Florey Institute of Neuroscience and Mental Health, University of Melbourne, Melbourne, Australia.
School of Biochemistry and Immunology and Trinity College Institute for Neuroscience, Trinity College Dublin, Dublin, Ireland.
Elife. 2022 Mar 8;11:e77177. doi: 10.7554/eLife.77177.
The thalamus is a gateway to the cortex. Cortical encoding of complex behavior can therefore only be understood by considering the thalamic processing of sensory and internally generated information. Here, we use two-photon Ca imaging and optogenetics to investigate the role of axonal projections from the posteromedial nucleus of the thalamus (POm) to the forepaw area of the mouse primary somatosensory cortex (forepaw S1). By recording the activity of POm axonal projections within forepaw S1 during expert and chance performance in two tactile goal-directed tasks, we demonstrate that POm axons increase activity in the response and, to a lesser extent, reward epochs specifically during correct HIT performance. When performing at chance level during learning of a new behavior, POm axonal activity was decreased to naive rates and did not correlate with task performance. However, once evoked, the Ca transients were larger than during expert performance, suggesting POm input to S1 differentially encodes chance and expert performance. Furthermore, the POm influences goal-directed behavior, as photoinactivation of archaerhodopsin-expressing neurons in the POm decreased the learning rate and overall success in the behavioral task. Taken together, these findings expand the known roles of the higher-thalamic nuclei, illustrating the POm encodes and influences correct action during learning and performance in a sensory-based goal-directed behavior.
丘脑是皮质的门户。因此,只有考虑到丘脑对感觉和内部产生的信息的处理,才能理解皮质对复杂行为的编码。在这里,我们使用双光子 Ca 成像和光遗传学来研究丘脑后内侧核(POm)到小鼠初级体感皮层前爪区(前爪 S1)的轴突投射的作用。通过在两个触觉定向任务中记录前爪 S1 内 POm 轴突投射的活动,在专家和偶然表现期间,我们证明 POm 轴突在反应期和奖励期增加活动,在正确的 HIT 表现期间尤其如此。在学习新行为时,当表现为偶然水平时,POm 轴突活性降低到幼稚水平,并且与任务表现无关。然而,一旦被激发,钙瞬变比在专家表现期间更大,这表明 POm 输入到 S1 以不同的方式对偶然和专家表现进行编码。此外,POm 影响目标导向行为,因为在 POm 中表达 archaeerhodopsin 的神经元的光失活降低了行为任务中的学习率和整体成功率。总之,这些发现扩展了高级丘脑核的已知作用,说明了 POm 在基于感觉的目标导向行为的学习和表现期间编码并影响正确的动作。