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姿势链不同节段中发生的预期姿势调整,对于不同的任务运动速度,是否遵循相同的组织规则,而与惯性负荷值无关?

Do anticipatory postural adjustments occurring in different segments of the postural chain follow the same organisational rule for different task movement velocities, independently of the inertial load value?

作者信息

Bouisset S, Richardson J, Zattara M

机构信息

Laboratoire de Physiologie du Mouvement, Université Paris-Sud, Orsay, France.

出版信息

Exp Brain Res. 2000 May;132(1):79-86. doi: 10.1007/s002219900228.

Abstract

Dynamic phenomena, termed anticipatory postural adjustments (APA), are known to precede the onset of voluntary movement. Their anticipatory nature confers a particular status on APAs: as they cannot be triggered reflexly by afferent signals induced by a voluntary movement, it can be asked whether the APA parameters are centrally programmed as a function of some task movement parameters or are only the peripheral consequence of control variables. To this end the present study aims to determine whether the APAs occurring at the different sites of the postural chain yield the same accelerometric patterns and follow the same organisational rules when the task movement velocity changes, independently of the inertial load value. Subjects performed unilateral shoulder flexions at maximal and submaximal velocities, with (IUF) and without (OUF) an additional inertial load. Accelerometers were attached to the wrist and trunk, and on both sides of the body at shank, thigh, hip and shoulder. The results show that: 1) there was evidence of anticipatory acceleration in all segments of the postural chain; 2) each acceleration profile for the anticipatory phase was maintained over different focal movement velocities whether there was an additional load or not; 3) there were significant linear relationships between the amplitude of each segmental anticipatory acceleration and the square of the task movement velocity, the slope of which differs as a function of the inertial load; 4) there were close intersegmental correlations between these anticipatory accelerations which did not depend on the inertial load. In addition the correlation between the lower limbs and the opposite side of the body was positive, suggesting a diagonal postural pattern. A comparison of the present kinematic data with the corresponding EMG data reported in the literature argues in favour of a centrally determined kinematic pattern. It is proposed that the diagonal postural pattern between postural segments be considered as one of the order rules which could simplify the control process of asymmetrical movement. The anticipatory kinematics of each of the body segments would be calibrated with the velocity and the inertial load and scaled to the other segments to counteract the perturbing effect of the asymmetrical focal movement on body balance.

摘要

动态现象,称为预期姿势调整(APA),已知在自主运动开始之前就会出现。它们的预期性质赋予了APA一种特殊地位:由于它们不能由自主运动引起的传入信号反射性触发,因此可以提出这样的问题,即APA参数是作为某些任务运动参数的函数在中枢进行编程的,还是仅仅是控制变量的外周结果。为此,本研究旨在确定当任务运动速度变化时,无论惯性负载值如何,在姿势链不同部位出现的APA是否会产生相同的加速度模式并遵循相同的组织规则。受试者以最大和次最大速度进行单侧肩部屈曲,有(IUF)和没有(OUF)额外的惯性负载。加速度计附着在手腕和躯干上,以及身体两侧的小腿、大腿、臀部和肩部。结果表明:1)在姿势链的所有节段都有预期加速度的证据;2)无论是否有额外负载,预期阶段的每个加速度曲线在不同的焦点运动速度下都保持不变;3)每个节段预期加速度的幅度与任务运动速度的平方之间存在显著的线性关系,其斜率随惯性负载而变化;4)这些预期加速度之间存在密切的节段间相关性,且不依赖于惯性负载。此外,下肢与身体对侧之间的相关性为正,表明存在对角姿势模式。将本运动学数据与文献中报道的相应肌电图数据进行比较,支持中枢确定的运动学模式。有人提出,姿势节段之间的对角姿势模式应被视为可以简化不对称运动控制过程的有序规则之一。身体各节段的预期运动学将根据速度和惯性负载进行校准,并按比例缩放至其他节段,以抵消不对称焦点运动对身体平衡的干扰作用。

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