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不同运动条件下膝关节声学评估的有效性及建议。

Validity of and recommendations for knee joint acoustic assessments during different movement conditions.

作者信息

Kalo Kristin, Niederer Daniel, Stief Felix, Würzberger Laura, van Drongelen Stefan, Meurer Andrea, Vogt Lutz

机构信息

Department of Sports Medicine and Exercise Physiology, Goethe University, Frankfurt am Main, Germany.

Department of Sports Medicine and Exercise Physiology, Goethe University, Frankfurt am Main, Germany.

出版信息

J Biomech. 2020 Aug 26;109:109939. doi: 10.1016/j.jbiomech.2020.109939. Epub 2020 Jul 8.

Abstract

Knee joint sounds contain information on joint health, morphology and loading. These acoustic signals may be elicited by further, as yet unknown factors. By assessing potential elicitors and their relative contributions to the acoustic signal, we investigated the validity of vibroarthrographic assessments during different movement conditions with the aim to derive recommendations for their practical usage. Cross-sectional study. Nineteen healthy participants (24.7 ± 2.8 yrs, 7 females) performed five movements: level walking, descending stairs, standing up, sitting down, and forward lunge. Knee joint sounds were recorded by two microphones (medial tibial plateau, patella). Knee joint kinematics and ground reaction forces were recorded synchronously to calculate knee joint moments (Nm/Kg). The mean amplitude (dB) and the median power frequency (Hz) were determined. A repeated measures mixed model investigated the impact of potential predictors (sagittal, frontal, transverse plane and total knee joint moments, knee angular velocity, age, sex, body mass index (BMI) and Tegner Activity Score (TAS)). Most of the amplitudes variance is explained by between-subject differences (tibia: 66.6%; patella: 75.8%), and of the median power frequencies variance by the movement condition (tibia: 97.6%; patella: 98.9%). The final model revealed several predictor variables for both sensors (tibia: sagittal plane, frontal plane, and total knee joint moments, age, and TAS; patella: sagittal plane knee moments, knee angular velocity, TAS). The standardization of the execution of the activities, a between-group matching of variables and the inclusion of co-variates are recommended to increase the validity of vibroarthrographic measurements during different movement conditions of the knee joint.

摘要

膝关节声音包含有关关节健康、形态和负荷的信息。这些声学信号可能由其他尚未明确的因素引发。通过评估潜在的引发因素及其对声学信号的相对贡献,我们研究了在不同运动条件下振动关节造影评估的有效性,旨在为其实际应用得出建议。横断面研究。19名健康参与者(年龄24.7±2.8岁,7名女性)进行了五项运动:平地行走、下楼梯、站立、坐下和前弓步。通过两个麦克风(胫骨内侧平台、髌骨)记录膝关节声音。同步记录膝关节运动学和地面反作用力以计算膝关节力矩(Nm/Kg)。确定平均振幅(dB)和中位功率频率(Hz)。采用重复测量混合模型研究潜在预测因素(矢状面、额状面、横断面和总膝关节力矩、膝关节角速度、年龄、性别、体重指数(BMI)和泰格纳活动评分(TAS))的影响。大部分振幅差异由个体间差异解释(胫骨:66.6%;髌骨:75.8%),而大部分中位功率频率差异由运动条件解释(胫骨:97.6%;髌骨:98.9%)。最终模型揭示了两个传感器的几个预测变量(胫骨:矢状面、额状面和总膝关节力矩、年龄和TAS;髌骨:矢状面膝关节力矩、膝关节角速度、TAS)。建议对活动执行进行标准化、变量的组间匹配以及纳入协变量,以提高在膝关节不同运动条件下振动关节造影测量的有效性。

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