首页 /研究 /Cable-Driven Robotic Interface for Lower Limb Neuromechanics Identification
OTHER

Cable-Driven Robotic Interface for Lower Limb Neuromechanics Identification

Hsien-Yung Huang, Ildar Farkhatdinov, Arash Arami, Mohamed Bouri, Etienne Burdet

发表年份
2020
引用次数
9
访问权限
开放获取

摘要

This paper presents a versatile cable-driven robotic interface to investigate the single-joint joint neuromechanics of the hip, knee and ankle in the sagittal plane. This endpoint-based interface offers highly dynamic interaction and accurate position control (as is typically required for neuromechanics identification), and provides measurements of position, interaction force and electromyography (EMG) of leg muscles. It can be used with the subject upright, corresponding to a natural posture during walking or standing, and does not impose kinematic constraints on a joint, in contrast to existing interfaces. Mechanical evaluations demonstrated that the interface yields a rigidity above 500 N/m with low viscosity. Tests with a rigid dummy leg and linear springs show that it can identify the mechanical impedance of a limb accurately. A smooth perturbation is developed and tested with a human subject, which can be used to estimate the hip neuromechanics.

关键词

KinematicsSagittal planeComputer scienceAnkleRigidity (electromagnetism)ElectromyographySimulationInterface (matter)EngineeringStructural engineering

相关论文

查看 OTHER 分类全部论文