Collection: AI in 2025

Biological aging and its association with serum neurofilament light chain levels in middle-aged African Americans: a prospective observational study

How to Cite: Lei MK, Ong ML, Simons RL, Beach SRH. Biological aging and its association with serum neurofilament light chain levels in middle-aged African Americans: a prospective observational study. Aging Adv. 2025;2(1):1-8.

https://doi.org/10.4103/AGINGADV.AGINGADV-D-24-00021


Artificial intelligence in age-related cardiogenic shock prediction: a systematic review and meta-analysis

How to Cite: Popat A, Pethe G, Yadav S, Sharma P. Artificial intelligence in age-related cardiogenic shock prediction: a systematic review and meta-analysis. Aging Adv. 2025;2(1):9-13.

https://doi.org/10.4103/AGINGADV.AGINGADV-D-24-00025


Natural products and their components ameliorate aging-induced reproductive disorders: a narrative review

How to Cite: Dai X, Zhang L, Muhammad A, Zhou Z. Natural products and their components ameliorate aging-induced reproductive disorders: a narrative review. Aging Adv. 2025;2(3):112-120.  

https://doi.org/10.4103/AGINGADV.AGINGADV-D-25-00009


Gamma entrainment as a therapeutic modality for the aging brain: a narrative review

How to Cite: Chen B. Gamma entrainment as a therapeutic modality for the aging brain: a narrative review. Aging Adv. 2025;2(4):155-159.

https://doi.org/10.4103/AGINGADV.AGINGADV-D-25-00017


Effects of animal-derived peptides on aging-related diseases: a narrative review

How to Cite: Liu T, Song X, Dai X, Ma H, Muhammad A, He Z, Zhao K. Effects of animal-derived peptides on aging-related diseases: a narrative review. Aging Adv. 2025;2(4):160-165.

https://doi.org/10.4103/AGINGADV.AGINGADV-D-25-00012


The role of machine learning in discovering biomarkers and predicting treatment strategies for neurodegenerative diseases: A narrative review

How to Cite: Aborode AT, Emmanuel OA, Onifade IA, Olotu E, Otorkpa OJ, Mehmood O, Abdulai SI, Jamiu A, Osinuga A, Oko CI, Fakorede S, Mangdow M, Babatunde O, Olapade Z, Victoria AG, Salami A, Usman IA, Agboli VI, Adesola RO. The role of machine learning in discovering biomarkers and predicting treatment strategies for neurodegenerative diseases: A narrative review. NeuroMarkers. 2025;1.

https://doi.org/10.1016/j.neumar.2024.100034


Neurogenesis markers in brain aging and their serotonergic modulation by physical exercise: A narrative review

How to Cite: do Nascimento Silva J, Rodrigues BA, Kawamoto EM. Neurogenesis markers in brain aging and their serotonergic modulation by physical exercise: A narrative review. NeuroMarkers. 2025;4.

https://doi.org/10.1016/j.neumar.2025.100110


Grip force variability and deep learning: A cross-sectional study of a novel biomarker for early detection of Parkinson's disease

How to Cite: Neto OP, Pinho TOR. Grip force variability and deep learning: A cross-sectional study of a novel biomarker for early detection of Parkinson's disease. NeuroMarkers. 2025;3.

https://doi.org/10.1016/j.neumar.2025.100106


Apolipoprotein E genotype as a biomarker in late-onset Alzheimer’s disease: A narrative review of the influence of genetic factors on molecular structure

How to Cite: Teixeira IMM, Costa MDR, Filho HLP, Duque BR, Pinheiro NML, Menezes RRPPB, Martins AMC, Sampaio TL. Apolipoprotein E genotype as a biomarker in late-onset Alzheimer’s disease: A narrative review of the influence of genetic factors on molecular structure. NeuroMarkers. 2025;3.

https://doi.org/10.1016/j.neumar.2025.100095


Role of gut-microbiome-brain axis in neurodegenerative diseases: A narrative review of mechanisms, therapeutics, and emerging perspectives

How to Cite: dos Santos JCC. Role of gut-microbiome-brain axis in neurodegenerative diseases: A narrative review of mechanisms, therapeutics, and emerging perspectives. NeuroMarkers. 2025;3.

https://doi.org/10.1016/j.neumar.2025.100111


Challenges and opportunities for repairing the injured spinal cord: inflammation, regeneration, and functional reconstruction

How to Cite: Zha X. Challenges and opportunities for repairing the injured spinal cord: inflammation, regeneration, and functional reconstruction. Regen Med Rep. 2025;2(1):36-44.

https://doi.org/10.4103/REGENMED.REGENMED-D-24-00027


Inflammation-linked apolipoprotein-L activities: immunity control, mitochondrial repair, pathogen resistance, and disease induction

How to Cite: Pays E. Inflammation-linked apolipoprotein-L activities: immunity control, mitochondrial repair, pathogen resistance, and disease induction.

Regen Med Rep. 2025;2(4):161-168.  

https://doi.org/10.4103/REGENMED.REGENMED-D-25-00027


SNRK facilitates cardiac repair associated with nonischemic fibrosis: regulating transforming growth factor-beta1 levels in atrial cardiomyocytes

How to Cite: Thirugnanam, Karthikeyan; Rizvi, Farhan; Jahangir, Arshad; Homar, Peter; Shabnam, Fathima; Palecek, Sean P; Kumar, Suresh N; Pan, Amy; Bai, Xiaowen; Sekine, Hidekazu; Ramchandran, Ramani. SNRK facilitates cardiac repair associated with nonischemic fibrosis: regulating transforming growth factor-beta1 levels in atrial cardiomyocytes. Regen Med Rep 2(2):45-52.

https://doi.org/10.4103/REGENMED.REGENMED-D-25-00009


Molecular and functional heterogeneity of meniscal fibrochondrocytes in bioengineering avascular meniscus repair: is Rap1 signaling vital?

How to Cite: Grimes K, Ma Z, Adesida AB. Molecular and functional heterogeneity of meniscal fibrochondrocytes in bioengineering avascular meniscus repair: is Rap1 signaling vital? Regen Med Rep. 2025;2(3):108-113.

https://doi.org/10.4103/REGENMED.REGENMED-D-25-00010


Optimizing skin regeneration following invasive dermatological procedures with NDZnO: real-world case studies

How to Cite: Zhang XD, Teng C, Bai X, Baum B, Clifton M, Bay S. Optimizing skin regeneration following invasive dermatological procedures with NDZnO: real-world case studies. Regen Med Rep. 2025;2(4):137-142.

https://doi.org/10.4103/REGENMED.REGENMED-D-25-00015


Optimization of mononuclear cell collection material for chimeric antigen receptor T-cell therapy manufacturing: a narrative review

How to Cite: Zhou YY, Maitta RW. Optimization of mononuclear cell collection material for chimeric antigen receptor T-cell therapy manufacturing: a narrative review Regen Med Rep. 2025;2(3):114-120.

https://doi.org/10.4103/REGENMED.REGENMED-D-25-00012


Smart biomanufacturing for health equity in regenerative medicine therapies

How to Cite: Henn AD, Wolff M, Mitra K, Alm K, Finger-Baker I, Bauer SR, Terzic A, Yerden R. Smart biomanufacturing for health equity in regenerative medicine therapies. Regen Med Rep. 2025;2(1):31-35.

https://doi.org/10.4103/REGENMED.REGENMED-D-24-00021


Development of a miRNA-based deep learning model for autism spectrum disorder diagnosis

How to Cite: Dogra S, Kouznetsova VL, Kesari S, Tsigelny IF. Development of a miRNA-based deep learning model for autism spectrum disorder diagnosis. Adv Technol Neurosci. 2025;2(2):72-76.

https://doi.org/10.4103/ATN.ATN-D-24-00033


Integrating molecular fingerprints with machine learning for accurate neurotoxicity prediction: an observational study

How to Cite: Gao Y, Mu J, Liu K, Wang M. Integrating molecular fingerprints with machine learning for accurate neurotoxicity prediction: an observational study. Adv Technol Neurosci. 2025;2(3):109-115.

https://doi.org/10.4103/ATN.ATN-D-24-00034


Advantages in precision, safety, and aesthetic outcomes of robot-assisted minimally invasive  techniques in peripheral nerve microsurgery: a narrative review

How to Cite: Jiang S, Naito K, Liverneaux P. Advantages in precision, safety, and aesthetic outcomes of robot-assisted minimally invasive  techniques in peripheral nerve microsurgery: a narrative review. Adv Technol Neurosci. 2025;2(3):122-127.

https://doi.org/10.4103/ATN.ATN-D-24-00036


Application of machine learning technology and miRNA biomarkers: A novel approach for epilepsy diagnosis

How to Cite: Zhao, Amy ; Yuan, Ryan ; Kouznetsova, Valentina L. ; Tsigelny, Igor F.. Application of machine learning technology and miRNA biomarkers: A novel approach for epilepsy diagnosis.Adv Technol Neurosci. 2025;2(4):145-151.

https://doi.org/10.4103/ATN.ATN-D-25-00017


Comparisons in microglial responses to ischemic–hypoxic brain injury in neonatal and adult mice analyzed by transcriptome integration and deconvolution technologies

How to Cite: Liu, Yang; Chen, Mingjia; Zhang, Ling; Lyu, Tianjie; Geng, Yuehang; Li, Weihao; Shi, Yanfeng; Wang, Meng; Kele, Julianna; Li, Zixiao. Comparisons in microglial responses to ischemic–hypoxic brain injury in neonatal and adult mice analyzed by transcriptome integration and deconvolution technologies.Adv Technol Neurosci. 2025;2(4):161-172.

https://doi.org/10.4103/ATN.ATN-D-25-00004


Magnetic stimulation techniques for the treatment of central nervous system lesions: a narrative review

How to Cite: Moncomble L, Neveu P, Raimond C, Guérout N. Magnetic stimulation techniques for the treatment of central nervous system lesions: a narrative review. Adv Technol Neurosci. 2025;2(1):34-46.

https://doi.org/10.4103/ATN.ATN-D-24-00021


A new treatment for neuropathic pain: a narrative review of non-invasive magnetic stimulation based on the central nervous system

How to Cite: Zhai C, Cai J, Gong Y, Sui Y, Bai Z, Qian Y, Fei Y, Wang T, Wu Q. A new treatment for neuropathic pain: a narrative review of non-invasive magnetic stimulation based on the central nervous system. Adv Technol Neurosci. 2025;2(2):91-96.

https://doi.org/10.4103/ATN.ATN-D-24-00031


Applications of advances in therapeutic electrical stimulation techniques and technologies in precision peripheral nerve repair: a narrative review

How to Cite: Kennedy V Jr., Long MD, Walters J, Adewuyi AA, Franz CK. Applications of advances in therapeutic electrical stimulation techniques and technologies in precision peripheral nerve repair: a narrative review. Adv Technol Neurosci. 2025;2(2):97-101. https://doi.org/10.4103/ATN.ATN-D-24-00023


Application and mechanism of cell therapy technology in the repair of spinal cord injury: a narrative review

How to Cite: Zeng F, Fu H, Liu Y, Xu Z, Zhou T. Application and mechanism of cell therapy technology in the repair of spinal cord injury: a narrative review. Adv Technol Neurosci. 2025;2(1):16-26.

https://doi.org/10.4103/ATN.ATN-D-24-00008