishing in reputable journals and securing multiple invention patents, Dr. Chen has made substantial contributions to the field of embodied intelligent robotics. His research emphasizes multi-sensor fusion and autonomous mapping, aiming to give machines human-like spatial perception and decision-making capabilities.

Profile

Google Scholar

 

📚 Early Academic Pursuits

Shoubin Chen’s academic journey began with a strong foundation in geospatial sciences, culminating in a Ph.D. in Photogrammetry and Remote Sensing in 2020. This prestigious degree was awarded through a rigorous joint training program between Wuhan University and the Finnish Geospatial Research Institute. During his doctoral studies, he developed a deep interest in integrating advanced spatial data techniques with artificial intelligence, laying the groundwork for his future research endeavors. His early academic phase was marked by a commitment to cross-border scientific collaboration and multidisciplinary exploration, which has since defined his research approach.

🧑‍💻 Professional Endeavors

Currently serving as a Research Fellow and graduate supervisor at the Guangdong Laboratory of Artificial Intelligence and Digital Economy (Shenzhen) and Shenzhen University, Dr. Chen plays a pivotal role in advancing embodied intelligence within the Spatial Intelligence Team. His responsibilities include mentoring postgraduate students, overseeing cutting-edge research, and steering major national and provincial scientific projects. He has contributed to several national-level initiatives, including two National Natural Science Foundation of China grants, support from the China Postdoctoral Science Foundation, and sub-projects under the National Key Research and Development Program. These experiences have sharpened his expertise in high-precision robotic mapping and autonomous navigation.

🤖 Contributions and Research Focus

Dr. Chen’s primary research focus lies in embodied intelligent robotics, with an emphasis on multi-sensor fusion, robotic perception, and spatial mapping technologies. He is recognized for integrating data from various sensing modalities to improve the autonomy and spatial awareness of robotic systems. His innovations aim to empower robots with human-like spatial understanding, allowing them to operate reliably in complex environments. This research direction is crucial for applications ranging from autonomous vehicles to intelligent service robots, contributing significantly to the frontier of AI-driven robotics.

🏅 Accolades and Recognition

Throughout his academic and professional career, Shoubin Chen has garnered considerable recognition for his scientific excellence. He has published nearly ten high-quality papers as either the first or corresponding author in SCI Q2 journals and CCF B-tier or higher conferences and journals. Moreover, he has applied for over ten invention patents, underscoring his commitment to both theoretical advancement and practical application. His reputation in the academic community is further highlighted by his service as a peer reviewer for prestigious platforms such as the IEEE Internet of Things Journal, Remote Sensing of Environment, IEEE Transactions on Intelligent Vehicles, and ICRA, one of the top robotics conferences globally.

🌐 Impact and Influence

Dr. Chen’s work has had a profound impact on the fields of AI, robotics, and spatial computing. His multi-disciplinary approach has influenced how robots understand and interact with their environments, offering transformative possibilities in smart cities, autonomous transport, and digital mapping. By fusing photogrammetry with robotics and AI, he has contributed to a new paradigm in spatial intelligence that bridges digital perception and physical action. His projects have not only generated academic outputs but have also driven technological innovations with potential for real-world deployment.

🌱 Legacy and Future Contributions

As a mentor, innovator, and research leader, Shoubin Chen continues to inspire the next generation of scientists and engineers in AI and robotics. His forward-looking vision involves deepening the integration of embodied intelligence with environmental understanding, enabling machines to collaborate more intuitively with humans. He is poised to expand his research to include human-robot interaction, sustainable urban intelligence, and smart sensing systems. With a growing portfolio of publications, patents, and mentorship experiences, his contributions are set to leave a lasting legacy in the development of intelligent systems that seamlessly bridge perception and action.

🔬 Vision in Artificial Intelligence and Robotics

Guided by a vision that combines spatial science with artificial cognition, Dr. Chen’s work embodies the future of AI-powered robotics. His pursuit of intelligent, context-aware robotic systems aligns with global goals in automation, smart infrastructure, and digital economy. As AI becomes increasingly pervasive in everyday life, his contributions are steering the technology toward safer, more efficient, and more interactive systems. Through continuous innovation and collaboration, he remains at the forefront of a transformative research frontier that blends engineering precision with visionary thinking.

Publication

  • Title: Exploring embodied multimodal large models: Development, datasets, and future directions
    Authors: S Chen, Z Wu, K Zhang, C Li, B Zhang, F Ma, FR Yu, Q Li
    Year: 2025

 

  • Title: Distributed Robust Communication-Efficient Multi-Robot SLAM Combining Real-Time Intersection and Historical Loop Constraints
    Authors: B Zhang, Z Xiong, J Qiu, S Chen, Y Hu, S Chen
    Year: 2025

 

  • Title: TextGeo-SLAM: A LiDAR SLAM With Text Semantics and Geometric Constraints-Based Loop Closure
    Authors: S Chen, C Li, Q Jiang, X Zhuang, B Zhang, B Zhou, Q Li
    Year: 2024

 

  • Title: ASL-SLAM: A LiDAR SLAM with activity semantics-based loop closure
    Authors: B Zhou, C Li, S Chen, D Xie, M Yu, Q Li
    Year: 2023

 

  • Title: Comparative analysis of SLAM algorithms for mechanical LiDAR and solid-state LiDAR
    Authors: B Zhou, D Xie, S Chen, H Mo, C Li, Q Li
    Year: 2023

 

  • Title: Research on SLAM based on LiDAR/visual fusion (LV-SLAM)
    Authors: C Shoubin
    Year: 2023

 

  • Title: Cooperative smartphone GNSS/PDR for pedestrian navigation
    Authors: C Jiang, Y Chen, C Chen, S Chen, Q Meng, Y Bo, J Hyyppa
    Year: 2022

 

  • Title: Indoor Attitude Estimation Using Equipped Gyroscopes and Depth Sensors
    Authors: Q Shi, Z Song, Z Xiao, S Chen, F Wang
    Year: 2022

 

  • Title: LI-SLAM: Fusing LiDAR and Infrared Camera for Simultaneous Localization and Mapping
    Authors: B Zhou, D Xie, S Chen, C Li, H Mo
    Year: 2022

 

  • Title: NDT-LOAM: A real-time LiDAR odometry and mapping with weighted NDT and LFA
    Authors: S Chen, H Ma, C Jiang, B Zhou, W Xue, Z Xiao, Q Li
    Year: 2021

 

✅ Conclusion

In conclusion, Dr. Shoubin Chen exhibits all the core qualities of a Best Researcher Award recipient: deep scientific insight, proven research leadership, strong publication and patent output, and a visionary approach to solving real-world problems through AI and robotics. While there are opportunities to grow his international footprint, his current accomplishments already place him among the leading young researchers in his field. Based on the evidence of impact, innovation, and research excellence, he is highly suitable for the Best Researcher Award.

Atena Shojaie | Behavioral Neuroscience | Best Researcher Award

Ms. Atena Shojaie | Behavioral Neuroscience | Best Researcher Award

Ms. Atena Shojaie, Kerman university of medical sciences, Iran.

Atena Shojaie is a dedicated medical-surgical nursing professional with a Master’s degree from Kerman University of Medical Sciences. Her early academic journey was marked by a passion for integrating clinical care with research, particularly in neurology and rehabilitation. Over three years of working in critical care settings, including Neurology and ICU wards, she honed her clinical expertise while also serving as a valued clinical instructor. Her research focus on guided imagery as a therapeutic intervention for multiple sclerosis and MRI-induced anxiety has led to innovative practices currently in use at major hospitals. Atena’s academic contributions are beginning to gain recognition through citations and clinical adoption of her methods.

Profile

Google Scholar

 

🎓 Early Academic Pursuits

Atena Shojaie began her journey in the field of healthcare with a strong academic foundation, earning a bachelor’s degree in nursing followed by a Master of Science in Medical-Surgical Nursing from Kerman University of Medical Sciences. Her early academic interests revolved around holistic patient care and neuro-rehabilitation, which laid the groundwork for her later clinical and research endeavors. During her postgraduate studies, she demonstrated a deep commitment to understanding patient needs—especially those facing neurological challenges—while also refining her clinical skills in hospital environments.

🏥 Professional Endeavors

In the span of just three years, Atena accumulated extensive experience working in several critical hospital wards, including Neurology, Neurosurgery, and the Intensive Care Unit (ICU). Her hands-on experience with acute and chronic conditions shaped her clinical intuition and enhanced her ability to manage complex patient cases. Parallel to her clinical work, she embraced the role of a clinical instructor, mentoring nursing and emergency medical students with a balance of academic rigor and compassionate teaching. This dual role of caregiver and educator reflects her deep-seated dedication to both practice and pedagogy.

🔬 Contributions and Research Focus

Atena’s research primarily centers on the intersection of psychological interventions and physical rehabilitation, with a particular emphasis on multiple sclerosis (MS). Her master’s thesis, “The Effectiveness of Guided Imagery on Walking and Balance Dysfunction in Patients With Multiple Sclerosis,” stands as a cornerstone of her academic work. The project demonstrated measurable improvements in gait and balance among MS patients and has since influenced ongoing clinical practices. Additionally, she completed a significant study on the “Anxiety of Patients Undergoing Magnetic Resonance Imaging (MRI),” showing how guided imagery can alleviate pre-procedure stress—further reflecting her commitment to patient-centered innovations.

🧠 Innovations in Mental Imagery

Atena Shojaie has been instrumental in translating academic research into practical tools for patient care. One of her notable innovations includes the creation of a guided imagery audio file, which is now regularly used in two major healthcare centers—Bahonar Hospital’s MRI department and Shafa Hospital’s MS Clinic. This therapeutic tool has not only improved the mental well-being of patients but also contributed to smoother clinical workflows, particularly in high-anxiety environments like radiology units.

📈 Impact and Influence

Although still early in her research career, Atena’s work has begun to gain scholarly recognition. With a citation index that includes three citations and an h-index of 1, her research is already laying the foundation for future studies in neuro-nursing and psychological rehabilitation. Her work continues to resonate with clinical teams and academics alike, especially those focused on non-pharmacological interventions for neurological conditions.

🏅 Accolades and Recognition

Atena’s clinical and research activities have earned her respect among her peers and mentors at Kerman University of Medical Sciences. While formal awards may still be on the horizon, her true recognition lies in the adoption of her guided imagery methods by major hospitals—an endorsement of both her scientific rigor and clinical insight. Her role as a trusted clinical instructor further affirms her reputation as a knowledgeable and compassionate professional.

🌟 Legacy and Future Contributions

With a solid foundation in research and hands-on care, Atena Shojaie is poised to make enduring contributions to the field of neuro-rehabilitative nursing. Her vision includes expanding the use of therapeutic mental imagery in broader hospital settings and conducting multi-center studies to further validate its effectiveness. As she continues her academic and clinical journey, her legacy will likely be defined by a thoughtful fusion of science, compassion, and innovation—paving the way for future advancements in holistic patient care.

Publication

 

  • Anxiety of Patients Undergoing Magnetic Resonance Imaging (MRI): The Effectiveness of Guided Mental Imagery
    Authors: A. Shojaie, H. Amiri, T. Dehesh, B. Bagherian
    Year: 2024

 

  • The Effectiveness of Guided Imagery on Walking and Balance Dysfunction in Patients With Multiple Sclerosis: A Randomized Controlled Trial
    Authors: B.B. Atena Shojaie, Hoda Kamali, Monir Sadat Nematollahi, Zahra Imani Goghary
    Year: 2025

 

✅ Conclusion

Atena Shojaie exemplifies the new generation of nurse-researchers who bridge the gap between evidence-based practice and compassionate patient care. Her work in guided mental imagery not only addresses physical dysfunction but also supports patients’ emotional and psychological needs. As she continues to expand her research and clinical impact, Atena is well-positioned to influence future standards in neuro-nursing and non-pharmacological therapy. Her legacy will likely be defined by innovation, empathy, and a relentless pursuit of better outcomes for patients with neurological conditions.

Mustafa Nazıroğlu | Cellular Neuroscience | Neuroscience Research Excellence Award

Prof. Mustafa Nazıroğlu | Cellular Neuroscience | Neuroscience Research Excellence Award

Prof. Mustafa Nazıroğlu,  Suleyman Demirel University, Turkey.

Professor Mustafa Nazıroğlu is a distinguished scholar with dual doctorates in Physiology and Neuroscience. Beginning his academic journey at Fırat University and advancing to leadership roles at Süleyman Demirel University, he has become a global authority in the fields of oxidative stress, calcium signaling, and TRP ion channels. His research portfolio includes over 270 peer-reviewed articles and thousands of citations, showcasing a profound impact on cellular neuroscience. Beyond research, he has led major international congresses, served on editorial boards of top journals, and has been honored with numerous awards and fellowships in Europe, Asia, and North America.

Profile

Orcid

 

🎓 Early Academic Pursuits

Professor Mustafa Nazıroğlu embarked on his academic journey with a degree from the Faculty of Veterinary Medicine at Fırat University in 1991. Driven by a profound curiosity for physiological mechanisms, he pursued a Ph.D. in Physiology at the same institution, which he completed between 1992 and 1996. His academic ambitions later led him to earn a second Ph.D. in Neuroscience from Süleyman Demirel University (SDU) in 2018, reflecting his commitment to interdisciplinary scholarship and continuous learning.

🧠 Professional Endeavors in Neuroscience and Biophysics

Currently, Professor Nazıroğlu holds the position of Head of the Department of Biophysics and Neuroscience at SDU Medical Faculty. His professional path has been shaped by a deep dedication to academic leadership, having served in several key roles including department head, director of the Neuroscience Research Centre (NOROBAM), and chair of numerous international scientific congresses. Notably, he has successfully organized the biennial International World Congress of Oxidative Stress, Calcium Signalling and TRP Channels from 2006 to 2020, as well as the International Brain Research School series from 2015 to 2024. His influence has also reached global platforms, including service on the organizing committee for the TEMA-14 Congress in Hubei, China, in 2011.

🔬 Contributions and Research Focus

A prolific researcher, Professor Nazıroğlu has significantly advanced our understanding of oxidative stress, calcium signaling, apoptosis, and ion channel (TRP) physiology. His scientific output includes 274 international research articles, 19 review papers, and six book chapters, collectively amassing over 11,500 citations and earning him a Scopus h-index of 59. He has also contributed as an editorial and reviewing member for leading journals such as Biological Trace Element Research, Scientific Reports (Nature Publishing), Frontiers in Physiology, and Current Neuropharmacology, among others. His research has bridged cellular neuroscience with therapeutic strategies, making him a vital contributor to the global scientific discourse.

🏅 Accolades and Recognition

Throughout his career, Professor Nazıroğlu has received numerous national and international honors, celebrating his scientific achievements and global engagement. These include the NATO Research Fellowship (Germany), the Alexander von Humboldt Fellowship (Germany), and the Young Investigative Scientist Award (USA). He has also been recognized by the Turkish Scientific and Technological Research Council (TÜBİTAK), the Howard Hughes Medical Institute (USA), and was the recipient of the prestigious Khwarizmi International Award (Iran). His visiting professorships at institutions in the UK, Qatar, and Japan further underscore his international reputation and collaboration.

🌍 Impact and Influence

Professor Nazıroğlu’s impact extends beyond academic publishing and conference organization. As a mentor, speaker, and panel member, he has shaped the careers of young neuroscientists and fostered a collaborative global network of researchers in calcium signaling and oxidative biology. His participation in expert advisory boards and scientific panels illustrates the depth of his influence on both research policy and biomedical innovation.

📘 Legacy of Knowledge

With over three decades dedicated to science and education, Professor Nazıroğlu has built a lasting legacy grounded in scientific rigor and visionary leadership. His conferences and educational programs, especially the International Brain Research School, have become cornerstone events for knowledge exchange in neuroscience. He has laid a strong foundation for future advancements in TRP channel research and neurophysiology.

🚀 Future Contributions and Vision

Looking forward, Professor Nazıroğlu continues to guide critical research on cellular responses to oxidative stress and ion channel modulation. His forward-thinking approach, combined with an inclusive scientific philosophy, ensures that he remains a leading voice in shaping the next era of biomedical research. With ongoing collaborative projects and mentorship of emerging scholars, his work is poised to influence both clinical and theoretical frontiers for years to come.

Publication

 

  • Title: Vitamin D Supplementation Modulates Blood and Tissue Zinc, Liver Glutathione and Blood Biochemical Parameters in Diabetic Rats on a Zinc-Deficient Diet
    Authors: Kechrid, Z.; Hamdiken, M.; Nazıroğlu, M.; Flores-Arce, M.
    Year: 2023

 

  • Title: Low molecular weight heparin treatment reduced apoptosis and oxidative cytotoxicity in the thrombocytes of patients with recurrent pregnancy loss and thrombophilia: Involvements of TRPM2 and TRPV1 channels
    Authors: Dal, Y.; Nazıroğlu, M.; Özkaya, M.O.
    Year: 2023

 

  • Title: NMDA Receptor Activation Stimulates Hypoxia-Induced TRPM2 Channel Activation, Mitochondrial Oxidative Stress, and Apoptosis in Neuronal Cell Line: Modular Role of Memantine
    Authors: Kenan Yıldızhan; Mustafa Nazıroğlu
    Year: 2023

 

  • Title: Honey bee venom melittin increases the oxidant activity of cisplatin and kills human glioblastoma cells by stimulating the TRPM2 channel
    Authors: Kemal Ertilav; Mustafa Nazıroğlu
    Year: 2023

 

  • Title: Silver nanoparticles potentiate antitumor and oxidant actions of cisplatin via the stimulation of TRPM2 channel in glioblastoma tumor cells
    Authors: Yener Akyuva; Mustafa Nazıroğlu
    Year: 2023

 

  • Title: A novel antagonist of TRPM2 and TRPV4 channels: Carvacrol
    Author: Nazıroğlu, M.
    Year: 2022

 

  • Title: Amantadine Attenuated Hypoxia-Induced Mitochondrial Oxidative Neurotoxicity, Apoptosis, and Inflammation via the Inhibition of TRPM2 and TRPV4 Channels
    Authors: Öcal, Ö.; Coşar, A.; Nazıroğlu, M.
    Year: 2022

 

  • Title: Eicosapentaenoic acid enhanced apoptotic and oxidant effects of cisplatin via activation of TRPM2 channel in brain tumor cells
    Authors: Öcal, Ö.; Nazıroğlu, M.
    Year: 2022

 

  • Title: Paclitaxel Promotes Oxidative Stress–Mediated Human Laryngeal Squamous Tumor Cell Death through the Stimulation of Calcium and Zinc Signaling Pathways: No Synergic Action of Melatonin
    Authors: Kumbul, Y.Ç.; Nazıroğlu, M.
    Year: 2022

 

  • Title: Protective role of selenium on MPP⁺ and homocysteine-induced TRPM2 channel activation in SH-SY5Y cells
    Authors: Yıldızhan, K.; Nazıroğlu, M.
    Year: 2022

 

🧾 Conclusion

Through an outstanding blend of academic excellence, innovative research, and global collaboration, Professor Nazıroğlu has carved a legacy as a leading figure in neuroscience and biophysics. His efforts in organizing international platforms and mentoring young scientists reflect a career committed to advancing knowledge and fostering global scientific networks. With continued contributions and visionary leadership, he remains a driving force in shaping the future of cellular neurophysiology and therapeutic discovery.

Sukesh Sinha | Neuropharmacology | Lifetime achievement Award

Prof. Dr. Sukesh Sinha | Neuropharmacology | Lifetime achievement Award

Prof. Dr. Sukesh Sinha,  National Institute of Nutrition-ICMR, India.

Dr. Sukesh Narayan Sinha, a seasoned toxicologist and research leader, has dedicated his career to advancing the fields of food safety, drug toxicology, pesticide toxicology, and pharmacology. Starting with a strong academic foundation in chemistry from Bihar University, he honed his expertise further through international training at the University of Helsinki and the CDC in the USA. Rising through the ranks of India’s premier health research institutions under the ICMR, Dr. Sinha’s career spans critical research roles that have directly impacted national health and safety policies. His global collaborations and leadership roles reflect a career built on scientific rigor, public service, and continuous learning.

Profile

Google Scholar

 

🎓 Early Academic Pursuits

Born on January 3rd, 1965, Dr. Sukesh Narayan Sinha’s academic journey began with a profound interest in the field of chemistry. He earned his B.Sc. Honours in Chemistry in 1989, followed by an M.Sc. in Chemistry in 1993, and later a Ph.D. in Chemistry in 1999—all from Bihar University, Muzaffarpur. His pursuit of advanced scientific knowledge extended internationally, where he underwent specialized analytical skill development in toxicology at the University of Helsinki, Finland. These foundational years cemented his passion for chemical and toxicological research, shaping the path for a distinguished career in public health and environmental safety.

🧪 Professional Endeavors in Toxicology

Dr. Sinha’s career has been marked by continuous progression through India’s foremost medical and research institutions under the Indian Council of Medical Research (ICMR). Beginning as a Research Fellow at the National Institute of Malaria Research, he moved into industry as a Research Scientist at Alkame Laboratory. His return to the ICMR system in 2001 marked the beginning of a steady ascent through scientific ranks—from Scientist-B to his current post as Senior Grade Deputy Director (Scientist-F) at the ICMR-National Institute of Nutrition (NIN), Hyderabad. He also held key roles at the ICMR-National Institute of Occupational Health, contributing immensely to occupational and environmental health research.

🧬 Contributions and Research Focus

Specializing in Food Toxicology, Drug Research & Toxicology, Pesticide Toxicology, and Pharmacology, Dr. Sinha has focused on identifying and mitigating chemical risks in food and the environment. His work has had a direct impact on public health safety standards in India. Through advanced analytical techniques and interdisciplinary collaboration, he has played a central role in guiding policy and regulatory frameworks concerning food safety. His expertise has not only contributed to toxicological research but has also enhanced national capacities in monitoring hazardous substances affecting human health.

🌍 Global Collaborations and Scientific Exposure

Dr. Sinha’s vision and research have reached global platforms. Notably, he served as a Visiting Scientist at the University of Cincinnati, USA, where he collaborated with experts in Environmental Health. He also completed two intensive courses on health and safety under the Centers for Disease Control and Prevention (CDC) in Atlanta, USA. These international exposures have enriched his scientific perspective, enabling him to incorporate global best practices into India’s health safety frameworks and toxicology research protocols.

🏅 Accolades and Recognition

Throughout his career, Dr. Sinha has earned recognition for his commitment and excellence in scientific research. While specific awards are not listed, his steady promotion within the ICMR ranks—from Scientist-B to Scientist-F—reflects institutional trust in his capabilities and leadership. His selection as a visiting scientist abroad and participation in elite training programs also underscore his status as a respected voice in toxicology and public health research.

📢 Impact and Influence on Public Health

Through his extensive research and governmental role, Dr. Sinha has contributed to national strategies on food safety and toxic substance regulation. His input influences decisions affecting millions of citizens, especially in areas related to food contaminants, drug residues, and environmental pollutants. He continues to serve as a bridge between laboratory research and real-world applications that safeguard public health in India.

🔬 Legacy and Future Contributions

Dr. Sinha’s legacy lies in his unwavering commitment to science and service. With decades of experience and an expanding portfolio of national and international collaborations, he is poised to continue influencing future research, shaping young scientific minds, and contributing to India’s health security. His role at ICMR-NIN ensures that his insights and leadership will guide public health policies and toxicology advancements for years to come.

Publication

  • Quantification of organophosphate insecticides and herbicides in vegetable samples using the “Quick Easy Cheap Effective Rugged and Safe” (QuEChERS) method and a high …
    SN Sinha, K Vasudev, MVV Rao2012

 

  • Distribution of pesticides in different commonly used vegetables from Hyderabad, India
    SN Sinha, MVV Rao, K Vasudev2012

 

  • Air pollution from solid fuels.
    SN Sinha, PK Nag2011

 

  • Environmental monitoring of benzene and toluene produced in indoor air due to combustion of solid biomass fuels
    SN Sinha, PK Kulkarni, SH Shah, NM Desai, GM Patel, MM Mansuri, …2006

 

  • Repeated episodes of endosulfan poisoning
    A Dewan, VK Bhatnagar, ML Mathur, T Chakma, R Kashyap, HG Sadhu, …2004

 

  • Effect of dissociation energy on ion formation and sensitivity of an analytical method for determination of chlorpyrifos in human blood, using gas chromatography–mass …
    SN Sinha, R Pal, A Dewan, MM Mansuri, HN Saiyed2006

 

  • A novel method for pesticide analysis in refined sugar samples using a gas chromatography–mass spectrometer (GC–MS/MS) and simple solvent extraction method
    SN Sinha, VK Bhatnagar, P Doctor, GS Toteja, NP Agnihotri, RL Kalra2011

 

  • A liquid chromatography mass spectrometry-based method to measure organophosphorous insecticide, herbicide and non-organophosphorous pesticide in grape and apple samples
    SN Sinha, MVV Rao, K Vasudev, M Odetokun2012

 

  • Quantification of organophosphate insecticides in drinking water in urban areas using lyophilization and high-performance liquid chromatography–electrospray ionization-mass …
    SN Sinha, K Vasudev, MVV Rao, M Odetokun2011

 

  • Inhibition of protein glycation by procyanidin‐B2 enriched fraction of cinnamon: delay of diabetic cataract in rats
    P Muthenna, G Raghu, C Akileshwari, SN Sinha, P Suryanarayana, …2013

 

🏁 Conclusion

Dr. Sukesh Narayan Sinha stands as a respected figure in India’s scientific community, with an enduring impact on toxicology research and public health safety. His career reflects a seamless integration of deep scientific knowledge, practical application, and international collaboration. As he continues his service at ICMR-NIN, his contributions promise to leave a lasting legacy in strengthening food safety standards, environmental health, and public policy for future generations. Dr. Sinha’s journey inspires commitment to research excellence and exemplifies the profound role of science in safeguarding society.

 

Hao Lai | Clinical Neuroscience | Best Researcher Award

Prof. Dr. Hao Lai | Clinical Neuroscience | Best Researcher Award

Prof. Dr. Hao Lai, Zhongshan Hospital, Fudan University, China.

Dr. Hao Lai is a distinguished cardiovascular surgeon and researcher, currently serving as Chief Physician at Zhongshan Hospital, Fudan University. With over 20 years of clinical expertise, he specializes in aortic and cardiovascular surgery. His academic achievements include a Ph.D. in Surgery from Fudan University and significant contributions to the study of epigenetic mechanisms in thoracic aortic dissection. As a principal investigator of nationally funded projects and co-author of influential publications, Dr. Lai combines scientific rigor with clinical innovation. He has also played a key role in medical education and device development through industry collaboration.

Profile

Scopus

 

🎓 Early Academic Pursuits

Dr. Hao Lai began his academic journey with a strong foundation in medical sciences, culminating in a Ph.D. in Surgery from the prestigious Fudan University. His early academic pursuits were marked by a deep interest in cardiovascular physiology and surgical intervention, which later matured into a specialized focus on aortic diseases. His time as a doctoral candidate not only equipped him with rigorous scientific training but also ignited his lifelong commitment to solving complex clinical problems through research.

🏥 Professional Endeavors

Currently serving as Chief Physician at Zhongshan Hospital, Fudan University, Dr. Hao Lai has accumulated over two decades of extensive clinical experience in cardiovascular and aortic surgery. His professional trajectory reflects a seamless integration of surgical excellence with academic leadership. At Zhongshan Hospital, a leading institution in China, he has spearheaded several clinical programs aimed at enhancing patient outcomes in cases of thoracic aortic dissection and other high-risk cardiovascular conditions.

🔬 Contributions and Research Focus

Dr. Lai’s research centers around the epigenetic mechanisms underlying thoracic aortic dissection, with a particular focus on histone modification and DNA methylation. He is the Principal Investigator of a major research project funded by the National Natural Science Foundation of China, which explores the role of H3K36me3 histone modification and DNMT3B-mediated gene body methylation in the pathogenesis of aortic dissection. His scientific efforts bridge molecular pathology with clinical implications, offering new perspectives on the diagnosis and treatment of life-threatening vascular disorders.

🏆 Accolades and Recognition

A respected voice in cardiovascular medicine, Dr. Hao Lai has co-authored numerous influential articles in high-impact journals such as Cardiovascular Research and Advanced Science. His h-index of 18, as listed on Scopus, reflects his consistent scholarly output and the wide academic acknowledgment of his work. In addition, his authorship of the textbook Practical Surgery (3rd Edition), published by People’s Medical Publishing House, stands as a testament to his educational contributions to the next generation of Chinese surgeons.

🧪 Impact and Innovation

Dr. Lai’s research has made a tangible impact on the understanding and treatment of aortic diseases. His investigation into the epigenetic regulation of vascular pathology has opened new avenues for targeted therapies. Moreover, his collaboration with MicroPort Endovascular MedTech demonstrates his commitment to translating research findings into real-world applications, particularly in the development and refinement of endovascular surgical devices.

🌍 Influence and Collaboration

Beyond his direct research and surgical contributions, Dr. Lai’s influence extends into collaborative domains, both nationally and internationally. His leadership in high-level research grants, clinical trials, and industrial partnerships positions him as a central figure in the evolving landscape of cardiovascular surgery. His collaborative spirit fosters innovation and promotes cross-disciplinary dialogue, essential in today’s complex medical research environment.

🔮 Legacy and Future Contributions

As Dr. Hao Lai continues his distinguished career, his legacy is being shaped not only by his surgical accomplishments but also by his contributions to medical science. His ongoing projects are likely to further clarify the molecular landscape of aortic diseases and inspire new therapeutic strategies. Looking ahead, Dr. Lai is poised to remain at the forefront of cardiovascular innovation, committed to improving patient care through a synthesis of research, education, and clinical practice.

Publication

 

Title: Prevalence and predictors of left atrial thrombus in patients with rheumatic atrial fibrillation undergoing cardiac surgery: a cross-sectional study
Authors: J. Cui, Y. Zhang, Y. Wang, Q. Ji, C. Wang
Year: 2025


Title: A novel open-vascular single-branched stent graft in total arch repair of type A aortic dissection one-year results of a prospective multicenter randomized controlled study
Authors: J. Gu, W. Zhang, L. Kang, H. Lai, C. Wang
Year: 2025


Title: Fibroblast Activation Protein Acts as a Biomarker for Monitoring ECM Remodeling During Aortic Aneurysm via 68Ga-FAPI-04 PET Imaging
Authors: C. Hu, H. Tan, Y. Zhang, X. Chen, L. Wang
Year: 2025


Title: Mitochondrial NAD+ deficiency in vascular smooth muscle impairs collagen III turnover to trigger thoracic and abdominal aortic aneurysm
Authors: J. Zhang, Y. Tang, S. Zhang, K. Zhu, W. Zhang
Year: 2025


Title: Correcting mitochondrial loss mitigates NOTCH1-related aortopathy in mice
Authors: Y. Tang, J. Zhang, Y. Fang, Y. Xu, W. Zhang
Year: 2025


Title: Exploration of 68Ga-FAPI-04 PET/MR in Chronic Type B Aortic Dissection
Authors: C. Hu, Y. Zhang, S. Qiu, H. Shi, L. Wang
Year: 2025


Title: Effects of postoperative glucocorticoids on mitigation of organ dysfunction in patients with type A aortic dissection: A randomized controlled trial
Authors: M. Luo, J. Luo, X. Xu, G. Tu, Z. Luo
Year: 2024


Title: Therapeutic results of three-dimensional aortic valve anatomic repair for regurgitant bicuspid aortic valve
Authors: J. Li, C. Wang, Z. Zuo, W. Ding, T. Hong
Year: 2024


Title: 68Ga-FAPI-04 Positron Emission Tomography/Magnetic Resonance Imaging for Assessing Ascending Aortic Aneurysm
Authors: C. Hu, H. Tan, Y. Zhang, H. Lai, L. Wang
Year: 2024


Title: Sex-based outcomes after thoracic endovascular aortic repair: A systematic review and meta-analysis
Authors: Y. Zhang, Y. Zhang, Y. Wang, L. Wang, Q. Ji
Year: 2025

✅ Conclusion

Dr. Hao Lai’s career represents a powerful blend of surgical precision, scientific insight, and academic leadership. His work has advanced the understanding of aortic diseases at the molecular level while improving surgical outcomes for patients. As he continues to mentor, innovate, and lead research at the intersection of epigenetics and cardiovascular pathology, Dr. Lai’s contributions are set to leave a lasting legacy in both clinical practice and medical science.

 

 

Ali Esmaeilzadeh Pilehroud | Clinical Neuroscience | Neuroscience Academic Distinction Award

Dr. Ali Esmaeilzadeh Pilehroud | Clinical Neuroscience | Neuroscience Academic Distinction Award

Dr. Ali Esmaeilzadeh,  Pilehroud Allameh Tabataba’i University, Iran.

Ali Esmaeilzadeh Pilehroud is a distinguished teacher and university professor at Allameh Tabataba’i University in Tehran, specializing in psychology with a strong focus on neuroscience and child cognition. Holding a Ph.D. and an international certificate in psychotherapy for children, he has seamlessly blended academic excellence with practical expertise. His career is marked by significant research projects, multiple influential publications, and a commitment to nurturing future psychologists. His work consistently bridges scientific innovation with educational impact, earning him recognition both nationally and internationally.

Profile

Google Scholar

 

🎓 Early Academic Pursuits

Ali Esmaeilzadeh Pilehroud began his academic journey with a profound passion for understanding the human mind. He earned his Ph.D. in Psychology from the prestigious Allameh Tabataba’i University in Tehran, where his research laid a strong foundation for his future contributions to the fields of psychology and psychotherapy. Additionally, he obtained an international certificate specializing in psychology and psychotherapy for children, reflecting his early commitment to focusing on child development and mental health.

🏛️ Professional Endeavors

Following his academic accomplishments, Ali Esmaeilzadeh Pilehroud embarked on a dual career as a teacher and a university professor at Allameh Tabataba’i University, one of Iran’s leading institutions. His role bridges both education and mentorship, allowing him to mold the minds of future psychologists. His deep involvement in both theoretical and practical aspects of psychology demonstrates his dedication to merging academic excellence with real-world application.

🧠 Contributions and Research Focus

Ali Esmaeilzadeh Pilehroud’s research primarily revolves around neuroscience and child cognition, highlighting his interest in the biological and psychological foundations of development. He has successfully completed two major research projects exploring these domains, contributing valuable insights to the scientific community. His work emphasizes understanding how early neural and cognitive development can be supported through targeted psychological interventions, particularly benefiting children’s growth and mental wellness.

📚 Books and Publications

A testament to his scholarly dedication, Ali Esmaeilzadeh Pilehroud has authored five volumes of academic and professional books, each carrying its own ISBN. These publications enrich the fields of psychology and child development, providing important resources for both students and practicing professionals. His writings are characterized by their accessibility and depth, offering readers a thorough understanding of complex psychological concepts.

🏆 Accolades and Recognition

Throughout his career, Ali Esmaeilzadeh Pilehroud has earned recognition for his contributions to academia and child psychology. His research works have been cited by peers, showcasing their influence and relevance. Additionally, his international certification in psychotherapy further underscores his standing in the global psychology community, distinguishing him as a leader in child-focused psychological practices.

🌍 Impact and Influence

Ali Esmaeilzadeh Pilehroud’s influence extends beyond the classroom and research labs. By integrating neuroscience with child psychology, he has advanced new methods for fostering cognitive development in children. His approach encourages educational reforms and therapeutic practices that are informed by scientific research, ultimately benefiting countless young lives and shaping a more scientifically informed society.

✨ Legacy and Future Contributions

Looking to the future, Ali Esmaeilzadeh Pilehroud remains committed to expanding his research and educational impact. His legacy is built upon a solid foundation of scientific inquiry, educational mentorship, and contributions to child psychotherapy. With plans to pursue further innovative projects, he aims to continue inspiring the next generation of psychologists while deepening the global understanding of child cognition and development.

Publication

  • Title: Lack of association between interleukin-10 gene promoter polymorphisms with HIV susceptibility and progression to AIDS
    Authors: A. Ramezani, E. Kalantar, A. Aghakhani, M. Banifazl, M. Foroughi, et al.
    Year: 2015

 

  • Title: Evaluation of acquired HIV drug resistance among people living with HIV who have taken antiretroviral therapy for 9–15 months in 14 triangular clinics in Iran, 2015–2016
    Authors: M. Mohraz, K. Tayeri, H. Namdari Tabar, Z. Bayat Jozani, L. Sadeghi, et al.
    Year: 2019

 

  • Title: Different Degrees of Immune Recovery Using Antiretroviral Regimens with Vonavir or Zidovudine/Lamivudine/Efavirenz in HIV-Positive Patients Receiving First Line Treatment in Iran
    Authors: L. Sadeghi, S. Moallemi, R.A. Tabatabai, A. Esmaeilzadeh, S. Ahsani-Nasab, et al.
    Year: 2018

 

  • Title: Enhanced immune responses against HIV-1 with Adenovector (gag and tat) prime/protein boost regimen and GM-CSF injection
    Authors: N.H. Rouzbahani, S. Bayanolhagh, M. Gholami, A. Esmaeilzadeh, Z.B. Jozani, et al.
    Year: 2016

 

  • Title: Comparing Theory of Mind and Executive Functions in Obsessive Compulsive Disorder, Schizophrenia, and Normal Individuals
    Authors: نیکجو وکیل آباد, اسمعیل زاده پیله رود (Nikjoo Vakilabad, Esmaeilzadeh Pilerood)
    Year: (Not clear—year not given, but possibly recent.)

 

🖋️ Conclusion

Through a lifelong dedication to psychology, research, and teaching, Ali Esmaeilzadeh Pilehroud has made lasting contributions to child development studies and cognitive neuroscience. His legacy is not only evident in his scholarly books and research projects but also in the lives of the students and professionals he has mentored. Looking ahead, he continues to inspire and innovate, shaping the future of psychological science and fostering better mental health outcomes for children worldwide.