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Estimating Youth Locomotion Ground Reaction Forces Using an Accelerometer-Based Activity Monitor

机译:估计青年步态地面反作用力使用加速度计基于活动监视器

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摘要

To address a variety of questions pertaining to the interactions between physical activity, musculoskeletal loading and musculoskeletal health/injury/adaptation, simple methods are needed to quantify, outside a laboratory setting, the forces acting on the human body during daily activities. The purpose of this study was to develop a statistically based model to estimate peak vertical ground reaction force (pVGRF) during youth gait. 20 girls (10.9±0.9 years) and 15 boys (12.5±0.6 years) wore a Biotrainer AM over their right hip. Six walking and six running trials were completed after a standard warm-up. Average AM intensity (g) and pVGRF (N) during stance were determined. Repeated measures mixed effects regression models to estimate pVGRF from Biotrainer activity monitor acceleration in youth (girls 10–12, boys 12–14 years) while walking and running were developed. Log transformed pVGRF had a statistically significant relationship with activity monitor acceleration, centered mass, sex (girl), type of locomotion (run), and locomotion type-acceleration interaction controlling for subject as a random effect. A generalized regression model without subject specific random effects was also developed. The average absolute differences between the actual and predicted pVGRF were 5.2% (1.6% standard deviation) and 9% (4.2% standard deviation) using the mixed and generalized models, respectively. The results of this study support the use of estimating pVGRF from hip acceleration using a mixed model regression equation.
机译:为了解决与体力活动,肌肉骨骼负荷和肌肉骨骼健康/伤害/适应之间的相互作用有关的各种问题,需要简单的方法来量化实验室环境中日常活动期间作用于人体的力。这项研究的目的是建立一个基于统计的模型,以估计青年步态期间的峰值垂直地面反作用力(pVGRF)。 20名女孩(10.9±0.9岁)和15名男孩(12.5±0.6岁)在其右髋上戴了Biotrainer AM。标准的热身后,完成了六次步行和六次跑步试验。确定姿态期间的平均AM强度(g)和pVGRF(N)。开发了重复测量的混合效应回归模型,可以通过Biotrainer活动监测器在步行和跑步时青年(10至12岁的女孩,12至14岁的男孩)的加速度估算pVGRF。对数转换后的pVGRF与活动监测器加速度,中心质量,性别(女孩),运动类型(跑步)和运动类型-加速度交互作用对受试者的控制具有统计学意义的关系作为随机效应。还建立了没有受试者特定随机效应的广义回归模型。使用混合模型和广义模型,实际和预测的pVGRF之间的平均绝对差分别为5.2%(标准偏差1.6%)和9%(标准偏差4.2%)。这项研究的结果支持使用混合模型回归方程根据髋关节加速度估算pVGRF。

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