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Convergent Spinal Circuits Facilitating Human Wrist Flexors

机译:促进人类腕屈肌的聚合脊柱回路

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摘要

Noninvasive assessment of spinal circuitry in humans is limited, especially for Ib pathways in the upper limb. We developed a protocol in which we evoke the H-reflex in flexor carpi radialis (FCR) by median nerve stimulation and condition it with electrical stimulation above motor threshold over the extensor carpi radialis (ECR) muscle belly. Eighteen healthy adults (8 male, 10 female) took part in the study. There was a clear reflex facilitation at a 30 ms interstimulus interval (ISI) and suppression at a 70 ms ISI, which was highly consistent across subjects. We investigated the following two hypotheses of the possible source of the facilitation: (1) ECR Ib afferents from Golgi tendon organs, activated by the twitch following ECR stimulation; and (2) FCR afferents, from spindles and/or Golgi tendon organs, activated by the wrist extension movement that follows ECR stimulation. Several human and monkey experiments indicated a role for both of these sets of afferents. Our results provide evidence for a spinal circuit in which flexor motoneurons receive convergent excitatory input from flexor afferents as well as from extensor Ib afferents; this circuit can be straightforwardly assessed noninvasively in humans.>SIGNIFICANCE STATEMENT Here we described a novel spinal circuit, which is easy to assess noninvasively in humans. Understanding this circuit in more detail could be beneficial for the design of clinical tests in neurological conditions.
机译:对人的脊柱回路的非侵入性评估是有限的,特别是对于上肢的Ib通路。我们开发了一种协议,其中我们通过正中神经刺激来引起radial侧腕flex肌(FCR)的H反射,并在radial侧腕pi肌(ECR)肌肉腹部上以高于运动阈值的电刺激对其进行调节。十八名健康成人(八名男性,十名女性)参加了这项研究。在30毫秒的刺激间隔(ISI)上有明显的反射促进作用,而在70毫秒的ISI上有明显的抑制作用,这在受试者之间是高度一致的。我们研究了以下两种可能的促进作用的假说:(1)高尔基腱器官的ECR Ib传入,由ECR刺激后的抽搐激活; (2)来自心轴和/或高尔基肌腱器官的FCR传入,由ECR刺激后的腕部伸展运动激活。几个人类和猴子实验表明,这两种传入都有作用。我们的结果提供了一个脊髓回路的证据,其中屈肌运动神经元从屈肌传入神经和伸肌Ib传入神经接收会聚的兴奋性输入。 >意义声明在这里,我们描述了一种新型的脊椎回路,该回路很容易在人体中进行非侵入性评估。更详细地了解此电路可能有助于设计神经系统疾病的临床测试。

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