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长期微重力环境下的静态和动态姿势控制:双重适应的证据

Static and dynamic postural control in long-term microgravity: evidence of a dual adaptation.

作者信息

Baroni G, Pedrocchi A, Ferrigno G, Massion J, Pedotti A

机构信息

Centro di Bioingegneria, Politecnico di Milano, Fondazione Don Carlo Gnocchi, Istituto di Ricovero e Cura a Carattere Scientifico, I-20148 Milan, Italy.

出版信息

J Appl Physiol (1985). 2001 Jan;90(1):205-15. doi: 10.1152/jappl.2001.90.1.205.

Abstract

The adaptation of dynamic movement-posture coordination during forward trunk bending was investigated in long-term weightlessness. Three-dimensional movement analysis was carried out in two astronauts during a 4-mo microgravity exposure. The principal component analysis was applied to joint-angle kinematics for the assessment of angular synergies. The anteroposterior center of mass (CM) displacement accompanying trunk flexion was also quantified. The results reveal that subjects kept typically terrestrial strategies of movement-posture coordination. The temporary disruption of joint-angular synergies observed at subjects' first in-flight session was promptly recovered when repetitive sessions in flight were analyzed. The CM anteroposterior shift was consistently <3-4 cm, suggesting that subjects could dynamically control the CM position throughout the whole flight. This is in contrast to the observed profound microgravity-induced disruption of the quasi-static body orientation and initial CM positioning. Although this study was based on only two subjects, evidence is provided that static and dynamic postural control might be under two separate mechanisms, adapting with their specific time course to the constraints of microgravity.

摘要

研究了长期失重状态下前向躯干弯曲过程中动态运动-姿势协调的适应性。在两名宇航员进行为期4个月的微重力暴露期间进行了三维运动分析。应用主成分分析于关节角度运动学,以评估角度协同作用。还对躯干屈曲时前后向质心(CM)位移进行了量化。结果表明,受试者保持了典型的地面运动-姿势协调策略。当分析飞行中的重复试验时,在受试者首次飞行试验中观察到的关节角度协同作用的暂时中断迅速恢复。CM前后向位移始终<3-4厘米,表明受试者在整个飞行过程中能够动态控制CM位置。这与观察到的微重力引起的准静态身体定向和初始CM定位的严重破坏形成对比。尽管本研究仅基于两名受试者,但有证据表明静态和动态姿势控制可能受两种不同机制支配,它们以各自特定的时间进程适应微重力的限制。

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