Martin Kevan A C, Sägesser Franziska D
Institute of Neuroinformatics, ETHZ/UZH, Zürich, Switzerland.
Brain Struct Funct. 2024 Jul;229(6):1397-1415. doi: 10.1007/s00429-024-02806-3. Epub 2024 May 16.
The cat primary visual cortex (V1) is a cortical area for which we have one of the most detailed estimates of the connection 'weights' (expressed as number of synapses) between different neural populations in different layers (Binzegger et al in J Neurosci 24:8441-8453, 2004). Nevertheless, the majority of excitatory input sources to layer 6, the deepest layer in a local translaminar excitatory feedforward loop, was not accounted for by the known neuron types used to generate the quantitative Binzegger diagram. We aimed to fill this gap by using a retrograde tracer that would label neural cell bodies in and outside V1 that directly connect to layer 6 of V1. We found that more than 80% of labeled neurons projecting to layer 6 were within V1 itself. Our data indicate that a substantial fraction of the missing input is provided by a previously unidentified population of layer 3/4 border neurons, laterally distributed and connecting more strongly to layer 6 than the typical superficial layer pyramidal neurons considered by Binzegger et al. (Binzegger et al in J Neurosci 24:8441-8453, 2004). This layer 3/4 to layer 6 connection may be a parallel route to the layer 3 - layer 5 - layer 6 feedforward pathway, be associated with the fast-conducting, movement-related Y pathway and provide convergent input from distant (5-10 degrees) regions of the visual field.
猫的初级视觉皮层(V1)是一个皮质区域,我们对其不同层中不同神经群体之间的连接“权重”(以突触数量表示)有最详细的估计之一(宾泽格等人,《神经科学杂志》24:8441 - 8453,2004年)。然而,对于局部跨层兴奋性前馈回路最深层第6层的大多数兴奋性输入源,用于生成定量宾泽格图的已知神经元类型并未涵盖。我们旨在通过使用一种逆行示踪剂来填补这一空白,该示踪剂将标记V1内外直接连接到V1第6层的神经细胞体。我们发现,投射到第6层的标记神经元中超过80%位于V1本身内部。我们的数据表明,缺失输入的很大一部分是由先前未识别的第3/4层边界神经元群体提供的,这些神经元横向分布,并且与宾泽格等人(宾泽格等人,《神经科学杂志》24:8441 - 8453,2004年)所考虑的典型浅层锥体神经元相比,与第6层的连接更强。这种从第3/4层到第6层的连接可能是与第3 - 第5 - 第6层前馈通路平行的路径,与快速传导、与运动相关的Y通路相关,并提供来自视野远处(5 - 10度)区域的汇聚输入。