首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Vibration stimulation during non-fatiguing tonic contraction induces outlasting neuroplastic effects
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Vibration stimulation during non-fatiguing tonic contraction induces outlasting neuroplastic effects

机译:非疲劳性强直收缩过程中的振动刺激会产生持续的神经塑性作用

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The objective was to explore if vibration superposed to tonic contraction induces plastic changes in the contra- and ipsilateral motor cortex. Healthy subjects (n=12) abducted the right index finger with a force 5% of maximal voluntary contraction (MVC) against the lever of a torque motor while a 60. Hz vibration stimulus of 10. min was delivered. Motor evoked potentials (MEPs) after single and paired-pulse transcranial magnetic stimulation (TMS) were recorded from the first dorsal interosseous muscle of right and left hand pre, during, post and 30. min post-stimulation. The TMS assessments were employed with tonic contraction alone (TONIC) and with superposed vibrostimulation (VIBRO), each for the ipsi- and contralateral cortex separately. In the contralateral cortex: resting motor threshold (rMT) decreased, MEP amplitudes increased, short-interval intracortical inhibition (SICI) reduced and intracortical facilitation (ICF) increased post VIBRO, while no changes occurred post TONIC. In the ipsilateral cortex: rMT decreased, MEP amplitude increased and SICI reduced during TONIC, while no changes occurred post TONIC, during and post VIBRO. Vibration superposed to tonic contraction, induces lasting (30. min) plastic changes, whereas contraction alone caused no outlasting effects. Mainly intrinsic intracortical mechanisms are involved because spinal adaptation could be excluded (F-wave assessments). These findings have a therapeutic potential in the functional recovery of motor deficits with robot-aided devices.
机译:目的是探讨叠加于强直性收缩的振动是否会引起对侧和同侧运动皮层的塑性变化。健康受试者(n = 12)以最大自愿收缩(MVC)的5%的力将右食指绑在扭矩电机的杠杆上,同时施加了10分钟的60 Hz振动刺激。在刺激之前,期间,之后和之后30分钟,从右手和左手的第一背骨间肌记录单脉冲和成对脉冲经颅磁刺激(TMS)后的运动诱发电位(MEP)。 TMS评估采用单独的补品收缩(TONIC)和叠加的振动刺激(VIBRO),分别针对同侧和对侧皮层进行。在对侧皮质中:VIBRO后静息运动阈值(rMT)降低,MEP幅度增加,短间隔皮质内抑制(SICI)降低,皮质内促进(ICF)增加,而TONIC后未发生变化。在同侧皮层中:TONIC期间rMT降低,MEP幅度增加,SICI降低,而TONIC后,VIBRO期间和VIBRO期间均无变化。振动与强直性收缩叠加,引起持久的(30分钟)塑性变化,而单独的收缩则没有持久的影响。主要涉及内在皮层内机制,因为可以排除脊柱适应(F波评估)。这些发现在机器人辅助设备的运动功能障碍恢复中具有治疗潜力。

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