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Dynamic primitives of motor behavior

机译:运动行为的动态原语

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摘要

We present in outline a theory of sensorimotor control based on dynamic primitives, which we define as attractors. To account for the broad class of human interactive behaviors—especially tool use—we propose three distinct primitives: submovements, oscillations, and mechanical impedances, the latter necessary for interaction with objects. Owing to the fundamental features of the neuromuscular system—most notably, its slow response—we argue that encoding in terms of parameterized primitives may be an essential simplification required for learning, performance, and retention of complex skills. Primitives may simultaneously and sequentially be combined to produce observable forces and motions. This may be achieved by defining a virtual trajectory composed of submovements and/or oscillations interacting with impedances. Identifying primitives requires care: in principle, overlapping submovements would be sufficient to compose all observed movements but biological evidence shows that oscillations are a distinct primitive. Conversely, we suggest that kinematic synergies, frequently discussed as primitives of complex actions, may be an emergent consequence of neuromuscular impedance. To illustrate how these dynamic primitives may account for complex actions, we brieflyreviewthree typesof interactivebehaviors: constrained motion, impact tasks, and manipulation of dynamic objects.
机译:我们概述了一种基于动态原语的感觉运动控制理论,我们将其定义为吸引子。为了说明人类交互行为的广泛类别,尤其是工具的使用,我们提出了三种不同的原语:子运动,振动和机械阻抗,后者是与对象进行交互所必需的。由于神经肌肉系统的基本特征(最显着的是它的缓慢反应),我们认为,根据参数化原语进行编码可能是学习,表现和保留复杂技能所需的基本简化。原语可以同时和顺序地组合以产生可观察到的力和运动。这可以通过定义虚拟轨迹来实现,该轨迹由与阻抗相互作用的子运动和/或振荡组成。识别原始元素需要格外小心:原则上,重叠的子运动足以组成所有观察到的运动,但是生物学证据表明,振荡是一个独特的原始元素。相反,我们建议运动学协同作用,经常被讨论为复杂动作的原始形式,可能是神经肌肉阻抗的紧急结果。为了说明这些动态图元如何解释复杂的动作,我们简要回顾了三种类型的交互行为:受约束的运动,冲击任务和对动态对象的操纵。

著录项

  • 来源
    《Biological Cybernetics》 |2012年第12期|p.727-739|共13页
  • 作者

    Neville Hogan; Dagmar Sternad;

  • 作者单位

    Department of Mechanical Engineering, Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Room 3-146, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA;

    Department of Biology, Department of Electrical and Computer Engineering, Department of Physics, Center for Interdisciplinary Research on Complex Systems, Northeastern University, 134 Mugar Life Science Building, 360 Huntington Avenue, Boston, MA, 02115, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Discrete; Submovement; Rhythmic; Oscillation; Impedance; Primitive;

    机译:他应该明智;潜移默化;节奏性;振荡性;阻抗性;在原始环境中;

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