地面大型受力平台上步态反作用力的实时检测

B. Samadi, M. Raison, C. Detrembleur, L. Ballaz
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引用次数: 3

摘要

在健康监测和生物遥测中,实时记录步态时每只脚下的地面反作用力,在家庭或公共场所的异常姿势自动检测、跌倒预防等方面具有很大的潜力。为此,在地面上/地面上安装一个大型力平台,确保记录大量脚步的数据,同时避免了脚步“瞄准”问题。Davis和Cavanagh(1993)提出了使用大力板的解决方案,但Davis和Cavanagh的方法中有几个点仍然不清楚,难以计算。目的:建立一种从单一平台上记录的GRF剖面分解左右GRF剖面的方法。该方法旨在包括系统地检测单至双站立相位瞬间,以便准确测量典型发育儿童的总GRF成分。方法:要求6名儿童在独立力平台上行走,不瞄准他们的脚步。对在不同平台上独立测量的总GRF分量进行数值求和,得到相应的全球总GRF分量,并对其应用分解方法。然后,验证包括将该分解计算的总GRF与独立测量的总GRF进行比较。结果:36个双站位(6个双站位× 6名儿童)计算的总GRF与相应的垂直GRF测量值的平均相对误差为3.8±2.6%。结论:我们已经实施了一种创新的方法,使用独特的大力平台来准确评估每只脚下的垂直GRF组件。这为健康监测和生物遥测带来了广阔的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time detection of reaction forces during gait on a ground equipped with a large force platform
Introduction: In health monitoring and biotelemetry, the real-time recording of ground reaction forces under each foot during gait has a large potential for the automatic detection of abnormal posture, falling prevention, etc. at home or in public places. For this, mounting a large force platform on/in the ground ensures to record data for numerous footsteps while avoiding the step `targeting' problem. Davis and Cavanagh (1993) have proposed a solution using a large force plate but several points of Davis and Cavanagh's method remain unclear and hardly computable. Objective: Develop a method that decomposes left and right GRF profiles from the GRF profile recorded on a single platform. This method aims to include a systematic detection of the single to double stand-phase-instants in order to lead to accurate measurement of the total GRF component in typically developing children. Methods: Six children were asked to walk without targeting their footsteps on a set-up composed of independent force platforms. The total GRF component, independently measured on the different platforms, was numerically summed to obtain the corresponding global total GRF, to which the decomposition method was applied. Then, the validation consisted in comparing the total GRF computed from this decomposition to the independently measured total GRF. Results: The mean relative error between the computed total GRF and the corresponding measured vertical GRF of 36 double stances (6 double stances × 6 children) is equal to 3.8±2.6%. Conclusion: We have implemented an innovative method to assess with accuracy the vertical GRF component under each foot using a unique large force platform. This leads to large perspectives in health monitoring and biotelemetry.
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