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精确装配任务期间姿势摆动动态结构的发育变化。

Developmental changes in the dynamical structure of postural sway during a precision fitting task.

作者信息

Haddad Jeffrey M, Van Emmerik Richard E A, Wheat Jonathan S, Hamill Joseph

机构信息

Department of Health and Kinesiology, Purdue University, West Lafayette, IN 47909, USA.

出版信息

Exp Brain Res. 2008 Oct;190(4):431-41. doi: 10.1007/s00221-008-1483-9. Epub 2008 Jul 16.

Abstract

Recent research using measures to assess the time-dependent structure of postural fluctuations has provided new insights into the stability and adaptability of human postural control in adults. To date, little research has examined how postural dynamics reflecting the stability and adaptability of postural control may change as a function of development, especially during supra-postural tasks. The goal of this study was to examine the dynamics of postural fluctuations during a manual-fitting task in which precision, visual and postural task constraints were altered in children and adults. Three age groups were tested: 7-, 10-year olds and college aged adults. Recurrence quantification analysis (RQA) was used to assess the regularity (percent determinism) and complexity (entropy) of the center of pressure (CoP) in the anterior-posterior (AP) and medial-lateral (ML) directions. The CoP patterns exhibited by adults were more deterministic and more complex (higher entropy) than those of the 7-year-old children under the different experimental manipulations. No differences between the adults and the 10-year-old children were observed. The increase in determinism with a corresponding increase in entropy exhibited by the adults and older-children during a manual fitting task may be a prospective mechanism over which postural movements follow a more predictable path allowing for stable and flexible task performance. Our results also support the notion that complex postural fluctuations (as measured by RQA entropy) are functional and typically increase as the precision requirements of a manual task increase.

摘要

近期运用测量方法评估姿势波动的时间依赖性结构的研究,为成人人类姿势控制的稳定性和适应性提供了新的见解。迄今为止,很少有研究考察反映姿势控制稳定性和适应性的姿势动力学如何随发育而变化,尤其是在超姿势任务期间。本研究的目的是考察在一项手动装配任务中姿势波动的动力学,其中在儿童和成人中改变了精度、视觉和姿势任务限制。测试了三个年龄组:7岁、10岁儿童和大学生年龄的成年人。递归量化分析(RQA)用于评估前后(AP)和内外侧(ML)方向上压力中心(CoP)的规律性(确定性百分比)和复杂性(熵)。在不同的实验操作下,成年人表现出的CoP模式比7岁儿童的更具确定性且更复杂(熵更高)。未观察到成年人与10岁儿童之间存在差异。在手动装配任务中,成年人和大龄儿童表现出的确定性增加且熵相应增加,这可能是一种前瞻性机制,通过该机制姿势运动遵循更可预测的路径,从而实现稳定且灵活的任务表现。我们的结果还支持这样一种观点,即复杂的姿势波动(通过RQA熵测量)是功能性的,并且通常会随着手动任务精度要求的提高而增加。

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