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The Significance of Prolonged Physical Activity in Neurogenesis and Neural Regeneration: Comparing Clinical Studies With Proposed AI‐Based Framework

Mohamed J. SaadhFaculty of Pharmacy Middle East University Amman JordanWaleed K. AbdulsahibDepartment of Pharmacology and Toxicology, College of Pharmacy Al Farahidi University Baghdad IraqSaida SaidkhodjaevaDepartment of Neurology, Pediatric Neurology and Medical Genetics Tashkent Pediatric Medical Institute Tashkent UzbekistanGaurav SanghviMarwadi University Research Center, Department of Microbiology Faculty of Science Marwadi University Rajkot Gujarat IndiaSuhas BallalDepartment of Chemistry and Biochemistry, School of Sciences JAIN (Deemed to Be University) Bangalore Karnataka IndiaR. S. K. SharmaPrateek PathakDepartment of Applied Sciences‐Chemistry, NIMS Institute of Engineering & Technology NIMS University Rajasthan Jaipur IndiaAman ShankhyanCentre for Research Impact & Outcome, Chitkara University Institute of Engineering and Technology Chitkara University Rajpura Punjab IndiaAbhinav KumarDepartment of Nuclear and Renewable Energy Ural Federal University Named After the First President of Russia Boris Yeltsin Ekaterinburg RussiaFadhil Feez SeadDepartment of Dentistry, College of Dentistry The Islamic University Najaf IraqMVNL ChaitanyaSchool of Pharmaceutical Sciences Lovely Professional University Phagwara Punjab IndiaReza Akhavan‐SigariDepartment of Health Care Management and Clinical Research Collegium Humanum Warsaw Management University Warsaw Warsaw Poland
Artificial Organsjournal2025en
ABI

Аннотация

BACKGROUND: Adult neurogenesis is the biological process whereby neural stem cells (NSCs) differentiate into neurons and glial cells in specific areas of the adult brain. Impairments in neurogenesis may lead to many complications, including neurodegenerative illnesses and psychiatric problems. In the adult brain, new neurons are generated from neural stem or progenitor cells (NPCs) through a meticulously controlled process that governs both cell proliferation and the specification of neuronal identity. METHODS: This review discusses how artificial intelligence (AI) can be applied to analyze the effects of exercise on neural stem cell proliferation, focusing on data collection, AI model training, and the prediction of outcomes such as neural regeneration and recovery. AI-based models, including machine learning algorithms and deep learning techniques, offer promising tools for understanding and predicting the mechanisms underlying neurogenesis, potentially guiding personalized interventions for individuals with neurological conditions. RESULTS: Adult neurogenesis is fundamentally impacted by several physiological, pathological, and pharmacological variables. These factors encompass exercise, age, severe brain injury, epilepsy, and antidepressant therapies. CONCLUSION: Recent studies indicate that physical exercise is a vital external element that significantly promotes adult neurogenesis in the hippocampus.

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