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主动活动屈指深肌的不同肌间室。

Voluntary activation of the different compartments of the flexor digitorum profundus.

机构信息

Neuroscience Research Australia and University of New South Wales, Sydney, Australia.

出版信息

J Neurophysiol. 2010 Dec;104(6):3213-21. doi: 10.1152/jn.00470.2010. Epub 2010 Sep 29.

Abstract

Flexor digitorum profundus (FDP), the sole flexor of the fingertips, is critical for tasks such as grasping. It is a compartmentalized multitendoned muscle with both neural and mechanical links between the fingers. We determined whether voluntary activation (VA), the level of neural drive to muscle, could be measured separately in its four compartments, whether VA differed between the fingers, and whether maximal voluntary contraction (MVC) force and VA changed when the non-test fingers were extended from full flexion to 90° flexion to partially "disengage" the test finger. Transcranial magnetic stimulation (TMS) of the motor cortex was used to measure VA, in a position in which only FDP generated force at the fingertip. Despite differences among the fingers in MVCs, VA for each finger was ∼92% (n = 8), with no differences between fingers. When the test finger was partially disengaged by extending the other fingers to 90° flexion, performance was more variable both within and between subjects. MVCs decreased significantly by about 25-40% for the four fingers. However, VA was not significantly changed (n = 6) and was similar for the four fingers. In both positions, there were strong linear relationships between the voluntary forces and the superimposed twitch sizes, indicating that the method to measure VA was very reliable. Our results indicate that maximal VA is similar for all four compartments of FDP when force production by the other fingers is unconstrained. When altered mechanical connections between the compartments decrease voluntary force output there is little difference in neural drive.

摘要

屈指深肌(FDP)是指尖唯一的屈肌,对于抓握等任务至关重要。它是一种分隔的多肌腱肌肉,手指之间存在神经和机械联系。我们确定是否可以分别测量其四个隔间中的自愿激活(VA),即肌肉的神经驱动水平,VA 是否在手指之间有所不同,以及当非测试手指从完全弯曲伸展到 90°弯曲以部分“脱离”测试手指时,最大自愿收缩(MVC)力和 VA 是否会发生变化。使用经颅磁刺激(TMS)测量大脑皮层的 VA,此时只有 FDP 在指尖产生力。尽管 MVC 在手指之间存在差异,但每个手指的 VA 约为 92%(n = 8),手指之间没有差异。当通过将其他手指伸展到 90°弯曲来部分“脱离”测试手指时,无论是在个体内还是个体间,表现都更加多变。四个手指的 MVC 均显著下降约 25-40%。但是,VA 没有明显变化(n = 6),并且四个手指相似。在这两种位置下,自愿力与叠加的抽搐大小之间均存在很强的线性关系,这表明测量 VA 的方法非常可靠。我们的结果表明,当其他手指不受约束地产生力时,FDP 的所有四个隔间的最大 VA 相似。当隔间之间的机械连接改变而自愿力输出降低时,神经驱动几乎没有差异。

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