Michel J, van Hedel H J A, Dietz V
Spinal Cord Injury Center, Balgrist University Hospital, Forchstrasse 340, CH-8008 Zurich, Switzerland.
Eur J Neurosci. 2008 Apr;27(7):1867-75. doi: 10.1111/j.1460-9568.2008.06145.x. Epub 2008 Mar 26.
Obstacle avoidance steps are associated with a facilitation of spinal reflexes in leg muscles. Here we have examined the involvement of both leg and arm muscles. Subjects walking with reduced vision on a treadmill were acoustically informed about an approaching obstacle and received feedback about task performance. Reflex responses evoked by tibial nerve stimulation were observed in all arm and leg muscles examined in this study. They were enhanced before the execution of obstacle avoidance compared with normal steps and showed an exponential adaptation in contralateral arm flexor muscles corresponding to the improvement of task performance. This enhancement was absent when the body was partially supported during the task. During the execution of obstacle steps, electromyographic activity in the arm muscles mimicked the preceding reflex behaviour with respect to enhancement and adaptation. Our results demonstrate an anticipatory quadrupedal limb coordination with an involvement of proximal arm muscles in the acquisition and performance of this precision locomotor task. This is presumably achieved by an up-regulated activity of coupled cervico-thoracal interneuronal circuits.
避障步骤与腿部肌肉脊髓反射的易化有关。在此,我们研究了腿部和手臂肌肉的参与情况。在跑步机上视力受限行走的受试者会通过声音得知即将到来的障碍物,并收到关于任务表现的反馈。在本研究中检查的所有手臂和腿部肌肉中均观察到了胫神经刺激诱发的反射反应。与正常步相比,它们在执行避障之前增强,并在对侧手臂屈肌中表现出与任务表现改善相对应的指数适应。当任务期间身体得到部分支撑时,这种增强消失。在执行避障步骤期间,手臂肌肉中的肌电图活动在增强和适应方面模仿了先前的反射行为。我们的结果表明,在这个精确运动任务的习得和执行过程中,近端手臂肌肉参与其中,存在一种预期性的四足肢体协调。这可能是通过颈胸中间神经元回路的上调活动实现的。