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在平地行走、爬坡行走和爬楼梯过程中,在功能相关的步态周期阶段表现出的特定任务对皮肤反射的调制。

Task-specific modulation of cutaneous reflexes expressed at functionally relevant gait cycle phases during level and incline walking and stair climbing.

作者信息

Lamont Erin V, Zehr E Paul

机构信息

Centre for Neuroscience, University of Alberta, Edmonton, AB, Canada.

出版信息

Exp Brain Res. 2006 Aug;173(1):185-92. doi: 10.1007/s00221-006-0586-4. Epub 2006 Jul 5.

Abstract

Reflexes are exquisitely sensitive to the motor task that is being performed at the time they are evoked; in other words, they are "task-dependent". The purpose of this study was to investigate the extent to which the pattern of reflex modulation is conserved across three locomotor tasks that differ in muscle activity, joint kinematics, and stability demands. Subjects performed continuous level and incline walking on a treadmill and stair climbing on a stepping mill. Cutaneous reflexes were evoked by delivering trains of electrical stimulation to the sural nerve at the ankle at an intensity of two times the radiating threshold. Electromyographic (EMG) recordings were collected continuously from muscles in the arms, legs and trunk. Results showed that middle-latency reflex modulation patterns were generally conserved across the three locomotor tasks with a few notable exceptions related to specific functional requirements. For example, a reflex reversal was observed for tibialis anterior during stair climbing, which may be indicative of a specific adaptation to the task constraints. Overall our data suggest that the underlying neural mechanisms involved in coordinating level walking can be modified to also coordinate other locomotor tasks such as incline walking and stair climbing. Therefore, there may be considerable overlap in the neural control of different forms of locomotion.

摘要

反射对其被诱发时正在执行的运动任务极为敏感;换句话说,它们是“任务依赖型”的。本研究的目的是调查在肌肉活动、关节运动学和稳定性要求不同的三种运动任务中,反射调制模式的保守程度。受试者在跑步机上进行持续的水平和倾斜行走,并在踏步机上进行爬楼梯。通过以两倍于放射阈值的强度向脚踝处的腓肠神经传递电刺激串来诱发皮肤反射。从手臂、腿部和躯干的肌肉中连续收集肌电图(EMG)记录。结果表明,中潜伏期反射调制模式在这三种运动任务中总体上是保守的,但有一些与特定功能要求相关的显著例外。例如,在爬楼梯时观察到胫骨前肌的反射反转,这可能表明对任务限制的特定适应。总体而言,我们的数据表明,参与协调水平行走的潜在神经机制可以被修改,以协调其他运动任务,如倾斜行走和爬楼梯。因此,不同形式运动的神经控制可能存在相当大的重叠。

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