首页> 美国卫生研究院文献>Journal of Physical Therapy Science >Spinal Reflex Arc Excitability Corresponding to the Vastus Medialis Obliquusand Vastus Medialis Longus Muscles
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Spinal Reflex Arc Excitability Corresponding to the Vastus Medialis Obliquusand Vastus Medialis Longus Muscles

机译:斜肌内侧斜肌对应的脊柱反射弧兴奋性和Vastus Medialis Longus肌肉

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摘要

[Purpose] The gross morphology of the vastus medialis (VM) muscle has been thoroughly described. However, there is insufficient evidence of physiological differentiation between the VM obliquus (VMO) and VM longus (VML). To elucidate spinal reflex arc excitability in two divisions of the VM, we compared H-reflexes and T-waves in VMO and VML. [Subjects] Twenty-three healthy male volunteers participated in this study. [Methods] The H-reflex was evoked from the VMO and VML by electrical stimulation of the femoral nerve during knee extension at 10% maximal voluntary isometric contraction. Also, the patellar tendon was tapped by an examiner using an electrical tendon hammer, and a component of the compound muscle action potential (T-wave) was recorded. [Results] The configurations of the H-reflex and T-wave were sharp and slow in VMO and VML, respectively. No significant differences in the amplitudes of the H-reflexes and T-waves were observed between VMO and VML. The durations of VML H-reflexes and T-waves were significantly longer than those in VMO. [Conclusion] Spinal reflex arc excitability corresponding to VMO and VML was similar. However, the configurations and durations of the H-reflex and T-wave were differentiated with electromyography. On the basis of these findings, we suggest that VMO and VML are electrophysiologically distinct entities.
机译:[目的]彻底描述了股内侧肌(VM)的总体形态。但是,没有足够的证据证明VM斜肌(VMO)和VM最长肌(VML)之间存在生理分化。为了阐明VM的两个分区中的脊柱反射弧兴奋性,我们比较了VMO和VML中的H反射和T波。 [对象] 23名健康男性志愿者参加了这项研究。 [方法]通过电刺激股骨神经在膝关节伸展时以最大自愿等距收缩10%诱发H反射。另外,检查者使用肌腱锤敲击tell骨肌腱,并记录复合肌动作电位(T波)的成分。 [结果]在VMO和VML中,H反射和T波的配置分别清晰而缓慢。在VMO和VML之间,没有观察到H反射和T波振幅的显着差异。 VML的H反射和T波的持续时间明显长于VMO。 [结论]与VMO和VML相对应的脊髓反射弧兴奋性相似。但是,H反射和T波的构型和持续时间与肌电图有所区别。根据这些发现,我们建议VMO和VML是电生理学上不同的实体。

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