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基底神经节动作规范的回路。

Basal Ganglia Circuits for Action Specification.

机构信息

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, Virginia 20147, USA; email:

出版信息

Annu Rev Neurosci. 2020 Jul 8;43:485-507. doi: 10.1146/annurev-neuro-070918-050452. Epub 2020 Apr 17.

Abstract

Behavior is readily classified into patterns of movements with inferred common goals-actions. Goals may be discrete; movements are continuous. Through the careful study of isolated movements in laboratory settings, or via introspection, it has become clear that animals can exhibit exquisite graded specification to their movements. Moreover, graded control can be as fundamental to success as the selection of which action to perform under many naturalistic scenarios: a predator adjusting its speed to intercept moving prey, or a tool-user exerting the perfect amount of force to complete a delicate task. The basal ganglia are a collection of nuclei in vertebrates that extend from the forebrain (telencephalon) to the midbrain (mesencephalon), constituting a major descending extrapyramidal pathway for control over midbrain and brainstem premotor structures. Here we discuss how this pathway contributes to the continuous specification of movements that endows our voluntary actions with vigor and grace.

摘要

行为很容易被归类为具有推测共同目标的运动模式——动作。目标可以是离散的;运动是连续的。通过在实验室环境中对孤立运动的仔细研究,或者通过内省,人们已经清楚地认识到,动物可以对其运动表现出极其精细的分级特异性。此外,分级控制对于成功至关重要,就像在许多自然场景下选择执行哪种动作一样:捕食者调整速度以拦截移动的猎物,或者工具使用者施加恰到好处的力来完成精细的任务。基底神经节是脊椎动物中从大脑前脑(端脑)延伸到中脑(中脑)的一组核团,构成了控制中脑和脑干前运动结构的主要下行锥体外系途径。在这里,我们讨论了这条途径如何有助于连续规范运动,使我们的自主运动具有力量和优雅。

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