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Single-cell recordings: a method for investigating the brain's activation pattern during exercise.

机译:单细胞记录:一种研究运动过程中大脑激活方式的方法。

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摘要

The precision of human movements to generate skills as accurate as the exercises performed by athletes are the consequence of a long and complex learning process. These processes involve a great amount of the nervous system's structures. Electrophysiological techniques have been largely used to highlight brain functions related to the control of these kinds of movements. These methods cover invasive and non-invasive techniques which have been applied to humans and experimental animals. We describe here electrophysiological techniques that are used in behaving animals. Especially, we will focus on the analysis and results obtained from single-cell recording in the prefrontal cortex to explain the relationship between single neuronal activity and movement during locomotion. In addition, we will show how, analyzing these results, that we can characterize the integrative role of neurons involved in the control of locomotion. The objective is to demonstrate single-cell recording techniques as suitable methods to study, in experimental animals, the brain's activation pattern during exercise.
机译:人类运动产生技能的精确度与运动员的锻炼一样精确,这是漫长而复杂的学习过程的结果。这些过程涉及大量的神经系统结构。电生理技术已被广泛用于强调与这些运动控制有关的脑功能。这些方法涵盖了已应用于人类和实验动物的侵入性和非侵入性技术。我们在这里描述行为动物所使用的电生理技术。特别是,我们将着重于前额叶皮层中单细胞记录的分析和结果,以解释运动过程中单个神经元活动与运动之间的关系。此外,我们将展示如何通过分析这些结果来表征与运动控制有关的神经元的整合作用。目的是证明单细胞记录技术是在实验动物中研究运动过程中大脑激活模式的合适方法。

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