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观察学习的协调动力学:相对运动方向和相对相位作为将动作感知与动作产生联系起来的信息内容

The Coordination Dynamics of Observational Learning: Relative Motion Direction and Relative Phase as Informational Content Linking Action-Perception to Action-Production.

作者信息

Buchanan John J

机构信息

Human Performance Labs: Perception-Action Dynamics, Department of Health and Kinesiology, Texas A&M University, College Station, Texas, USA.

出版信息

Adv Exp Med Biol. 2016;957:209-228. doi: 10.1007/978-3-319-47313-0_12.

DOI:10.1007/978-3-319-47313-0_12
PMID:28035568
Abstract

The primary goal of this chapter is to merge together the visual perception perspective of observational learning and the coordination dynamics theory of pattern formation in perception and action. Emphasis is placed on identifying movement features that constrain and inform action-perception and action-production processes. Two sources of visual information are examined, relative motion direction and relative phase. The visual perception perspective states that the topological features of relative motion between limbs and joints remains invariant across an actor's motion and therefore are available for pickup by an observer. Relative phase has been put forth as an informational variable that links perception to action within the coordination dynamics theory. A primary assumption of the coordination dynamics approach is that environmental information is meaningful only in terms of the behavior it modifies. Across a series of single limb tasks and bimanual tasks it is shown that the relative motion and relative phase between limbs and joints is picked up through visual processes and supports observational learning of motor skills. Moreover, internal estimations of motor skill proficiency and competency are linked to the informational content found in relative motion and relative phase. Thus, the chapter links action to perception and vice versa and also links cognitive evaluations to the coordination dynamics that support action-perception and action-production processes.

摘要

本章的主要目标是将观察学习的视觉感知视角与感知和行动中模式形成的协调动力学理论融合在一起。重点在于识别那些制约并为行动感知和行动产生过程提供信息的运动特征。我们考察了两种视觉信息来源,即相对运动方向和相对相位。视觉感知视角认为,肢体与关节之间相对运动的拓扑特征在一个行动者的运动过程中保持不变,因此可供观察者提取。相对相位已被提出作为协调动力学理论中一种将感知与行动联系起来的信息变量。协调动力学方法的一个主要假设是,环境信息只有在其对行为产生影响的层面上才具有意义。通过一系列单肢任务和双手任务表明,肢体与关节之间的相对运动和相对相位是通过视觉过程提取的,并支持运动技能的观察学习。此外,对运动技能熟练程度和能力的内部评估与相对运动和相对相位中的信息内容相关联。因此,本章将行动与感知联系起来,反之亦然,并且还将认知评估与支持行动感知和行动产生过程的协调动力学联系起来。

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