首页> 美国卫生研究院文献>Journal of Physical Therapy Science >Effect of motor imagery on excitability of spinal neural function and itsimpact on the accuracy of movement-considering the point at which subjects subjectivelydetermine the 50MVC point
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Effect of motor imagery on excitability of spinal neural function and itsimpact on the accuracy of movement-considering the point at which subjects subjectivelydetermine the 50MVC point

机译:运动影像对脊神经功能兴奋性的影响及其机制对运动准确性的影响-考虑主观主观的角度确定50%MVC点

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摘要

[Purpose] This study aimed to examine the effect of motor imagery on the accuracy of motion and the excitability of spinal neural function. [Subjects and Methods] Thirty healthy volunteers (males, 15; females, 15; mean age, 20.3 ± 1.0 years) were recruited. F-waves was recorded at rest, while holding a sensor, and while using motor imagery. Next, subjects learned 50% maximum voluntary contraction. The pinch force was measured without visual feedback before and after motor imagery. F-waves were analyzed with respect to persistence and the F/M amplitude ratio. Correction time and coefficient of variation were calculated from the pinch force. [Results] Persistence and F/M amplitude ratio ware significantly higher in the holding sensor and motor imagery conditions than in the resting condition. In addition, persistence under motor imagery was significantly higher than that in the holding sensor condition. No significant differences were observed in relative values of correction time and coefficient of variation between the two pinch action conditions. The pinch force in task 2 approximated a more authentic 50%MVC than that in task 1. [Conclusion] Motor imagery increases the excitability of spinal neural function, suggesting that it also affects accurate control of muscle force.
机译:[目的]研究运动图像对运动准确性和脊神经功能兴奋性的影响。 [对象和方法]招募了30名健康志愿者(男性15岁;女性15岁;平均年龄20.3±1.00.3岁)。在静止状态下,握住传感器并使用运动图像时,记录了F波。接下来,受试者学会最大自愿收缩率达到50%。在运动图像之前和之后在没有视觉反馈的情况下测量捏力。分析了F波的持续性和F / M振幅比。由压紧力计算校正时间和变化系数。 [结果]保持传感器和运动成像条件下的持续性和F / M振幅比明显高于静止状态。另外,运动图像下的持久性明显高于保持传感器条件下的持久性。在两个捏动作条件之间的校正时间和变化系数的相对值中未观察到显着差异。任务2中的捏合力比任务1中的捏合力近似真实50%MVC。[结论]运动成像可提高脊髓神经功能的兴奋性,表明它还影响对肌肉力量的精确控制。

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