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年龄分层与样本熵分析提高了老年人稳定性测试的极限。

Age Stratification and Sample Entropy Analysis Enhance the Limits of Stability Tests for Older Adults.

作者信息

Reinert Senia Smoot, Kinney Allison L, Jackson Kurt, Diestelkamp Wiebke, Bigelow Kimberly

机构信息

1 University of Dayton.

出版信息

J Appl Biomech. 2017 Dec 1;33(6):419-423. doi: 10.1123/jab.2016-0019. Epub 2017 Nov 8.

Abstract

The objective of this study was to determine if a foam testing condition and/or nonlinear analysis methods can be used to identify differences between age stratified subgroups of older adults when conducting the Limits of Stability assessment. Ninety older adults participated in this study. A force plate was used to record center of pressure data during Limits of Stability testing on a firm and foam surface. Participants were grouped into age-stratified subgroups: young-old (60-69 years), middle-old (70-79 years), and old-old (80+ years). Anterior-posterior (A/P) and medial-lateral (M/L) sway ranges and sample entropy values were calculated. The young-old group had significantly larger A/P and M/L sway ranges than the old-old group on both surfaces. A/P sample entropy increased significantly with age. M/L sample entropy increased significantly with age between the young-old and old-old and the middle-old and old-old groups. Sample entropy values between surfaces significantly differed for all groups. These results indicate Limits of Stability differences occur between older adults of different age groups and should be taken into consideration for clinical and research testing. Nonlinear analysis may help further identify differences in Limits of Stability performance while use of a foam surface is of limited additional value.

摘要

本研究的目的是确定在进行稳定性极限评估时,是否可以使用泡沫测试条件和/或非线性分析方法来识别老年人年龄分层亚组之间的差异。90名老年人参与了本研究。在坚硬和泡沫表面进行稳定性极限测试期间,使用测力板记录压力中心数据。参与者被分为年龄分层亚组:年轻老年人(60 - 69岁)、中年老年人(70 - 79岁)和老年老年人(80岁及以上)。计算前后(A/P)和内外侧(M/L)摆动范围以及样本熵值。在两个表面上,年轻老年人组的A/P和M/L摆动范围均显著大于老年老年人组。A/P样本熵随年龄显著增加。在年轻老年人与老年老年人组以及中年老年人与老年老年人组之间,M/L样本熵随年龄显著增加。所有组在不同表面之间的样本熵值存在显著差异。这些结果表明,不同年龄组的老年人之间存在稳定性极限差异,在临床和研究测试中应予以考虑。非线性分析可能有助于进一步识别稳定性极限表现的差异,而使用泡沫表面的附加价值有限。

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