Allen Institute for Brain Science, Seattle, WA 98109, USA.
Allen Institute for Brain Science, Seattle, WA 98109, USA.
Cell Rep. 2021 Oct 12;37(2):109826. doi: 10.1016/j.celrep.2021.109826.
Motion/direction-sensitive and location-sensitive neurons are the two major functional types in mouse visual thalamus that project to the primary visual cortex (V1). It is under debate whether motion/direction-sensitive inputs preferentially target the superficial layers in V1, as opposed to the location-sensitive inputs, which preferentially target the middle layers. Here, by using calcium imaging to measure the activity of motion/direction-sensitive and location-sensitive axons in V1, we find evidence against these cell-type-specific laminar biases at the population level. Furthermore, using an approach to reconstruct axon arbors with identified in vivo response types, we show that, at the single-axon level, the motion/direction-sensitive axons project more densely to the middle layers than the location-sensitive axons. Overall, our results demonstrate that motion/direction-sensitive thalamic neurons project extensively to the middle layers of V1 at both the population and single-cell levels, providing further insight into the organization of thalamocortical projection in the mouse visual system.
运动/方向敏感和位置敏感神经元是投射到初级视觉皮层 (V1) 的小鼠视觉丘脑的两种主要功能类型。目前尚存在争议,即运动/方向敏感输入是否优先靶向 V1 的浅层,而位置敏感输入则优先靶向中层。在这里,我们通过使用钙成像来测量 V1 中运动/方向敏感和位置敏感轴突的活性,在群体水平上发现了这些细胞类型特异性层间偏向的证据。此外,我们使用一种基于已鉴定的体内反应类型重建轴突树突的方法,表明在单个轴突水平上,运动/方向敏感轴突比位置敏感轴突更密集地投射到中层。总的来说,我们的结果表明,运动/方向敏感的丘脑神经元在群体和单细胞水平上广泛投射到 V1 的中层,为小鼠视觉系统中丘脑皮质投射的组织提供了进一步的见解。