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Development and Verification of a Low-Cost Prosthetic Knee Motion Sensor

机译:低成本假期膝关节运动传感器的开发与验证

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Limb amputation affects many individuals across the world, with the majority of amputations occurring in the lower limb. Healthy individuals with intact limbs have biological sensors embedded in their anatomy to interact with the environment and to facilitate stable walking. Lower limb prosthetic users lose these embedded sensors, leading to decreased balance and an increased risk of falling, abnormal gait, and decreased quality of life. Tactile and kinesthetic sensory feedback techniques are being investigated for upper limb prosthetic users and may soon translate to lower limb users. A barrier to implementing these techniques is the lack of adequate instrumentation of lower limb prostheses. The objective of this research was to design and develop a low-cost wireless system, using inertial measurement units, which can detect when a single axis prosthetic knee is in motion. This sensor could be used to communicate the movement of a prosthetic device to actuators responsible for providing feedback to the user. Our results indicate that the device is capable of tracking the onset and termination of movement at normal walking speeds.
机译:肢体截肢影响了世界各地的许多人,其中大多数截肢发生在下肢。具有完整肢体的健康个体具有嵌入其解剖学中的生物传感器,以与环境互动,并促进稳定的行走。下肢假肢使用者失去了这些嵌入式传感器,导致平衡减少和落下的风险增加,步态异常和降低的生活质量。正在研究触觉和动力学感官反馈技术,用于上肢假肢用户,并可能很快转化为下肢用户。实施这些技术的障碍是缺乏对下肢假体的足够仪器。本研究的目的是使用惯性测量单元设计和开发低成本的无线系统,可以检测单轴假体膝关节运动。该传感器可用于将假肢装置的运动传送到负责向用户提供反馈的致动器的动作。我们的结果表明,该装置能够以正常的步行速度跟踪运动的开始和终止。

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