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首页> 外文期刊>Nature reviews Cancer >Accuracy and precision of loadsol((R)) insole force-sensors for the quantification of ground reaction force-based biomechanical running parameters
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Accuracy and precision of loadsol((R)) insole force-sensors for the quantification of ground reaction force-based biomechanical running parameters

机译:Loadsol((r))鞋垫力传感器的准确性和精度,用于定量地面反作用力的生物力学运行参数

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Force plates represent the gold standard in measuring running kinetics to predict performance or to identify the sources of running-related injuries. As these measurements are generally limited to laboratory analyses, wireless high-quality sensors for measuring in the field are needed. This work analysed the accuracy and precision of a new wireless insole forcesensor for quantifying running-related kinetic parameters. Vertical ground reaction force (GRF) was simultaneously measured with pit-mounted force plates (1kHz) and loadsol((R)) sensors (100Hz) under unshod forefoot and rearfoot running-step conditions. GRF data collections were repeated four times, each separated by 30 min treadmill running, to test influence of extended use. A repeated-measures ANOVA was used to identify differences between measurement devices. Additionally, mean bias and Bland-Altman limits of agreement (LoA) were calculated. We found a significant difference (p.05) in ground contact time, peak force, and force rate, while there was no difference in parameters impulse, time to peak, and negative force rate. There was no influence of time point of measurement. The mean bias of ground contact time, impulse, peak force, and time to peak ranged between 0.6% and 3.4%, demonstrating high accuracy of loadsol((R)) devices for these parameters. For these same parameters, the LoA analysis showed that 95% of all measurement differences between insole and force plate measurements were less than 12%, demonstrating high precision of the sensors. However, highly dynamic behaviour of GRF, such as force rate, is not yet sufficiently resolved by the insole devices, which is likely explained by the low sampling rate.
机译:迫害板代表测量运行动力学的金标准,以预测性能或确定与持续的伤害伤害来源。由于这些测量通常限于实验室分析,因此需要用于测量该领域的无线高质量传感器。这项工作分析了一种用于量化与运行相关动力学参数的新无线鞋板的准确性和精度。用凹坑安装的力板(1kHz)和Loadsol((R))传感器(100Hz)在未经安装的前掌和后脚运行步骤条件下同时测量垂直接地反作用力(GRF)。 GRF数据收集重复四次,每次分开30分钟的跑步机运行,以测试延长使用的影响。重复测量ANOVA用于识别测量装置之间的差异。此外,计算了平均偏见和平坦的协议限制(LOA)。我们发现接地时间,峰值力和力率的显着差异(p <.05),而参数脉冲,峰值时间和负力率没有差异。没有时间测量点的影响。接地接触时间,脉冲,峰值力和峰值的平均偏置在0.6%和3.4%之间,展示了这些参数的Loadsol((R))器件的高精度。对于这些相同的参数,LOA分析表明,鞋垫和力板测量之间的所有测量差异的95%小于12%,展示了传感器的高精度。然而,鞋垫设备尚未充分地解析GRF的高动态行为,例如力速率,这可能是由低采样率解释的。

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