United Graduate School of Education, Tokyo Gakugei University, Tokyo, Japan.
J Neurophysiol. 2010 Jul;104(1):210-7. doi: 10.1152/jn.00774.2009. Epub 2010 May 5.
The functional coupling of neural circuits between the upper and lower limbs involving rhythmic movements is of interest to both motor control research and rehabilitation science. This coupling can be detected by examining the effect of remote rhythmic limb movement on the modulation of reflex amplitude in stationary limbs. The present study investigated the extent to which rhythmic leg pedaling modulates the amplitude of an early latency (peak 30-70 ms) cutaneous reflex (ELCR) in the upper limb muscles. Thirteen neurologically intact volunteers performed leg pedaling (60 or 90 rpm) while simultaneously contracting their arm muscles isometrically. Control experiments included isolated isometric contractions and discrete movements of the leg. ELCRs were evoked by stimulation of the superficial radial nerve with a train of rectangular pulses (three pulses at 333 Hz, intensity 2.0- to 2.5-fold perceptual threshold). Reflex amplitudes were significantly increased in the flexor carpi radialis and posterior deltoid and significantly decreased in the biceps brachii muscles during leg pedaling compared with that during stationary isometric contraction of the lower leg muscles. This effect was also sensitive to cadence. No significant modulation was seen during the isometric contractions or discrete movements of the leg. Additionally, there was no phase-dependent modulation of the ELCR. These findings suggest that activation of the rhythm generating system of the legs affects the excitability of the early latency cutaneous reflex pathways in the upper limbs.
上下肢涉及节律运动的神经回路的功能耦合是运动控制研究和康复科学都感兴趣的问题。这种耦合可以通过检查远程节律肢体运动对静止肢体反射幅度调制的影响来检测。本研究调查了节律腿部踩踏在多大程度上调节上肢肌肉中早期潜伏期(峰值 30-70ms)皮肤反射(ELCR)的幅度。13 名神经完整的志愿者在同时等长收缩手臂肌肉的同时进行腿部踩踏(60 或 90rpm)。对照实验包括孤立的等长收缩和腿部离散运动。通过用矩形脉冲串(333Hz 时三个脉冲,强度为 2.0-2.5 倍感知阈值)刺激桡神经浅支来诱发 ELCR。与小腿肌肉的静止等长收缩相比,腿部踩踏期间,屈腕肌和后三角肌的 ELCR 幅度显著增加,肱二头肌的 ELCR 幅度显著降低。这种效应也对节拍敏感。在腿部的等长收缩或离散运动期间没有观察到明显的调制。此外,ELCR 没有相位依赖性调制。这些发现表明,腿部节律产生系统的激活会影响上肢早期潜伏期皮肤反射通路的兴奋性。