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Neurochemical Research|January 8, 2026
Exploring Exercise-Linked Neurovascular Unit Adaptations and Sema3G Pathway Involvement in Rats with Vascular Cognitive ImpairmentJuntao Dong, Jianping Huang, Fansi Gao, et al.Neurological Research|July 17, 2015
Involuntary, forced and voluntary exercises are equally capable of inducing hippocampal plasticity and the recovery of cognitive function after strokeYangyang Lin, Juntao Dong, Tiebin Yan, et al.Biochemical and Biophysical Research Communications|May 15, 2024
Integrating analysis of mRNA expression profiles indicates Sgk1 as a key mediator in muscle-brain crosstalk during resistance exerciseYan Liu, Qiuping Ye, Yong Dai, et al.International Journal of Nursing Studies|February 1, 2020
Nonpharmacological interventions for cancer-related cognitive impairment in adult cancer patients: A network meta-analysisYingchun Zeng, Juntao Dong, Meiling Huang, et al.Neurological Research|January 4, 2021
Involuntary, forced or voluntary exercise can ameliorate the cognitive deficits by enhancing levels of hippocampal NMDAR1, pAMPAR1 and pCaMKII in a model of vascular dementiaYangyang Lin, Yangfan Xu, Huiting Feng, et al.Neurological Research|November 12, 2017
Exercise improves recognition memory and synaptic plasticity in the prefrontal cortex for rats modelling vascular dementiaJuntao Dong, Jingpu Zhao, Yangyang Lin, et al.Neurochemical Research|August 5, 2015
Involuntary, Forced and Voluntary Exercises Equally Attenuate Neurocognitive Deficits in Vascular Dementia by the BDNF-pCREB Mediated PathwayYangyang Lin, Xiao Lu, Juntao Dong, et al.Frontiers in Neurology|March 7, 2022
Efficacy of Transcranial Direct Current Stimulation Over Dorsolateral Prefrontal Cortex in Patients With Minimally Conscious StateYuan Peng, Jingpu Zhao, Xiao Lu, et al.Nanoscale|January 28, 2025
Two-dimensional BiTeX crystals with persistent luminescence induced by photochemical reactionsJiajing Wu, Pengjia Zhu, Fei Meng, et al.Pageof 1