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使用磁惯性测量单元量化从坐立转换过程中功能表现的优化评分工具。

Optimized scoring tool to quantify the functional performance during the sit-to-stand transition with a magneto-inertial measurement unit.

作者信息

Lepetit Kevin, Mansour Khalil Ben, Letocart Adrien, Boudaoud Sofiane, Kinugawa Kiyoka, Grosset Jean-François, Marin Frédéric

机构信息

Université de technologie de Compiègne, UMR CNRS 7338 Biomécanique and Bioingénierie, Alliance Sorbonne University, Dr Schweitzer Street, 60200 Compiègne, France.

Pitié-Salpêtrière Hospital - Charles Foix Hospital (AP-HP), Avenue de la République, 94200 Ivry-sur-Seine, France.

出版信息

Clin Biomech (Bristol). 2019 Oct;69:109-114. doi: 10.1016/j.clinbiomech.2019.07.012. Epub 2019 Jul 11.

Abstract

BACKGROUND

Sit-to-stand is used as a qualitative test to evaluate functional performance, especially to detect fall risks and frail individuals. The use of various quantitative criteria would enable a better understanding of musculoskeletal deficits and movement strategy modifications. This quantification was proven possible with a magneto-inertial unit which provides a compatible wearable device for clinical routine motion analysis.

METHODS

Sit-to-stand movements were recorded using a single magneto-inertial measurement unit fixed on the chest for 74 subjects in three groups healthy young, healthy senior and frail. MIMU data was used to compute 15 spatiotemporal, kinematic and energetic parameters. Nonparametric statistical test showed a significant influence of age and frailness. After reducing the number of parameters by a principal component analysis, an AgingScore and a FrailtyScore were computed.

FINDINGS

The fraction of variance explained by the first principal component was 77.48 ± 2.80% for principal component analysis with healthy young and healthy senior groups, and 74.94 ± 2.24% with healthy and frail senior groups. By receiver operating characteristic curve analysis of this score, we were able to refine the analysis to differentiate between healthy young and healthy senior subjects as well as healthy senior and frail subjects. By radar plot of the most discriminate parameters, the motion's strategy could be characterized and be used to detect premature functional deficit or frail subjects.

INTERPRETATION

Sit-to-stand measured by a single magneto-inertial unit and dedicated post processing is able to quantify subject's musculoskeletal performance and will allow longitudinal investigation of aging population.

摘要

背景

从坐到站的动作被用作一种定性测试,以评估功能表现,特别是检测跌倒风险和虚弱个体。使用各种定量标准将有助于更好地理解肌肉骨骼缺陷和运动策略的改变。事实证明,使用磁惯性单元可以实现这种量化,该单元为临床常规运动分析提供了一种兼容的可穿戴设备。

方法

使用固定在胸部的单个磁惯性测量单元记录74名受试者(分为健康年轻人、健康老年人和虚弱老年人三组)从坐到站的动作。利用磁惯性测量单元(MIMU)数据计算15个时空、运动学和能量学参数。非参数统计检验显示年龄和虚弱状态有显著影响。通过主成分分析减少参数数量后,计算出衰老评分和虚弱评分。

研究结果

对于健康年轻人和健康老年人组的主成分分析,第一个主成分解释的方差比例为77.48±2.80%,对于健康老年人和虚弱老年人组为74.94±2.24%。通过对该评分进行受试者工作特征曲线分析,我们能够优化分析,以区分健康年轻人和健康老年人以及健康老年人和虚弱老年人。通过对最具区分性参数的雷达图分析,可以表征运动策略,并用于检测过早出现的功能缺陷或虚弱受试者。

解读

通过单个磁惯性单元测量并进行专门的后处理,从坐到站的动作能够量化受试者的肌肉骨骼表现,并将有助于对老年人群进行纵向研究。

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