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The Development of Local Layer-Specific Visual Cortical Axons in the Absence of Extrinsic Influences and Intrinsic Activity

机译:在没有外部影响和内在活动的情况下局部特定层的视觉皮层轴突的发展

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摘要

The laminar specificity of vertical connections in the primary visual cortex (area 17) develops precisely from the outset, leading to the hypothesis that layer-specific axonal targeting is attributable to molecular cues intrinsic to the cortex (; ). However, alternative factors that could influence axonal development have not been investigated. This study examines the roles of intrinsic cortical activity and extrinsic influences that could arise from earlier-formed connections with outside cortical and subcortical areas. Organotypic slice cultures were prepared from ferret area 17 before the formation of local axonal connections and were incubated for 5–7 d to allow initial, local axonal arbors to form in the absence of extrinsic influences. Additionally, some slices were cultured in the presence of the Na+ channel blocker tetrodotoxin to block spontaneous action potentials within the slice. Individual neurons were labeled intracellularly with biocytin, and their patterns of local axonal arborizations were reconstructed. This study focuses on the development of layer 6 pyramidal neurons, the axons of which in vivo bypass an incorrect target, layer 5, before specifically arborizing in their local target, layer 4. We found that axonal arbors developing in vitropreferentially arborized in layer 4 versus layer 5. However, inhibition of spontaneous activity within the cortical slice decreased this specificity, resulting in similar numbers of axonal branches in layers 4 and 5. Thus, although cortical axons do not require influences from outside areas, intrinsic spontaneous activity is required for specific axonal arborization in correct laminar targets.
机译:初级视觉皮层(区域17)中垂直连接的层状特异性从一开始就精确地发展了,导致了这样的假设,即特定于层的轴突靶向可归因于皮层固有的分子线索(;)。但是,尚未研究可能影响轴突发育的其他因素。这项研究探讨了内在皮层活动和外在影响的作用,这些作用可能是由于较早形成的与外部皮层和皮层下区域的联系而产生的。在局部轴突连接形成之前,先从雪貂17区制备器官型切片培养物,并孵育5-7 d,以在没有外部影响的情况下形成初始的局部轴突。此外,在Na + 通道阻断剂河豚毒素的存在下培养一些切片,以阻断切片内的自发动作电位。单个神经元在细胞内被生物胞嘧啶标记,并重建了它们的局部轴突乔化模式。这项研究的重点是第6层锥体神经元的发育,其轴突在体内绕过了不正确的靶标第5层,然后在其局部靶标第4层中专门进行了乔木化。我们发现,体外培养的轴突柄在第4层中优先被乔化第5层。但是,抑制皮质切片内的自发活性降低了这种特异性,导致第4层和第5层中的轴突分支数量相似。因此,尽管皮质轴突不需要外部区域的影响,但是固有的自发活性是特定的在正确的层状目标中进行轴突乔化。

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