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Prototype Development of a 3-DOF Pantographic Exoskeleton Joint with Embedded Motion Sensing System

机译:具有嵌入式运动传感系统的三-TOF容伤外骨骼关节的原型开发

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A wearable joint sensing system for motion-measurement and misalignment-compensation is particularly important for stroke patients who lack force perception. Built upon the principle of a pantographic exoskeleton (PGE) that traces motion of a natural joint in the sagittal plane with minimum reaction, this paper presents a PGE with an embedded magnetic sensing system for real-time 3-DOF motion measurements of an ankle joint. The sensing system has been developed and experimentally evaluated on a prototype PGE measuring ankle-joint motion during sit-to-stand. The effectiveness of the PGE ankle-joint motion sensing system has been experimentally demonstrated by comparing measurements with that obtained using commercial VICON. While both systems agree closely on the joint rotation measurements, the PGE can track the instantaneous displacements of the joint center as the foot flexes during STS, which cannot be captured by an imaging system that relies on skin-attached markers.
机译:用于运动测量和未对准补偿的可穿戴关节传感系统对于缺乏迫使感知的卒中患者尤为重要。 基于Pantographic exoskeleton(PGE)的原理,该剖视图在矢状平面中具有最小反应的自然关节的运动,本文呈现了具有嵌入式磁感测系统的PGE,用于踝关节的实时3-DOF运动测量 。 在坐到架期间,在测量踝关节运动的原型PGE上进行了开发和实验评估。 通过比较使用商业VICon获得的测量来实验证明了PGE踝关节运动传感系统的有效性。 虽然两个系统在关节旋转测量上紧密地遵守,但是PGE可以追踪关节中心的瞬时位移作为STS期间的脚弯曲,这不能被依赖于皮肤附着标记的成像系统捕获。

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