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惯用手和大脑偏侧性的汇聚模型。

Convergent models of handedness and brain lateralization.

机构信息

Department of Neurology, Penn State College of Medicine, The Pennsylvania State University University Park, PA, USA.

出版信息

Front Psychol. 2014 Oct 8;5:1092. doi: 10.3389/fpsyg.2014.01092. eCollection 2014.

Abstract

The pervasive nature of handedness across human history and cultures is a salient consequence of brain lateralization. This paper presents evidence that provides a structure for understanding the motor control processes that give rise to handedness. According to the Dynamic Dominance Model, the left hemisphere (in right handers) is proficient for processes that predict the effects of body and environmental dynamics, while the right hemisphere is proficient at impedance control processes that can minimize potential errors when faced with unexpected mechanical conditions, and can achieve accurate steady-state positions. This model can be viewed as a motor component for the paradigm of brain lateralization that has been proposed by Rogers et al. (MacNeilage et al., 2009) that is based upon evidence from a wide range of behaviors across many vertebrate species. Rogers proposed a left-hemisphere specialization for well-established patterns of behavior performed in familiar environmental conditions, and a right hemisphere specialization for responding to unforeseen environmental events. The dynamic dominance hypothesis provides a framework for understanding the biology of motor lateralization that is consistent with Roger's paradigm of brain lateralization.

摘要

在人类历史和文化中,惯用手的普遍存在是大脑偏侧性的一个显著后果。本文提供的证据为理解产生惯用手的运动控制过程提供了一个结构。根据动态优势模型,左半球(在右利手中)擅长于预测身体和环境动态影响的过程,而右半球擅长于阻抗控制过程,当面临意外的机械条件时,该过程可以最小化潜在的错误,并可以实现准确的稳态位置。这个模型可以被看作是 Rogers 等人提出的大脑偏侧性范式的一个运动组成部分(MacNeilage 等人,2009 年),它基于来自许多脊椎动物物种的广泛行为证据。Rogers 提出了一个左半球的专门化,用于在熟悉的环境条件下执行的既定行为模式,以及一个右半球的专门化,用于对意外的环境事件做出反应。动态优势假说为理解与 Roger 大脑偏侧性范式一致的运动偏侧性生物学提供了一个框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f1/4189332/8dd11798680c/fpsyg-05-01092-g0001.jpg

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