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A multivariate analysis of frontal plane postural sway: Postural coordination as modified by sensory condition and aging.

机译:额叶体位摆动的多变量分析:体位协调受感官状况和衰老的影响。

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摘要

Documentation of postural sway kinematics presents a challenge to researchers due to the typical non-linear characteristics of biological systems. This research project investigated frequency specific components of frontal plane postural sway to provide quantifiable measures of the coordination between both sides of the body as influenced by altered sensory conditions and aging.;Using a cross-sectional experimental study design, ten healthy young and thirty elderly adults were tested for quality of standing balance using four conditions manipulating visual and surface sensory input. Each subject participated in two test sessions involving the collection of center of pressure (COP) and center of mass (COM) coordinates using two standard force platforms and a 3-D motion analysis system. Bilateral interactions of COP frequencies along with COM dynamic patterns were characterized by a multivariate coherence analysis over a time-varying spectral plane. Variables such as COP signal response magnitude (MAGCOP), phase angle (PHZCOP) and modal frequency (fDOM) were used along with COM root mean square velocity (RMSCOM) and mean squared error (MSE COM) to aid in constructing a statistical model of postural symmetry and coordination. Repeated-measures MANOVA statistics were used to compare coordination indices across age groups and sensory conditions.;Results indicated a significant difference in COP variables relating to phase (PHZCOP) and dominant frequency (f DOM) in healthy elders compared to values for younger participants. Elders in general exhibited at least a 40% increase in phase difference between both sides of the body during quiet stance and a 26% lower dominant frequency. This trend was even greater in elders with higher secondary aging factors. Characteristic equations used to describe sway patterns indicated that vision aided healthy elders in maintaining frequencies similar to that of younger participants. However, decreased somatosensory health or conditions with altered surface feedback, dramatically increased phase differences between both sides of the body in elders with significant associated increases in COM sway variance (MSECOM).;In conclusion, it was found that an analysis of frontal plane postural sway patterns is warranted and that techniques using multivariate spectral analysis, aid in differentiating sensory influenced control mechanisms of standing posture in both the young and elderly.
机译:由于生物系统的典型非线性特性,姿势摇摆运动学的文献对研究人员提出了挑战。该研究项目调查了额叶体位摆动的特定频率成分,以提供量化的量度措施,以调节受感官条件和衰老影响的身体两侧之间的协调。;使用横断面实验研究设计,十名健康的年轻人和三十岁的老年人使用四种操作视觉和表面感官输入的条件,对成年人的站立平衡质量进行了测试。每个受试者参加了两次测试,涉及使用两个标准力平台和3-D运动分析系统收集压力中心(COP)和质心(COM)坐标。 COP频率与COM动态模式的双向交互作用是通过在随时间变化的频谱平面上进行多变量相干分析来表征的。诸如COP信号响应幅度(MAGCOP),相角(PHZCOP)和模态频率(fDOM)之类的变量与COM均方根速度(RMSCOM)和均方误差(MSE COM)一起用于构建统计模型。姿势对称和协调。重复测量的MANOVA统计量用于比较各个年龄段和感觉状况的协调指数。结果表明,与年轻参与者的值相比,健康老年人中与阶段(PHZCOP)和优势频率(f DOM)有关的COP变量存在显着差异。一般而言,老年人在安静的姿势下,身体两侧之间的相位差至少增加40%,而主导频率降低26%。在具有较高次生衰老因子的老年人中,这一趋势甚至更大。用于描述摇摆模式的特征方程式表明,视力有助于健康的老年人保持与年轻参与者相似的频率。然而,体感健康状况的下降或表面反馈改变的情况,老年人的身体两侧之间的相位差显着增加,COM晃动方差(MSECOM)显着增加;最后,我们发现对额叶面姿势的分析摇摆模式是有必要的,使用多元频谱分析的技术可帮助区分年轻人和老年人站立姿势的感官影响控制机制。

著录项

  • 作者

    Gobert, Denise.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Developmental biology.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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