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Multimodal sensory integration in single cerebellar granule cells in vivo

机译:体内单个小脑颗粒细胞的多模式感觉整合

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The mammalian cerebellum is a highly multimodal structure, receiving inputs from multiple sensory modalities and integrating them during complex sensorimotor coordination tasks. Previously, using cell-type-specific anatomical projection mapping, it was shown that multimodal pathways converge onto individual cerebellar granule cells (Huang et al., 2013). Here we directly measure synaptic currents using in vivo patch-clamp recordings and confirm that a subset of single granule cells receive convergent functional multimodal (somatosensory, auditory, and visual) inputs via separate mossy fibers. Furthermore, we show that the integration of multimodal signals by granule cells can enhance action potential output. These recordings directly demonstrate functional convergence of multimodal signals onto single granule cells.
机译:哺乳动物小脑是高度多峰态的结构,从多种感觉模态接收输入,并在复杂的感觉运动协调任务期间将它们整合。以前,使用特定于细胞类型的解剖学投影图谱显示,多峰通路可汇聚到单个小脑颗粒细胞上(Huang等,2013)。在这里,我们使用体内膜片钳记录直接测量突触电流,并确认单个颗粒细胞的一个子集通过单独的苔藓纤维接收会聚的功能性多峰(体觉,听觉和视觉)输入。此外,我们表明颗粒细胞的多峰信号的整合可以增强动作电位输出。这些记录直接证明了多峰信号在单个颗粒细胞上的功能收敛。

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