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神经生物学退化:感知和行动适应约束的关键特性。

Neurobiological degeneracy: A key property for functional adaptations of perception and action to constraints.

机构信息

Normandie Univ, UNIROUEN, CETAPS, France.

CIPER, Faculdade de Motricidade Humana, Universidade de Lisboa, Lisboa, Portugal.

出版信息

Neurosci Biobehav Rev. 2016 Oct;69:159-65. doi: 10.1016/j.neubiorev.2016.08.006. Epub 2016 Aug 6.

Abstract

A crucial aspect of understanding human behavior relates to how perception and action sub-systems are integrated during coordinated and controlled movement in goal-directed activity. Here we discuss how a neurobiological system property, degeneracy (i.e., many coordinative structures to achieve one function), can help us understand how skilled individuals functionally adapt perception and action to interacting constraints during performance. Since most research investigating degeneracy has been conducted in neuroanatomy, genetics and theoretical neurobiology, here we clarify how degeneracy is exhibited in perceptual-motor systems. Using an ecological dynamics framework, we highlight how degeneracy underpins the functional role of movement coordination variability in performance of multi-articular tasks. Following that, we discuss how degenerate neurobiological systems are able to exploit system stability and flexibility in their movement coordination. Third, we show how better coupling of information and movement could lead individuals to explore functionally degenerate behaviors. Last, we explore how degeneracy can support pluri-potentiality (i.e., one coordinative structure for many perceptual-motor functions) as a way toward innovation or refinement in performance.

摘要

理解人类行为的一个关键方面涉及到在有目标的活动中协调和控制运动时,感知和动作子系统是如何整合的。在这里,我们讨论了神经生物学系统的一个属性——简并性(即许多协调结构来实现一个功能),如何帮助我们理解熟练个体如何在执行任务时根据相互作用的约束条件,在功能上调整感知和动作。由于大多数研究简并性的研究都集中在神经解剖学、遗传学和理论神经生物学方面,我们在这里澄清了简并性在感知运动系统中是如何表现出来的。我们使用生态动力学框架强调了运动协调变异性在多关节任务表现中的功能作用。之后,我们讨论了简并性的神经生物学系统如何在运动协调中利用系统稳定性和灵活性。第三,我们展示了信息和运动更好地耦合如何使个体探索功能上的简并行为。最后,我们探讨了简并性如何支持多能性(即一种协调结构用于多种感知运动功能),作为提高或完善表现的一种方式。

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