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Excitability of spinal neural function during several motor imagery tasks involving isometric opponens pollicis activity

机译:脊髓运动神经元兴奋性涉及等距opponens Policis活动的几个运动成像任务期间

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BACKGROUND: It is unclear whether mental simulation without actual muscle contraction associated with actual motion can increase the excitability of the spinal neural function. OBJECTIVE: To determine the best method for mental simulation without actual muscle contraction, we analyzed the F-wave of thenar muscles after stimulating the median nerve by motor imagery whilst holding the sensor of a pinch meter between the thumb and index finger and without holding the sensor. METHODS: Healthy volunteers (n = 11; mean age, 34 years) participated in this study after providing informed consent. We examined the F-wave of the left thenar muscles after stimulating the left median nerve at the wrist at rest and under holding and motor imagery conditions. For the motor imagery condition, the subjects were asked to establish 50% maximal voluntary contraction (MVC) of isometric contraction while holding the sensor between the thumb and index finger (motor imagery with the sensor condition) and without holding the sensor on another day (motor imagery without the sensor condition). RESULTS: The persistence and amplitude ratio of F/M during motor imagery with or without the sensor was better than that during relaxation. In particular, this ratio was significantly higher under the with sensor condition than under the without sensor condition. CONCLUSION: Movement preparation for a motor imagery task involving 50% MVC isometric contraction of the opponens pollicis is important.
机译:背景:尚不清楚在没有与实际运动相关的实际肌肉收缩的情况下进行心理模拟能否提高脊髓神经功能的兴奋性。目的:为了确定在没有实际肌肉收缩的情况下进行心理模拟的最佳方法,我们在通过运动图像刺激正中神经同时将拇指捏着食指的传感器保持在拇指和食指之间并且不握住手指的情况下,分析了narnar肌肉的F波。传感器。方法:健康志愿者(n = 11;平均年龄34岁)在获得知情同意后参加了这项研究。我们在休息时以及在保持和运动成像条件下刺激手腕处的左正中神经后,检查了左the肌的F波。对于运动成像状况,要求受试者在将传感器握在拇指和食指之间的情况下,建立等距收缩的最大自愿收缩(MVC)50%(具有传感器状况的运动成像),而另一天不握住传感器(没有传感器状态的运动图像)。结果:在有或没有传感器的情况下运动图像期间,F / M的持续性和振幅比优于松弛期间。特别地,该比率在有传感器条件下比无传感器条件下显着更高。结论:运动准备运动图像任务涉及50%MVC等距收缩的对手的骨灰质很重要。

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