Picower Institute for Learning and Memory, Cambridge, MA, USA.
Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge, MA, USA.
Nat Neurosci. 2023 Mar;26(3):470-480. doi: 10.1038/s41593-022-01253-9. Epub 2023 Feb 2.
The thalamus is the main gateway for sensory information from the periphery to the mammalian cerebral cortex. A major conundrum has been the discrepancy between the thalamus's central role as the primary feedforward projection system into the neocortex and the sparseness of thalamocortical synapses. Here we use new methods, combining genetic tools and scalable tissue expansion microscopy for whole-cell synaptic mapping, revealing the number, density and size of thalamic versus cortical excitatory synapses onto individual layer 2/3 (L2/3) pyramidal cells (PCs) of the mouse primary visual cortex. We find that thalamic inputs are not only sparse, but remarkably heterogeneous in number and density across individual dendrites and neurons. Most surprising, despite their sparseness, thalamic synapses onto L2/3 PCs are smaller than their cortical counterparts. Incorporating these findings into fine-scale, anatomically faithful biophysical models of L2/3 PCs reveals how individual neurons with sparse and weak thalamocortical synapses, embedded in small heterogeneous neuronal ensembles, may reliably 'read out' visually driven thalamic input.
丘脑是感觉信息从外围传入哺乳动物大脑皮层的主要门户。一个主要的难题是,丘脑作为主要的前馈投射系统进入新皮层的核心作用与丘脑皮质突触的稀疏之间存在差异。在这里,我们使用新的方法,结合遗传工具和可扩展的组织扩展显微镜进行全细胞突触映射,揭示了单个 2/3 层(L2/3)锥体神经元(PC)的小鼠初级视觉皮层中,来自丘脑的兴奋性突触的数量、密度和大小。我们发现,丘脑输入不仅稀疏,而且在单个树突和神经元上的数量和密度都非常不均匀。最令人惊讶的是,尽管它们稀疏,但丘脑与 L2/3 PC 的突触比皮质对应物小。将这些发现纳入 L2/3 PC 的精细、解剖学上忠实的生物物理模型中,揭示了在小型异质神经元集合中嵌入的具有稀疏和弱的丘脑皮质突触的单个神经元如何可靠地“读出”视觉驱动的丘脑输入。