首页> 外文会议>2019 International Conference on Robotics and Automation >Development of a Low Inertia Parallel Actuated Shoulder Exoskeleton Robot for the Characterization of Neuromuscular Property during Static Posture and Dynamic Movement
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Development of a Low Inertia Parallel Actuated Shoulder Exoskeleton Robot for the Characterization of Neuromuscular Property during Static Posture and Dynamic Movement

机译:低惯性平行致动肩外骨骼机器人的开发,用于表征静态姿势和动态运动过程中的神经肌肉特性

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The purpose of this work is to introduce a newly developed exoskeleton robot designed to characterize the neuromuscular properties of the shoulder, including intrinsic and reflexive mechanisms, during static posture and dynamic movement in a 3-dimensional space. Quantitative characterization of these properties requires fast perturbation (>100°/s) to separate their contribution from that of voluntary mechanism. Understanding these properties of the shoulder control could assist in the rehabilitation or enhancement of upper limb performance during physical human-robot interaction. The device can be described as a new type of spherical parallel manipulator (SPM) that utilizes three 4-bar (4B) substructures to decouple and control roll, pitch and yaw of the shoulder. By utilizing a parallel architecture, the 4BSPM exoskeleton has the advantage of high acceleration, fast enough to satisfy the speed requirement for the characterization of distinct neuromuscular properties of the shoulder. In this work, the prototype is presented, along with an evaluation of its position accuracy and step response. The development and preliminary testing of the 4B-SPM exoskeleton presented in this work demonstrates its potential to be a useful tool for studying the neuromuscular mechanisms of the shoulder joint.
机译:这项工作的目的是介绍一种新开发的外骨骼机器人,该机器人旨在在3维空间中的静态姿势和动态运动过程中表征肩膀的神经肌肉特性,包括内在和反射机制。这些特性的定量表征需要快速的扰动(> 100°/ s)才能将其贡献与自愿机制分开。了解肩膀控制的这些属性可以在人机交互过程中帮助上肢的康复或增强。该设备可以描述为一种新型的球形并联操纵器(SPM),该操纵器利用三个4杆(4B)子结构来解耦和控制肩部的侧倾,俯仰和偏航。通过使用并行架构,4BSPM外骨骼具有高加速度的优势,足够快,可以满足表征肩部独特神经肌肉特性的速度要求。在这项工作中,将展示原型,并评估其位置精度和阶跃响应。这项工作中提出的4B-SPM外骨骼的开发和初步测试表明,其潜力可作为研究肩关节神经肌肉机制的有用工具。

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