脊髓
神经科学
电生理学
刺激(心理学)
脊髓损伤
刺激
医学
肌电图
物理医学与康复
心理学
解剖
心理治疗师
作者
Yury Gerasimenko,Р. М. Городничев,Ekaterina Machueva,Е. А. Пивоварова,Denis Semyenov,Alexandr Savochin,Roland R. Roy,V. Reggie Edgerton
标识
DOI:10.1523/jneurosci.4751-09.2010
摘要
The degree of automaticity of locomotion in primates compared with other mammals remains unclear. Here, we examine the possibility for activation of the spinal locomotor circuitry in noninjured humans by spinal electromagnetic stimulation (SEMS). SEMS (3 Hz and 1.3-1.82 tesla) at the T11-T12 vertebrae induced involuntary bilateral locomotor-like movements in the legs of individuals placed in a gravity-neutral position. The formation of locomotor-like activity during SEMS started with a latency of 0.68 +/- 0.1 s after delivering the first stimulus, unlike continuous vibration of muscles, which requires several seconds. The first EMG burst in response to SEMS was observed most often in a proximal flexor muscle. We speculate that SEMS directly activates the circuitry intrinsic to the spinal cord, as suggested by the immediate response and the electrophysiological observations demonstrating an absence of strictly time-linked responses within the EMG burst associated with individual stimuli during SEMS. SEMS in the presence of vibration of the leg muscles was more effective in facilitating locomotor-like activity than SEMS alone. The present results suggest that SEMS could be an effective noninvasive clinical tool to determine the potential of an individual to recover locomotion after a spinal cord injury, as well as being an effective rehabilitation tool itself.
科研通智能强力驱动
Strongly Powered by AbleSci AI