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特定脑瘫儿童群体的站立姿势控制:感觉组织和肌肉协调方面的缺陷

Stance posture control in select groups of children with cerebral palsy: deficits in sensory organization and muscular coordination.

作者信息

Nashner L M, Shumway-Cook A, Marin O

出版信息

Exp Brain Res. 1983;49(3):393-409. doi: 10.1007/BF00238781.

Abstract

This study has focused upon the automatic components of posture and movement in a group of ten cerebral palsy children carefully selected to represent a spectrum of abnormalities relatively pure by clinical standards and ten age-matched normals. Each subject stood unsupported upon a movable platform and within a movable visual surround and was then exposed to external perturbations or was asked to pull with one arm upon a movable handle. In comparing the performance of cerebral palsy children in each clinical category with the age-matched normals and with normal adults assessed in previous studies, the process of maintaining stance was subdivided into two component functions: substrates which determined the onset timing, direction and amplitude of postural actions from somatosensory, vestibular, and visual stimuli were termed "sensory organization", and those establishing temporal and spatial patterns of muscular contractions appropriate to produce effective movements were termed "muscle coordination". We found among seven of the ten cerebral palsy children a clear localization of dysfunction within either sensory organization or muscle coordination mechanisms. These results are providing some new insights into the organization of each of these processes as well as suggesting methods for developing a more systematic understanding of the abnormalities of movement control.

摘要

本研究聚焦于一组10名脑瘫儿童姿势与运动的自动组成部分,这组儿童是经过精心挑选的,按照临床标准,他们代表了一系列相对单纯的异常情况,同时还选取了10名年龄匹配的正常儿童作为对照。每位受试者在无支撑的情况下站立在一个可移动的平台上,处于一个可移动的视觉环境中,然后受到外部干扰,或者被要求用一只手臂拉动一个可移动的手柄。在将每个临床类别的脑瘫儿童的表现与年龄匹配的正常儿童以及在先前研究中评估的正常成年人进行比较时,维持姿势的过程被细分为两个组成功能:根据体感、前庭和视觉刺激确定姿势动作的起始时间、方向和幅度的基础部分被称为“感觉组织”,而那些建立适当肌肉收缩的时间和空间模式以产生有效运动的部分被称为“肌肉协调”。我们发现,在10名脑瘫儿童中的7名身上,功能障碍明显定位于感觉组织或肌肉协调机制之中。这些结果为这些过程中每个过程的组织提供了一些新的见解,同时也为更系统地理解运动控制异常提出了方法。

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