An experimental study on redundancy resolution scheme of postural configuration in human arm reaching with an elbow joint kinematic constraint

Hyosang Moon, N. Robson, R. Langari, Sungtae Shin
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引用次数: 4

Abstract

This paper studies the redundancy resolution strategy of the central nervous system (CNS) in selecting an arm posture during reaching motions. Based on the assumption that such governing rules are preserved against any joint constraint condition, an elbow joint DOF was fixed during the experiments with a light weight elbow brace. Two different coordinate systems are defined to interpret kinematics and dynamics of motion in a task-oriented space and an internal body space. The kinematic and dynamic contributions of the internal body frame on the task frame, is quantified by mappings. The experimental results show that the core principle of the CNS to determine the arm posture is to minimize the kinetic energy cost.
基于肘关节运动约束的人臂运动位态冗余解析方案实验研究
研究了中枢神经系统(CNS)在伸展动作中选择手臂姿势时的冗余分解策略。在假设该控制规律不受任何关节约束条件影响的前提下,利用轻型肘关节支架固定了肘关节的自由度。定义了两种不同的坐标系来解释面向任务空间和内部物体空间中的运动运动学和动力学。内部主体框架对任务框架的运动学和动力学贡献通过映射来量化。实验结果表明,CNS确定手臂姿态的核心原则是使动能损失最小。
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