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人体里程计的对称性与序参量动力学

Symmetry and order parameter dynamics of the human odometer.

作者信息

Abdolvahab Mohammad, Carello Claudia, Pinto Carla, Turvey M T, Frank Till D

机构信息

Center for the Ecological Study of Perception and Action, Department of Psychology, University of Connecticut, Storrs, CT, USA,

出版信息

Biol Cybern. 2015 Feb;109(1):63-73. doi: 10.1007/s00422-014-0627-1. Epub 2014 Sep 9.

Abstract

Bipedal gaits have been classified on the basis of the group symmetry of the minimal network of identical differential equations (alias cells) required to model them. Primary bipedal gaits (e.g., walk, run) are characterized by dihedral symmetry, whereas secondary bipedal gaits (e.g., gallop-walk, gallop- run) are characterized by a lower, cyclic symmetry. This fact has been used in tests of human odometry (e.g., Turvey et al. in P Roy Soc Lond B Biol 276:4309-4314, 2009, J Exp Psychol Hum Percept Perform 38:1014-1025, 2012). Results suggest that when distance is measured and reported by gaits from the same symmetry class, primary and secondary gaits are comparable. Switching symmetry classes at report compresses (primary to secondary) or inflates (secondary to primary) measured distance, with the compression and inflation equal in magnitude. The present research (a) extends these findings from overground locomotion to treadmill locomotion and (b) assesses a dynamics of sequentially coupled measure and report phases, with relative velocity as an order parameter, or equilibrium state, and difference in symmetry class as an imperfection parameter, or detuning, of those dynamics. The results suggest that the symmetries and dynamics of distance measurement by the human odometer are the same whether the odometer is in motion relative to a stationary ground or stationary relative to a moving ground.

摘要

两足步态是根据对其进行建模所需的相同微分方程(即细胞)的最小网络的群对称性来分类的。主要的两足步态(如行走、奔跑)具有二面体对称性,而次要的两足步态(如疾驰行走、疾驰奔跑)具有较低的循环对称性。这一事实已被用于人体里程计测试(例如,Turvey等人,《英国皇家学会学报B:生物科学》,276:4309 - 4314,2009年;《实验心理学:人类感知与表现》,38:1014 - 1025,2012年)。结果表明,当由相同对称性类别的步态测量和报告距离时,主要步态和次要步态具有可比性。在报告时切换对称性类别会压缩(从主要到次要)或夸大(从次要到主要)测量距离,且压缩和夸大的幅度相等。本研究(a)将这些发现从地面运动扩展到跑步机运动,并且(b)以相对速度作为序参量或平衡态,以及对称性类别的差异作为这些动力学的缺陷参量或失谐,评估顺序耦合的测量和报告阶段的动力学。结果表明,无论里程计是相对于静止地面运动还是相对于移动地面静止,人体里程计测量距离的对称性和动力学都是相同的。

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