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Suppression of motor evoked potentials in biceps brachii preceding pronator contraction

机译:在肱二头肌收缩前,抑制肱二头肌的运动诱发电位

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Reciprocal control of antagonists is essential for coordinated limb movement. While Ia afferent dependent reciprocal inhibition has been extensively studied, reports of the control of antagonists during preparation for a motor action are limited. It has been demonstrated that corticomotor (CM) excitability of antagonists is suppressed prior to wrist extension/flexion suggesting the existence of a pre-contraction cortical control mechanism for distal upper limb antagonists. It is unknown whether pre-contraction suppression is evident in the control of proximal upper limb antagonists. Here we used transcranial magnetic stimulation and a rhythmic motor task to assess pre-contraction changes in excitability of corticospinal pathways projecting to biceps brachii (BB), when BB was an agonist (forearm supinator) or an antagonist. We found a suppression of motor evoked potential (MEP) amplitude in BB prior to pronator contraction and facilitation prior to BB contracting as a supinator. The extent of modulation was more profound as the agonist contraction approached. In contrast, there was no suppression evident in brachioradialis and triceps brachii under similar conditions indicating that pre-contraction suppression was specific to the antagonist BB. Our data in combination with published data from wrist muscles suggest that pre-contraction suppression of CM excitability may be a centrally induced mechanism to prevent antagonistic activity before Ia afferent dependent reciprocal inhibition is imposed. The importance of assessment of this inhibitory mechanism in neurologically impaired populations is discussed.
机译:相互控制拮抗剂对于协调肢体运动至关重要。尽管已经广泛研究了Ia传入依赖的相互抑制,但是在准备运动动作期间控制拮抗剂的报道仍然有限。已经证明,在腕部伸展/屈曲之前,拮抗剂的皮质运动(CM)兴奋性受到抑制,表明存在上肢远端拮抗剂的收缩前皮质控制机制。尚不清楚在近端上肢拮抗剂的控制中是否明显存在收缩前抑制。在这里,我们使用经颅磁刺激和节律性运动任务来评估当BB是激动剂(前臂旋后器)或拮抗剂时,伸向肱二头肌(BB)的皮质脊髓途径兴奋性的收缩前变化。我们发现抑制了BB的运动诱发电位(MEP)幅度,然后发生了前旋肌收缩,而在BB收缩后作为促进者则促进了该过程。随着激动剂收缩的临近,调节的程度更加深刻。相反,在相似的条件下,臂radi肌和肱三头肌没有明显的抑制作用,表明收缩前抑制作用是拮抗剂BB特有的。我们的数据与来自腕部肌肉的已公开数据相结合,表明在实施Ia传入依赖性相互抑制之前,收缩前抑制CM兴奋性可能是中央诱导的机制,以阻止拮抗活性。讨论了在神经功能受损人群中评估这种抑制机制的重要性。

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