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Technical Aspects and Validation of a New Biofeedback System for Measuring Lower Limb Loading in the Dynamic Situation

机译:动态情况下测量下肢负荷的新型生物反馈系统的技术方面和验证

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摘要

Background: A variety of techniques for measuring lower limb loading exists, each with their own limitations. A new ambulatory biofeedback system was developed to overcome these limitations. In this study, we described the technical aspects and validated the accuracy of this system. Methods: A bench press was used to validate the system in the static situation. Ten healthy volunteers were measured by the new biofeedback system and a dual-belt instrumented treadmill to validate the system in the dynamic situation. Results: Bench press results showed that the sensor accurately measured peak loads up to 1000 N in the static situation. In the healthy volunteers, the load curves measured by the biofeedback system were similar to the treadmill. However, the peak loads and loading rates were lower in the biofeedback system in all participants at all speeds. Conclusions: Advanced sensor technologies used in the new biofeedback system resulted in highly accurate measurements in the static situation. The position of the sensor and the design of the biofeedback system should be optimized to improve results in the dynamic situation.
机译:背景:存在多种测量下肢负荷的技术,每种技术都有其自身的局限性。为了克服这些限制,开发了一种新的动态生物反馈系统。在这项研究中,我们描述了技术方面并验证了该系统的准确性。方法:使用台式压力机在静态情况下验证系统。通过新的生物反馈系统和双皮带仪器跑步机对十名健康志愿者进行了测量,以验证该系统在动态情况下的有效性。结果:卧推结果表明,该传感器在静态条件下可准确测量高达1000 N的峰值负载。在健康的志愿者中,生物反馈系统测得的负荷曲线类似于跑步机。然而,在所有速度下,所有参与者的生物反馈系统的峰值负荷和负荷率均较低。结论:在新的生物反馈系统中使用了先进的传感器技术,从而可以在静态情况下进行高精度的测量。应该优化传感器的位置和生物反馈系统的设计,以改善动态情况下的结果。

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