Nastaran Zamani | Exercise – Appetite – Obesity | Best Researcher Award

Assist. Prof. Dr. Nastaran Zamani | Exercise – Appetite – Obesity | Best Researcher Award

Dr. Nastaran Zamani is a distinguished Iranian neuroscientist and Assistant Professor in the Department of Biology at Payame Noor University, Tehran. With a research career grounded in neurophysiology and Alzheimer’s disease models, she has made valuable contributions to understanding the effects of neuroprotective agents like memantine, vitamin D, folic acid, and DHA on cognitive function. Her expertise spans from electrophysiological recordings of hippocampal neurons to behavioral studies in rodent models. Dr. Zamani has actively collaborated with renowned researchers and co-authored over 20 peer-reviewed articles published in leading journals in neuroscience, physiology, and pharmacology. Her work bridges cellular neurobiology and therapeutic research, reflecting an interdisciplinary approach. Dr. Zamani is also known for her participation in national and international scientific congresses. Through her teaching and mentoring roles, she fosters academic growth and promotes scientific inquiry among students and young researchers in Iran. Her commitment to neuroscience research and education continues to inspire many in the field.

Professional Profile

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Education

Dr. Nastaran Zamani earned her Ph.D. in Animal Physiology from Shahid Chamran University of Ahvaz in 2019, with a doctoral thesis focused on the electrophysiological and behavioral effects of memantine and DHA on hippocampal CA1 neurons and spatial memory in Alzheimer’s disease rat models, under the supervision of Prof. Ahmad Ali Moazedi. She completed her MSc in Animal Physiology from Razi University, Kermanshah, in 2004, where her thesis explored the hematological effects of sodium nitrate in mice, co-supervised by Dr. Syrus Shamili and Dr. Syrus Ghobadi. Her academic foundation was built at the University of Isfahan, where she received her BSc in Biology with a focus on Animal Sciences in 1999. Her education reflects a consistent and deep interest in the physiological and biochemical mechanisms underlying cognitive and neurodegenerative disorders, forming the basis of her current research in neuroscience and therapeutic interventions for Alzheimer’s disease and related neurological conditions.

Experience

Dr. Zamani began her academic career as a faculty instructor in the Department of Biology at Payame Noor University from 2011 to 2019. Since 2019, she has held the position of Assistant Professor in the same department. She has over a decade of teaching experience, mentoring undergraduate and graduate students in physiology, neurobiology, and experimental research techniques. Her research focuses on Alzheimer’s disease models, involving electrophysiology, behavioral neuroscience, and pharmacological interventions. Dr. Zamani has presented her findings in more than ten national and international conferences and has authored over 20 peer-reviewed journal articles in neuroscience and physiology. In addition to teaching and research, she has participated in various academic development workshops on molecular biology, drug delivery, data analysis using MATLAB, and scientific writing. Her continuous contributions to neuroscience research and education have strengthened her role as a dedicated academic professional in the Iranian scientific community.

Research Interests

Dr. Zamani’s research centers on the neurophysiological and therapeutic mechanisms underlying Alzheimer’s disease, with a primary focus on hippocampal CA1 neuron activity, memory, and learning. She explores the pharmacological effects of memantine, folic acid, vitamin B12, DHA, and vitamin D in rodent models of neurodegeneration, using electrophysiological recordings and behavioral assessments such as maze tests. Her investigations examine how these compounds influence spatial learning, memory deficits, neuroinflammation, and oxidative stress in Alzheimer’s models. She has expanded her research to include studies on motor coordination, depression, anxiety, and thermal dysregulation related to neurological disorders, as well as broader physiological effects of exercise and natural antioxidants. Her interdisciplinary approach integrates neuroscience, pharmacology, and physiology, supported by collaborations with international researchers and active engagement in congresses and workshops. By bridging cellular mechanisms and therapeutic strategies, Dr. Zamani’s work contributes significantly to preclinical efforts targeting Alzheimer’s disease and cognitive disorders.

Awards

While formal award titles are not explicitly listed, Dr. Nastaran Zamani’s consistent scholarly productivity and academic recognition are evident through her extensive peer-reviewed publications, conference participations, and workshop invitations. She has been selected to present at prestigious neuroscience congresses, such as the Congress of Basic and Clinical Neuroscience, and has contributed to multiple multidisciplinary international collaborations, demonstrating her recognition within the academic community. Her research contributions to Alzheimer’s disease models have earned her collaborative roles in high-impact studies published in journals like Frontiers in Physiology, Molecular and Cellular Biochemistry, and Cytotherapy. She has also participated in professional development programs hosted by Tehran University of Medical Sciences, Elsevier Research Academy, and the International Brain Research Organization, further reflecting her ongoing commitment to academic excellence. Dr. Zamani’s profile highlights the high regard she holds among peers and institutions for her active role in advancing neurophysiological research in Iran and beyond.

Conclusion:

Dr. Nastaran Zamani is a dedicated neuroscientist whose innovative research on neurodegeneration and therapeutic interventions for Alzheimer’s disease has significantly advanced our understanding of cognitive function, making her a valuable contributor to the global neuroscience community.

 

Top Noted Publications

Han Xi | Problem Solving | Best Researcher Award

Mr. Han Xi | Problem Solving | Best Researcher Award

Han Xi is a dedicated Lecturer at Huanghe Jiaotong University and a doctoral candidate in Traffic Engineering at Chongqing Jiaotong University (expected 2025), currently engaged in cutting-edge research on asphalt aging mechanisms and the development of anti-aging road materials. Since joining the academic faculty in 2020, Han has undertaken significant research, contributing to national-level projects such as the Henan Provincial Social Sciences Association Project. With published articles in reputed journals like Material Guide and Journal of Chongqing Jiaotong University, and patents addressing asphalt UV aging testing, Han’s work bridges theoretical innovation with practical engineering application. Passionate about infrastructure sustainability, she explores microstructural changes in asphalt due to UV exposure and seeks to enhance material performance through novel compositions. Her contributions extend to advancing scientific understanding and industrial applications in pavement material science. Han Xi exemplifies interdisciplinary innovation at the intersection of civil engineering and material science.

Profile

Education 🎓

Han Xi began her academic journey at Huanghe Jiaotong University in 2020 and was soon enrolled in the Contractual Doctoral Training Program in Traffic Engineering at Chongqing Jiaotong University in 2021. She is anticipated to complete her doctoral degree by June 2025. Her academic focus is on the intersection of materials science and transportation engineering, especially the impact of ultraviolet (UV) aging on asphalt materials. During her doctoral studies, Han has explored the structural and chemical evolution of asphalt subjected to environmental stressors, contributing to a deeper understanding of material degradation. She integrates theoretical analysis with experimental validation, utilizing advanced testing systems to study rheological and molecular transformations in aged road materials. Her educational path reflects a strong commitment to research excellence, practical innovation, and cross-disciplinary problem-solving, preparing her to address real-world engineering challenges with scientific rigor and methodological precision.

Experience 👨‍🏫

Since 2020, Han Xi has served as a Lecturer at Huanghe Jiaotong University, where she teaches and guides undergraduate students while actively conducting research in road materials engineering. Her experience includes managing a provincial research project and contributing to the design of experimental setups for asphalt aging analysis. Simultaneously, she has undertaken her PhD studies through a contractual training program at Chongqing Jiaotong University, balancing academic responsibilities with doctoral research. Han’s professional journey is marked by innovation, such as her development of patented UV aging testing devices for asphalt. She has presented and published scientific findings in peer-reviewed journals and engaged in collaborations that merge scientific inquiry with practical infrastructure solutions. Her dual roles in teaching and research have allowed her to inspire students while contributing significantly to advancements in road engineering, with a focus on environmental durability and material longevity

Research Interests 🔬

Han Xi’s research centers on the aging mechanisms of asphalt, particularly under ultraviolet (UV) radiation, with a goal of developing advanced, anti-aging road materials that improve pavement durability. She investigates the molecular structure changes, rheological behavior, and chemical transformations that occur during UV and coupled aging processes. Her work combines theoretical modeling with practical experimentation using custom-designed devices—evidenced by her two patented innovations—to simulate and measure asphalt degradation. Through her ongoing doctoral research at Chongqing Jiaotong University, Han examines the structure-activity relationship of aged asphalt and correlates macroscopic changes with microscopic composition. This research provides valuable insights for enhancing the lifespan of road infrastructure and supports the development of environmentally resilient transportation systems. Her scientific contributions aim to solve real-world problems in road engineering by integrating material science, environmental factors, and performance analytics into a unified research agenda focused on sustainable infrastructure.