年龄、体重、身高、BMI和步行速度对健康受试者步态动态稳定性的影响

Q3 Medicine
Anam Raza , Imran Mahmood , Tayyaba Sultana , Salma Sultana
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引用次数: 0

摘要

步态畸形通常通过将患者数据与健康受试者进行比较来评估。然而,健康受试者的年龄、体重、身高、BMI和步行速度的差异可能会影响基线数据,从而影响康复测量。最近的研究报道了健康受试者的步态变异,认为年龄是一种变异。其他变量如体重、身高、BMI和步行速度对基线数据变异性的独立影响尚不清楚,因此本研究对其进行了调查。从205名男性受试者中收集的压力信号中心被归类为上述五种变体中的每一种。步态变异性根据行走稳定性进行评估。采用Nyquist和Bode方法对压力信号中心进行分析,计算步态加载和卸载阶段的行走稳定性。统计比较(单因素方差分析,p <;0.05)表明,在负重阶段和前后方向上,年龄、身高、步行速度等变量的基线数据存在显著差异。在中外侧方向,这些差异在加载阶段(年龄、体重、速度)和卸载阶段(年龄、体重、身高)都被观察到。总体而言,年龄:27±0.8岁,体重:73±0.4 kg,身高:177±0.5 cm,步行速度:1.42±0.01 m/s的亚组表现出相对较高的稳定性。此外,Pearson相关性说明了体重和其他变量之间的显著稳定性关系。这项研究提供的证据表明,健康受试者组成的多样性可能导致诊断和康复测量的不确定性,这在步态评估中是重要的考虑因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differences in gait dynamic stability of healthy subjects due to age, body mass, height, BMI, and walking speed
Gait deformities are usually assessed by comparing patients' data with healthy subjects. However, the variability among healthy subjects due to age, body mass, height, BMI, and walking speed could influence the baseline data and hence rehabilitation measurements. Recent studies reported gait variability among healthy subjects considering age as a variant. The independent effect of other variants such as body mass, height, BMI, and walking speed on variability in the baseline data has remained unknown, hence investigated in this study. The centre of pressure signals collected from 205 male subjects was categorised for each of the mentioned five variants. Gait variability was evaluated in terms of walking stability. The centre of pressure signals was analysed by applying Nyquist and Bode methods to compute walking stability during the gait loading and unloading phases. A statistical comparison (one-way ANOVA, p ​< ​0.05) revealed significant variability in the baseline data for variables (age, height, walking speed) during the loading phase and in the anterior-posterior direction. In the medial-lateral direction, these differences were observed as significant during both loading (age, body mass, speed) and unloading phases (age, body mass, height). Overall, the subgroups in respective variants i.e. age: 27 ​± ​0.8yr, body mass: 73 ​± ​0.4 ​kg, height: 177 ​± ​0.5 ​cm, and walking speed: 1.42 ​± ​0.01 ​m/s exhibited relatively higher stability. Further, the Pearson correlation illustrated a signification stability relationship between body mass and other variants. This study provides evidence that the diversity in the healthy subjects’ composition can cause uncertainty in diagnostic and rehabilitation measurements, which is important to consider in gait evaluations.
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来源期刊
Medicine in Novel Technology and Devices
Medicine in Novel Technology and Devices Medicine-Medicine (miscellaneous)
CiteScore
3.00
自引率
0.00%
发文量
74
审稿时长
64 days
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