神经康复
脊髓损伤
神经调节
医学
物理医学与康复
脊髓
加强
神经假体
康复
神经科学
截瘫
功能性电刺激
物理疗法
心理学
中枢神经系统
刺激
哲学
语言学
作者
Rubia van den Brand,Jean-Baptiste Mignardot,Joachim von Zitzewitz,Camille Le Goff,Nicolas Fumeaux,Fabien B. Wagner,Marco Capogrosso,Eduardo Martin Moraud,Silvestro Micera,Brigitte Schurch,Armin Curt,Stefano Carda,Jocelyne Bloch,Grégoire Courtine
出处
期刊:Annals of Physical and Rehabilitation Medicine
日期:2015-06-19
卷期号:58 (4): 232-237
被引量:27
标识
DOI:10.1016/j.rehab.2015.04.003
摘要
Spinal cord injury leads to a range of disabilities, including limitations in locomotor activity, that seriously diminish the patients' autonomy and quality of life. Electrochemical neuromodulation therapies, robot-assisted rehabilitation and willpower-based training paradigms restored supraspinal control of locomotion in rodent models of severe spinal cord injury. This treatment promoted extensive and ubiquitous remodeling of spared circuits and residual neural pathways. In four chronic paraplegic individuals, electrical neuromodulation of the spinal cord resulted in the immediate recovery of voluntary leg movements, suggesting that the therapeutic concepts developed in rodent models may also apply to humans. Here, we briefly review previous work, summarize current developments, and highlight impediments to translate these interventions into medical practice to improve functional recovery of spinal-cord-injured individuals.
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