两种站立任务条件下基于小波的姿势控制特定频带的重测信度

IF 0.1 Q4 ORTHOPEDICS International Journal of Physiotherapy Pub Date : 2020-08-01 DOI:10.15621/ijphy/2020/v7i4/748
S. H. Fazeli, M. Akbari, I. Takamjani, Holakoo Mohsenifar, Mohsen Sadeghi-Naini
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引用次数: 0

摘要

背景:平衡措施的评估有助于识别体位控制过程,但传统的压力中心(COP)数据收集可能无法揭示体位控制机制的差异。本研究的目的是利用小波分析的COP信号来评估姿势摇摆频率成分的可靠性。方法:健康男性15例,平均年龄39.16±7.2岁,平均体重72±11.06 kg,平均身高171±6.31 cm。他们被要求在有视力和没有视力的情况下在测力板上进行单腿和串联站立条件下的三次试验,时间为20秒。评估COP信号的频率含量,包括COP的能量、均方根(RMS)和速度在4个姿态摇摆频带内的变化。采用类内相关系数(ICC)检验COP参数的重测信度。结果:在不同COP参数中,COP在中等频带(1.56 ~ 6.25 Hz)内的能量(79≤ICC≤0.97),标准误差测量(SEM)范围在0.14 ~ 0.23之间,COP的RMS在低(。39 - 1.56赫兹)79≤ICC≤0.93)和超低(< 0.10 Hz) (SEM范围从0.000到0.002)(。78≤ICC≤0.94),单腿站立时COP在带宽< 0.10 Hz (SEM= 0.00)的均方根值(。70≤ICC≤0.99),闭眼和睁眼均表现出良好至优异的可靠性。结论:本研究结果显示基于小波的COP测量具有中等至优异的可靠性;因此,这些参数可用于姿态控制机制的识别。
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TEST-RETEST RELIABILITY OF WAVELET-BASED SPECIFIC FREQUENCY BANDS OF POSTURAL CONTROL DURING TWO STANDING TASK CONDITIONS
Background: The evaluation of balance measures can help identify postural control processes, but traditional data collection for the center of pressure (COP) may not reveal differences in postural control mechanisms. This study aimed to evaluate the reliability of the frequency component of postural sway using wavelet analysis of COP signals. Methods: Fifteen healthy male subjects (average age: 39.16±7.2 years, average weight: 72±11.06 kg, average height: 171±6.31 cm) participated in this project. They were requested to perform three trials of single-leg and tandem stance conditions for 20-second with and without vision on a force plate. The frequency content of COP signals, including the energy, root mean square (RMS), and velocity of the COP in four frequency bandwidths of postural sway, was evaluated. The test-retest reliability of COP parameters was tested using the intraclass correlation coefficient (ICC). Results: Among different COP parameters, the energy of the COP within a moderate (1.56–6.25 Hz) frequency band (.79≤ ICC ≤.97) with standard error measurement (SEM) ranged from .14 to .23, the RMS of COP within low (.39– 1.56Hz) (.79≤ ICC ≤.93) and ultralow (< .10 Hz) (SEM ranged from .000 to .002) (.78≤ ICC ≤.94) in a tandem stance and the RMS of COP in a bandwidth of < .10 Hz (SEM=.00) in a single-leg stance (.70≤ ICC ≤.99) with the eyes closed and open showed good to excellent reliability. Conclusion: The results of this study showed moderate to excellent reliability of wavelet-based COP measures; therefore, these parameters can be used for the identification of postural control mechanisms.
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