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一个常见的神经元件,通过手臂肌肉的反射调节来评估,接收有节奏的手臂和腿部活动。

A common neural element receiving rhythmic arm and leg activity as assessed by reflex modulation in arm muscles.

作者信息

Sasada Syusaku, Tazoe Toshiki, Nakajima Tsuyoshi, Futatsubashi Genki, Ohtsuka Hiroyuki, Suzuki Shinya, Zehr E Paul, Komiyama Tomoyoshi

机构信息

Division of Health and Sport Education, The United Graduate School of Education, Tokyo Gakugei University, Tokyo, Japan; Department of Food and Nutrition Science, Sagami Women's University, Kanagawa, Japan;

The Miami Project to Cure Paralysis, Miller School of Medicine, University of Miami, Miami, Florida;

出版信息

J Neurophysiol. 2016 Apr;115(4):2065-75. doi: 10.1152/jn.00638.2015. Epub 2016 Mar 9.

Abstract

Neural interactions between regulatory systems for rhythmic arm and leg movements are an intriguing issue in locomotor neuroscience. Amplitudes of early latency cutaneous reflexes (ELCRs) in stationary arm muscles are modulated during rhythmic leg or arm cycling but not during limb positioning or voluntary contraction. This suggests that interneurons mediating ELCRs to arm muscles integrate outputs from neural systems controlling rhythmic limb movements. Alternatively, outputs could be integrated at the motoneuron and/or supraspinal levels. We examined whether a separate effect on the ELCR pathways and cortico-motoneuronal excitability during arm and leg cycling is integrated by neural elements common to the lumbo-sacral and cervical spinal cord. The subjects performed bilateral leg cycling (LEG), contralateral arm cycling (ARM), and simultaneous contralateral arm and bilateral leg cycling (A&L), while ELCRs in the wrist flexor and shoulder flexor muscles were evoked by superficial radial (SR) nerve stimulation. ELCR amplitudes were facilitated by cycling tasks and were larger during A&L than during ARM and LEG. A low stimulus intensity during ARM or LEG generated a larger ELCR during A&L than the sum of ELCRs during ARM and LEG. We confirmed this nonlinear increase in single motor unit firing probability following SR nerve stimulation during A&L. Furthermore, motor-evoked potentials following transcranial magnetic and electrical stimulation did not show nonlinear potentiation during A&L. These findings suggest the existence of a common neural element of the ELCR reflex pathway that is active only during rhythmic arm and leg movement and receives convergent input from contralateral arms and legs.

摘要

有节奏的手臂和腿部运动调节系统之间的神经相互作用是运动神经科学中一个有趣的问题。在有节奏的腿部或手臂循环运动期间,静止手臂肌肉中的早期潜伏期皮肤反射(ELCRs)的幅度会受到调节,但在肢体定位或自主收缩期间则不会。这表明,介导ELCRs至手臂肌肉的中间神经元整合了来自控制有节奏肢体运动的神经系统的输出。或者,输出可以在运动神经元和/或脊髓上水平进行整合。我们研究了在手臂和腿部循环运动期间,对ELCR通路和皮质-运动神经元兴奋性的单独影响是否由腰骶部和颈脊髓共有的神经元件进行整合。受试者进行双侧腿部循环运动(LEG)、对侧手臂循环运动(ARM)以及同时进行对侧手臂和双侧腿部循环运动(A&L),同时通过桡浅(SR)神经刺激诱发腕屈肌和肩屈肌中的ELCRs。循环运动任务促进了ELCRs的幅度,且A&L期间的幅度大于ARM和LEG期间的幅度。在ARM或LEG期间的低刺激强度在A&L期间产生的ELCR大于ARM和LEG期间ELCRs的总和。我们证实了在A&L期间SR神经刺激后单个运动单位放电概率的这种非线性增加。此外,经颅磁刺激和电刺激后的运动诱发电位在A&L期间未显示出非线性增强。这些发现表明存在一种ELCR反射通路的共同神经元件,其仅在有节奏的手臂和腿部运动期间活跃,并接收来自对侧手臂和腿部的汇聚输入。

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