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人类在跑步机行走过程中,刺激诱发的下肢皮质运动兴奋性变化。

Stimulation-induced changes in lower limb corticomotor excitability during treadmill walking in humans.

作者信息

Stinear James W, Hornby T George

机构信息

Sensory Motor Performance Program, Rehabilitation Institute of Chicago, IL 60611, USA.

出版信息

J Physiol. 2005 Sep 1;567(Pt 2):701-11. doi: 10.1113/jphysiol.2005.090654. Epub 2005 Jun 23.

Abstract

Magnetic stimulation of human primary motor cortex (M1) paired with electrical stimulation of a peripheral motor nerve has been used to produce a lasting modulation of corticomotor (CM) excitability. This 'paired associative stimulation' (PAS) protocol has been used to induce bidirectional changes in excitability in upper limb CM pathways. The present study tested the hypothesis that temporally dependent PAS applied to the common peroneal nerve during the swing phase of walking would induce bidirectional changes in CM excitability consistent with the Hebbian principle of activity-dependent plasticity. Fourteen subjects with no known neurological disorder participated in two data collection sessions each. PAS was delivered as a single block of 120 pairs of stimuli delivered in a 10 min period during treadmill walking at 4.0 km h(-1). Changes in CM excitability were assessed by examining the size of motor potentials evoked by transcranial magnetic stimulation prior to and following PAS. Tibialis anterior motor-evoked potentials amplitude increased to 121% over baseline when the magnetic stimulus was delivered over M1 after the estimated arrival time of the afferent volley in sensorimotor cortex and decreased to 83% of baseline when the magnetic stimulus was delivered prior to the estimated afferent volley arrival. This extent of modulation was undiminished following a further 10 min period of walking without stimulation. The temporal nature of the bidirectional effects following PAS, their rapid evolution and subsequent persistence supported the study's hypothesis and were similar to the effects described by others in quiescent muscles of the upper limb.

摘要

对人类初级运动皮层(M1)进行磁刺激并同时对外周运动神经进行电刺激,已被用于对皮质运动(CM)兴奋性产生持久的调节作用。这种“配对联想刺激”(PAS)方案已被用于诱导上肢CM通路兴奋性的双向变化。本研究检验了这样一个假设,即在步行摆动期对腓总神经施加时间依赖性PAS会诱导CM兴奋性产生双向变化,这与基于活动的可塑性的赫布原理相一致。14名无已知神经系统疾病的受试者每人参加了两次数据收集 session。PAS作为在以4.0 km h(-1)的速度在跑步机上行走的10分钟内递送的120对刺激的单个块来递送。通过检查PAS之前和之后经颅磁刺激诱发的运动电位的大小来评估CM兴奋性的变化。当在感觉运动皮层中传入冲动的估计到达时间之后在M1上施加磁刺激时,胫前肌运动诱发电位幅度相对于基线增加到121%,而当在估计的传入冲动到达之前施加磁刺激时,其下降到基线的83%。在没有刺激的情况下再步行10分钟后,这种调节程度没有减弱。PAS后双向效应的时间特性、它们的快速演变和随后的持续性支持了该研究的假设,并且与其他人在上肢静止肌肉中描述的效应相似。

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