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单胺能调节运动皮层功能。

Monoaminergic Modulation of Motor Cortex Function.

机构信息

Laboratoire de Neurosciences Expérimentales et Cliniques, INSERM U1084, Poitiers, France.

Laboratoire de Neurosciences Expérimentales et Cliniques, Université de Poitiers, Poitiers, France.

出版信息

Front Neural Circuits. 2017 Oct 9;11:72. doi: 10.3389/fncir.2017.00072. eCollection 2017.

Abstract

Elaboration of appropriate responses to behavioral situations rests on the ability of selecting appropriate motor outcomes in accordance to specific environmental inputs. To this end, the primary motor cortex (M1) is a key structure for the control of voluntary movements and motor skills learning. Subcortical loops regulate the activity of the motor cortex and thus contribute to the selection of appropriate motor plans. Monoamines are key mediators of arousal, attention and motivation. Their firing pattern enables a direct encoding of different states thus promoting or repressing the selection of actions adapted to the behavioral context. Monoaminergic modulation of motor systems has been extensively studied in subcortical circuits. Despite evidence of converging projections of multiple neurotransmitters systems in the motor cortex pointing to a direct modulation of local circuits, their contribution to the execution and learning of motor skills is still poorly understood. Monoaminergic dysregulation leads to impaired plasticity and motor function in several neurological and psychiatric conditions, thus it is critical to better understand how monoamines modulate neural activity in the motor cortex. This review aims to provide an update of our current understanding on the monoaminergic modulation of the motor cortex with an emphasis on motor skill learning and execution under physiological conditions.

摘要

恰当的行为反应取决于根据特定环境输入选择适当运动输出的能力。为此,初级运动皮层(M1)是控制自愿运动和运动技能学习的关键结构。皮质下回路调节运动皮层的活动,从而有助于选择适当的运动计划。单胺类物质是觉醒、注意力和动机的关键调节剂。它们的发射模式能够直接编码不同的状态,从而促进或抑制选择适应行为背景的动作。单胺能调制已在皮质下回路中进行了广泛的研究。尽管有证据表明多种神经递质系统的会聚投射在运动皮层中指向对局部回路的直接调制,但它们对运动技能的执行和学习的贡献仍知之甚少。单胺能失调导致几种神经和精神疾病的可塑性和运动功能受损,因此,更好地理解单胺类物质如何调节运动皮层中的神经活动至关重要。本综述旨在提供对运动皮层中单胺能调制的最新认识,重点是在生理条件下运动技能的学习和执行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69a2/5640772/8e7c0f70c5b1/fncir-11-00072-g0001.jpg

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