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智能手机传感器在单腿着陆稳定任务中评估选定动力学和运动学结果的有效性。

Validity of smartphone sensors to assess selected kinetic and kinematic outcomes during single-leg landing stabilization tasks.

作者信息

Gallina Alessio, Lim Michael Anthonius, Cabral Hélio V

机构信息

School of Sport, Exercise and Rehabilitation Sciences, College of Life and Environmental Sciences, University of Birmingham, Birmingham, United Kingdom.

Department of Clinical and Experimental Sciences, Università degli Studi di Brescia, Brescia, Italy.

出版信息

PLoS One. 2025 Jun 3;20(6):e0319744. doi: 10.1371/journal.pone.0319744. eCollection 2025.

Abstract

INTRODUCTION

Landing stabilization tasks are a key component of injury prevention and rehabilitation programs. An objective estimation of kinetics and kinematics requires equipment and expertise which are often unavailable outside specialized centres. We investigated whether smartphone sensors, which are widely available to the general population, provide valid estimates of selected body kinematics and kinetics during landing stabilization tasks.

METHODS

Seventy-six asymptomatic participants (35 females) performed a unilateral landing stabilization task on both legs. Ground reaction forces and trunk orientation were collected using a force platform and an inertial measurement unit, respectively. Participants performed the tasks holding a smartphone on their chest, which collected acceleration and orientation data. We established the validity between estimates obtained with smartphone sensors and specialized equipment using Intraclass Correlation Coefficient (ICC) and paired T-test or Wilcoxon test.

RESULTS

For both legs, agreement was excellent for time of flight (lower bound of the 95% confidence interval of the ICC > 0.94); at least good for early balance (ICC > 0.87), sagittal trunk orientation (ICC > 0.79), and concentric force (ICC > 0.80); and at least moderate for frontal trunk orientation (ICC > 0.58), late balance (ICC > 0.65) and landing impact (ICC > 0.60). Smartphone accelerometers overestimated all measures compared to the force platform (p < 0.001).

CONCLUSION

Smartphone sensors provide measures similar to those obtained using specialized equipment when used to assess selected kinetics and kinematics outcomes during landing stabilization exercises. Time of flight, concentric force, early balance and trunk orientation in the sagittal plane demonstrated at least good agreement, although smartphone sensors systematically overestimated acceleration-derived measures. This study sets the foundations for the use of smartphone sensors as a simple, inexpensive tool to characterize the performance of landing stabilization tasks objectively.

摘要

引言

着陆稳定任务是预防损伤和康复计划的关键组成部分。对动力学和运动学进行客观评估需要特定设备和专业知识,而这些在专业中心之外往往难以获取。我们研究了普通大众广泛使用的智能手机传感器,在着陆稳定任务期间,能否提供选定身体运动学和动力学的有效估计。

方法

76名无症状参与者(35名女性)双腿分别进行单侧着陆稳定任务。分别使用测力平台和惯性测量单元收集地面反作用力和躯干方向数据。参与者在胸前手持智能手机执行任务,该手机收集加速度和方向数据。我们使用组内相关系数(ICC)以及配对T检验或Wilcoxon检验,确定智能手机传感器与专业设备所得估计值之间的有效性。

结果

双腿的飞行时间一致性极佳(ICC的95%置信区间下限>0.94);早期平衡(ICC>0.87)、矢状面躯干方向(ICC>0.79)和向心力量(ICC>0.80)至少良好;额状面躯干方向(ICC>0.58)、后期平衡(ICC>0.65)和着陆冲击力(ICC>0.60)至少中等。与测力平台相比,智能手机加速度计高估了所有测量值(p<0.001)。

结论

在评估着陆稳定练习期间选定的动力学和运动学结果时,智能手机传感器提供的测量结果与使用专业设备获得的结果相似。飞行时间、向心力量、早期平衡和矢状面躯干方向显示至少有良好的一致性,尽管智能手机传感器系统性地高估了加速度衍生的测量值。本研究为将智能手机传感器用作客观描述着陆稳定任务表现的简单、廉价工具奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa8/12133011/899f9972c031/pone.0319744.g001.jpg

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