Department of Physiology and Biophysics, University of Colorado School of Medicine, Aurora, Colorado.
J Neurophysiol. 2013 Dec;110(12):2817-29. doi: 10.1152/jn.00464.2013. Epub 2013 Oct 2.
Recent studies across several mammalian species have revealed a distributed network of cortical and subcortical brain regions responsible for sensorimotor decision making. Many of these regions have been shown to be interconnected with the pedunculopontine tegmental nucleus (PPTg), a brain stem structure characterized by neuronal heterogeneity and thought to be involved in several cognitive and behavioral functions. However, whether this structure plays a general functional role in sensorimotor decision making is unclear. We hypothesized that, in the context of a sensorimotor task, activity in the PPTg would reflect task-related variables in a similar manner as do the cortical and subcortical regions with which it is anatomically associated. To examine this hypothesis, we recorded PPTg activity in mice performing an odor-cued spatial choice task requiring a stereotyped leftward or rightward orienting movement to obtain a reward. We studied single-neuron activity during epochs of the task related to movement preparation, execution, and outcome (i.e., whether or not the movement was rewarded). We found that a substantial proportion of neurons in the PPTg exhibited direction-selective activity during one or more of these epochs. In addition, an overlapping population of neurons reflected movement direction and reward outcome. These results suggest that the PPTg should be considered within the network of brain areas responsible for sensorimotor decision making and lay the foundation for future experiments to examine how the PPTg interacts with other regions to control sensory-guided motor output.
最近,在多个哺乳动物物种中进行的研究揭示了一个负责感觉运动决策的皮质和皮质下脑区的分布式网络。许多这些区域已被证明与被盖脑桥脚核(PPTg)相互连接,该核是一种具有神经元异质性的脑干结构,被认为参与了几种认知和行为功能。然而,该结构是否在感觉运动决策中发挥一般功能作用尚不清楚。我们假设,在感觉运动任务的背景下,PPTg 的活动将以与与之解剖相关的皮质和皮质下区域相似的方式反映与任务相关的变量。为了检验这一假设,我们在执行需要刻板的向左或向右定向运动以获得奖励的气味线索空间选择任务的小鼠中记录了 PPTg 的活动。我们研究了与运动准备、执行和结果(即运动是否得到奖励)相关的任务期间的单个神经元活动。我们发现,在这些时期中的一个或多个时期,PPTg 中的相当一部分神经元表现出方向选择性活动。此外,重叠的神经元群体反映了运动方向和奖励结果。这些结果表明,PPTg 应该被认为是负责感觉运动决策的脑区网络的一部分,并为未来的实验奠定基础,以研究 PPTg 如何与其他区域相互作用以控制感觉导向的运动输出。