Yonk Alex J, Linares-García Ivan, Pasternak Logan, Juliani Sofia E, Gradwell Mark A, George Arlene J, Margolis David J
Department of Cell Biology and Neuroscience, Rutgers, The State University of New Jersey, 604 Allison Road, Piscataway, NJ, 08854, USA.
bioRxiv. 2024 Nov 8:2024.03.21.586152. doi: 10.1101/2024.03.21.586152.
The posterior medial (POm) thalamus is heavily interconnected with sensory and motor circuitry and is likely involved in behavioral modulation and sensorimotor integration. POm provides axonal projections to the dorsal striatum, a hotspot of sensorimotor processing, yet the role of POm-striatal projections has remained undetermined. Using optogenetics with slice electrophysiology, we found that POm provides robust synaptic input to direct and indirect pathway striatal spiny projection neurons (D1- and D2-SPNs, respectively) and parvalbumin-expressing fast spiking interneurons (PVs). During the performance of a whisker-based tactile discrimination task, POm-striatal projections displayed learning-related activation correlating with anticipatory, but not reward-related, pupil dilation. Inhibition of POm-striatal axons across learning caused slower reaction times and an increase in the number of training sessions for expert performance. Our data indicate that POm-striatal inputs provide a behaviorally relevant arousal-related signal, which may prime striatal circuitry for efficient integration of subsequent choice-related inputs.
丘脑后内侧(POm)与感觉和运动回路紧密相连,可能参与行为调节和感觉运动整合。POm向背侧纹状体提供轴突投射,背侧纹状体是感觉运动处理的热点区域,但POm-纹状体投射的作用仍未确定。利用光遗传学结合脑片电生理学,我们发现POm为直接和间接通路的纹状体棘状投射神经元(分别为D1和D2-SPNs)以及表达小白蛋白的快速发放中间神经元(PVs)提供强大的突触输入。在基于触须的触觉辨别任务执行过程中,POm-纹状体投射显示出与学习相关的激活,与预期性而非奖励相关的瞳孔扩张相关。在学习过程中抑制POm-纹状体轴突会导致反应时间延长,并且达到专家表现所需的训练次数增加。我们的数据表明,POm-纹状体输入提供了一种与行为相关的觉醒相关信号,这可能使纹状体回路为有效整合后续与选择相关的输入做好准备。