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独立行走第一年中姿势变化的时间组织。

The temporal organization of posture changes during the first year of independent walking.

作者信息

Metcalfe J S, Chen L-C, Chang T-Y, McDowell K, Jeka J J, Clark J E

机构信息

Department of Kinesiology, University of Maryland, College Park, MD 20742-2611, USA.

出版信息

Exp Brain Res. 2005 Mar;161(4):405-16. doi: 10.1007/s00221-004-2082-z. Epub 2004 Oct 23.

Abstract

Although the development of upright posture has received considerable attention, the quiet stance of infants in their first months of learning this fundamental behavior has not been well studied. The purpose of the present study was to characterize the time evolutionary properties, or temporal organization, of these infants' unperturbed upright stance as well as to elucidate how somatosensory information influences that organization. Six healthy, full-term infants were tested monthly from walk onset until 9 months of independent walking experience while standing either independently or touching a static surface. The structure of sway was assessed through stabilogram-diffusion analysis using an exponential Ornstein-Uhlenbeck characterization. The results of this analysis revealed two new insights into postural development. First, the developmental changes in quiet stance involved a decreased rate at which sway decays to maximal variance, rather than an attenuation of the magnitude of that variance. Specifically, measures indexing amount of sway variance were significantly reduced when touching a static surface as compared with an independent stance condition, but revealed no change with increased walking experience. Further, a reduction in the average rate constant of decay indicated an increased influence of long time-scale sway corrections on the overall sway trajectory. Second, it was shown that, at early walk ages, the use of touch both reduced the amount of variance and shifted the rate constant of sway towards longer time-scale displacements. Taken in the context of previous research, these results support our conclusion that early postural development embodies the dual tasks of calibrating sensorimotor relations for estimation of self-motion as well as identification and tuning of control system properties.

摘要

尽管直立姿势的发展已受到相当多的关注,但婴儿在最初几个月学习这种基本行为时的安静站立姿势尚未得到充分研究。本研究的目的是描述这些婴儿无干扰直立姿势的时间演化特性或时间组织,并阐明体感信息如何影响该组织。六名健康的足月婴儿从开始走路起每月接受测试,直至有9个月独立行走经验,期间他们或是独立站立,或是触碰一个静态表面。通过使用指数奥恩斯坦-乌伦贝克特征的稳定图扩散分析来评估摇摆结构。该分析结果揭示了对姿势发展的两个新见解。首先,安静站立姿势的发育变化涉及摇摆衰减至最大方差的速率降低,而非该方差大小的衰减。具体而言,与独立站立条件相比,触碰静态表面时表示摇摆方差量的指标显著降低,但随着行走经验增加并未显示出变化。此外,平均衰减速率常数的降低表明长时间尺度摇摆校正对整体摇摆轨迹的影响增加。其次,研究表明,在行走早期,触碰的使用既减少了方差量,又将摇摆的速率常数向更长时间尺度的位移方向移动。结合先前的研究来看,这些结果支持我们的结论,即早期姿势发展体现了校准感觉运动关系以估计自身运动以及识别和调整控制系统特性这两项双重任务。

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