医学
抑制性突触后电位
兴奋性突触后电位
脊髓
神经科学
相互抑制
刺激
脊髓刺激
反射
脊髓损伤
物理医学与康复
慢性中风
电动机控制
冲程(发动机)
运动功能
神经调节
H反射
背
突触后电位
麻醉
中枢神经系统
拉伸反射
神经假体
慢性疼痛
肌梭
截瘫
肌电图
中心图形发生器
神经生理学
电动机系统
运动协调
作者
Luigi Borda,Nikhil Verma,Erynn Sorensen,Erick Carranza,Roberto de Freitas,Scott Ensel,Amy Boos,Gerszten Pc,Daryl P. Fields,George F. Wittenberg,Lee E. Fisher,Elvira Pirondini,Marco Capogrosso,Douglas J. Weber
标识
DOI:10.1016/j.xcrm.2026.102925
摘要
Epidural spinal cord stimulation has been shown to be a promising neurotechnology to improve upper limb function in people affected by stroke. It is well established that spinal cord stimulation (SCS) targeting the dorsal root entry zone increases excitatory drive to α-motoneurons via the monosynaptic reflex pathway. However, the effects of SCS on inhibitory neural pathways remain unexplored. We hypothesized that SCS improves the neuromotor control of arm movement by strengthening both excitatory and inhibitory circuit function. We show in three individuals with post-stroke motor symptoms that SCS enhances postsynaptic Ia reciprocal inhibition. These changes correlate with enhanced muscle coordination and arm kinematics, resulting in smoother and faster trajectories. Our study provides further insights into the neural targets of spinal cord stimulation and the use of this technology to treat post-stroke motor deficits. This study was registered at ClinicalTrials.gov (NCT04512690).
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