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姿势协调模式的优化模型预测

Optimization model predictions for postural coordination modes.

作者信息

Martin Luc, Cahouët Violaine, Ferry Myriam, Fouque Florent

机构信息

Laboratoire Sport et Performance Motrice EA 597, UFRAPS Université Joseph Fourier, 38041 Grenoble cedex 9, France.

出版信息

J Biomech. 2006;39(1):170-6. doi: 10.1016/j.jbiomech.2004.10.039. Epub 2005 Jan 25.

Abstract

This paper examines the ability of the dynamic optimization model to predict changes between in-phase and anti-phase postural modes of coordination and to evaluate influence of two particular environmental and intentional constraints on postural strategy. The task studied was based on an experimental paradigm that consisted in tracking a target motion with the head. An original optimal procedure was developed for cyclic problems to calculate hip and ankle angular trajectories during postural sway with a minimum torque change criterion. Optimization results give a good description of the sudden bifurcation phase between in-phase and anti-phase postural coordination modes in visual target tracking. Transition frequency and predicted effects of environmental and intentional constraints are also in line with experimental observations described in existing literature. In particular, these investigations pointed out that postural planning process can be related to the minimization of a dynamic cost criterion with an equilibrium constraint. In conclusion, the optimization technique is well suited for the prediction of postural modes of coordination and seems to offer many opportunities for better comprehension of neuromuscular movement control.

摘要

本文研究了动态优化模型预测同相和反相姿势协调模式之间变化的能力,以及评估两种特定环境和意向性约束对姿势策略的影响。所研究的任务基于一种实验范式,即头部跟踪目标运动。针对循环问题开发了一种原始的优化程序,以在姿势摆动期间根据最小扭矩变化准则计算髋部和踝部的角轨迹。优化结果很好地描述了视觉目标跟踪中同相和反相姿势协调模式之间的突然分叉阶段。环境和意向性约束的转变频率及预测效应也与现有文献中描述的实验观察结果一致。特别是,这些研究指出姿势规划过程可能与具有平衡约束的动态成本准则的最小化有关。总之,优化技术非常适合预测姿势协调模式,并且似乎为更好地理解神经肌肉运动控制提供了许多机会。

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