[HTML][HTML] Spinal cord injury: molecular mechanisms and therapeutic interventions

X Hu, W Xu, Y Ren, Z Wang, X He, R Huang… - Signal transduction and …, 2023 - nature.com
Spinal cord injury (SCI) remains a severe condition with an extremely high disability rate.
The challenges of SCI repair include its complex pathological mechanisms and the …

[HTML][HTML] Enhancement of motor functional recovery in thoracic spinal cord injury: voluntary wheel running versus forced treadmill exercise

DH Lee, D Cao, Y Moon, C Chen, NK Liu… - Neural Regeneration …, 2025 - journals.lww.com
Spinal cord injury necessitates effective rehabilitation strategies, with exercise therapies
showing promise in promoting recovery. This study investigated the impact of rehabilitation …

[HTML][HTML] NG2 glia reprogramming induces robust axonal regeneration after spinal cord injury

W Tai, X Du, C Chen, XM Xu, CL Zhang, W Wu - Iscience, 2024 - cell.com
Spinal cord injury (SCI) often leads to neuronal loss, axonal degeneration, and behavioral
dysfunction. We recently show that in vivo reprogramming of NG2 glia produces new …

促进胸段脊髓损伤患者运动功能恢复: 自主轮跑与强制跑台训练的比较

DH Lee, D Cao, Y Moon, C Chen, NK Liu… - 中国神经再生研究 …, 2025 - sjzsyj.com.cn
运动疗法在脊髓损伤功能恢复方面显示出优势. 为了解康复运动对挫伤性胸段脊髓损伤后功能
恢复和形态变化的影响. 经过7 天的脊髓损伤恢复期后, 小鼠被随机分为训练组(10 …

中枢神経の障害にともなう皮質脊髄路の再編

井上貴博, 上野将紀 - 神経心理学, 2023 - jstage.jst.go.jp
抄録 皮質脊髄路は随意運動の制御に重要な役割を果たしており, 脳卒中や脊髄損傷などで損傷を
受けると重篤な運動障害が引き起こされる. 一方で, 脳や脊髄には可塑性があり …