Distinct Corticostriatal and Intracortical Pathways Mediate Bilateral Sensory Responses in the Striatum

R. Reig, G. Silberberg
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引用次数: 36

Abstract

Individual striatal neurons integrate somatosensory information from both sides of the body, however, the afferent pathways mediating these bilateral responses are unclear. Whereas ipsilateral corticostriatal projections are prevalent throughout the neocortex, contralateral projections provide sparse input from primary sensory cortices, in contrast to the dense innervation from motor and frontal regions. There is, therefore, an apparent discrepancy between the observed anatomical pathways and the recorded striatal responses. We used simultaneous in vivo whole-cell and extracellular recordings combined with focal cortical silencing, to dissect the afferent pathways underlying bilateral sensory integration in the mouse striatum. We show that unlike direct corticostriatal projections mediating responses to contralateral whisker deflection, responses to ipsilateral stimuli are mediated mainly by intracortical projections from the contralateral somatosensory cortex (S1). The dominant pathway is the callosal projection from contralateral to ipsilateral S1. Our results suggest a functional difference between the cortico-basal ganglia pathways underlying bilateral sensory and motor processes.
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不同的皮质纹状体和皮质内通路介导纹状体的双侧感觉反应
单个纹状体神经元整合来自身体两侧的体感觉信息,然而,介导这些双侧反应的传入通路尚不清楚。虽然同侧皮质纹状体投射在整个新皮层中普遍存在,但与来自运动区和额叶区的密集神经支配相比,对侧投射提供了来自初级感觉皮质的稀疏输入。因此,观察到的解剖通路和记录的纹状体反应之间存在明显的差异。我们同时使用体内全细胞和细胞外记录结合局灶性皮质沉默,来解剖小鼠纹状体中双边感觉统合的传入通路。我们发现,与直接的皮质纹状体投射介导对侧须偏转的反应不同,对同侧刺激的反应主要由来自对侧体感皮层的皮质内投射介导(S1)。主要通路是胼胝体从对侧到同侧S1的投射。我们的研究结果表明,皮质-基底神经节通路之间存在功能差异,这是双侧感觉和运动过程的基础。
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