Center for Neuroscience, University of Pittsburgh, Pittsburgh, PA, USA.
Center for the Neural Basis of Cognition, Carnegie Mellon University and University of Pittsburgh, Pittsburgh, PA, USA.
Cereb Cortex. 2018 Jul 1;28(7):2326-2339. doi: 10.1093/cercor/bhx133.
Developing models of the dynamic and complex patterns of information processing that take place during behavior is a major thrust of systems neuroscience. An underlying assumption of many models is that the same set of rules applies across different conditions. This has been the case for directional tuning during volitional movement; a single cosine function has been remarkably robust for describing the encoding of movement direction in different types of neurons, in many locations of the nervous system, and even across species. However, detailed examination of the tuning time course in motor cortex suggests that direction coding may be labile. Here, we show that there are discrete time epochs within single reaches, between which individual neurons change their tuning. Our findings suggest that motor cortical activity patterns may reflect consistent changes in the state of the control system during center-out reaching. These transitions are likely linked to different behavioral components, suggesting that the task defines changes in the operational structure of the control system.
发展能够对行为过程中的信息处理动态和复杂模式进行建模的方法是系统神经科学的主要推动力之一。许多模型的一个基本假设是,相同的规则适用于不同的条件。在自主运动期间的方向调谐中就是如此;单个余弦函数对于描述不同类型神经元、神经系统的许多位置甚至跨越物种的运动方向编码都非常稳健。然而,对运动皮层调谐时程的详细检查表明,方向编码可能不稳定。在这里,我们表明在单个到达过程中有离散的时间区间,个体神经元在这些区间之间改变其调谐。我们的发现表明,运动皮层活动模式可能反映了在向心运动过程中控制系统状态的一致变化。这些转变可能与不同的行为成分有关,这表明任务定义了控制系统操作结构的变化。