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Wearable lower limb biomechanics measurement system for gait analysis during walking and ascending stair

机译:可穿戴式下肢生物力学测量系统,用于步行和上升楼梯时的步态分析

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Current existing sensors have inherent limitations such as mobility, wearability, and rigidity for measuring walking information. In order to investigate advantages and disadvantages of each sensor and measure bio-signals during walking on a flat terrain and ascending stairs, we developed a wearable lower limb biomechanics measurement system integrated with force sensors, encoders, and myoelectric sensors. Depending on motions, changes of joint angles and activity patterns for four muscles were recorded for a single healthy subject. As a result, in case of walking on a flat terrain, the tendency of angle variation in each joint are similar whether the subject puts on the wearable monitoring system or not. In ascending stairs, variations of joint angles were larger than that of walking for all joints (hip, knee, and ankle flexion/extension). For muscle activations, vastus lateralis were activated during ascending stairs while it was not activated during walking.
机译:当前现有的传感器具有固有的局限性,例如移动性,耐磨性和用于测量步行信息的刚度。为了调查每个传感器的优缺点并在平坦的地形和上升的楼梯上行走时测量生物信号,我们开发了可穿戴的下肢生物力学测量系统,该系统集成了力传感器,编码器和肌电传感器。根据运动情况,为一个健康受试者记录了四块肌肉的关节角度和活动模式的变化。结果,在平坦的地面上行走的情况下,无论对象是否佩戴可穿戴监控系统,每个关节的角度变化趋势都是相似的。在上升楼梯中,所有关节(臀部,膝盖和脚踝屈伸)的关节角度变化都大于步行的变化。对于肌肉激活,在上楼梯时激活外侧股外侧肌,而在步行过程中未激活外侧股外侧肌。

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