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A Subject-Specific Approach to Detect Fatigue-Related Changes in Spine Motion Using Wearable Sensors

机译:使用可穿戴传感器检测脊柱运动中与疲劳相关的变化的特定对象方法

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摘要

An objective method to detect muscle fatigue-related kinematic changes may reduce workplace injuries. However, heterogeneous responses to muscle fatigue suggest that subject-specific analyses are necessary. The objectives of this study were to: (1) determine if wearable inertial measurement units (IMUs) could be used in conjunction with a spine motion composite index (SMCI) to quantify subject-specific changes in spine kinematics during a repetitive spine flexion-extension (FE) task; and (2) determine if the SMCI was correlated with measures of global trunk muscle fatigue. Spine kinematics were measured using wearable IMUs in 10 healthy adults during a baseline set followed by 10 sets of 50 spine FE repetitions. After each set, two fatigue measures were collected: perceived level of fatigue using a visual analogue scale (VAS), and maximal lift strength. SMCIs incorporating 10 kinematic variables from 2 IMUs (pelvis and T8 vertebrae) were calculated and used to quantify subject-specific changes in movement. A main effect of set was observed ( (1.7, 15.32) = 10.42, = 0.002), where the SMCI became significantly greater than set 1 starting at set 4. Significant correlations were observed between the SMCI and both fatigue VAS and maximal lift strength at the individual and study level. These findings support the use of wearable IMUs to detect subject-specific changes in spine motion associated with muscle fatigue.
机译:一种检测与肌肉疲劳有关的运动学变化的客观方法可以减少工作场所的伤害。但是,对肌肉疲劳的异质反应表明,必须进行针对受试者的分析。这项研究的目的是:(1)确定是否可以将可穿戴惯性测量单位(IMU)与脊柱运动综合指数(SMCI)结合使用,以量化受试者在重复性脊柱屈伸中的运动学变化。 (FE)任务; (2)确定SMCI是否与总体躯干肌肉疲劳程度相关。在基线组中使用可穿戴IMU对10名健康成年人进行脊柱运动学测量,然后进行10组50次脊柱FE重复。每组之后,收集两种疲劳测量值:使用视觉模拟量表(VAS)感知的疲劳水平和最大举升强度。计算了包含2个IMU(骨盆和T8椎骨)的10个运动学变量的SMCI,并将其用于量化受试者特定的运动变化。观察到集合的主要影响((1.7,15.32)= 10.42,= 0.002),其中SMCI从集合4开始显着大于集合1。观察到SMCI与疲劳VAS和最大提升强度之间的显着相关性。个人和学习水平。这些发现支持可穿戴式IMU的使用,以检测受试者特定的与肌肉疲劳有关的脊柱运动变化。

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