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Comparison of the distributions of ipsilaterally and contralaterally projecting corticocortical neurons in cat visual cortex using two fluorescent tracers

机译:使用两种荧光示踪剂比较猫视皮层中同侧和对侧突出的皮层皮质神经元的分布

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摘要

Using the retrograde fluorescent tracers Fast Blue and Diamidino Yellow we have studied the callosal and ipsilateral corticocortical connections between the cat's area 17/18 border region and the posteromedial lateral suprasylvian visual area (PMLS), as well as the callosal connections of each of these regions with its contralateral homologue. The main goal was to determine whether single cortical neurons project with branching axons to more than one cortical target. In addition, the double-labeling technique enabled us to examine, within a single section of cortical tissue, the relative distributions of neurons with different cortical targets. Most corticocortical neurons labeled in the area 17/18 border region and in area PMLS projected to only one of the cortical injection sites tested. When two callosal neuron types were labeled in the same area, no double-labeled neurons were found. When ipsilateral corticocortical and callosal neurons were labeled in combination, a few double-labeled neurons were found in both cortical regions examined. The most common type of double- labeled neuron was located in area PMLS and projected bilaterally to the area 17/18 border region. Our findings regarding the laminar distributions of ipsi- and contralaterally projecting neurons are in agreement with previous studies. In addition, we have found that, for callosal neurons within the upper layers of areas 17 and 18, neurons projecting to the contralateral area 17/18 border are located in the lower half of layer II/III and in upper layer IV, whereas neurons projecting to contralateral area PMLS are restricted to the lower portion of layer II/III. In addition, for callosal neurons within the deep layers of area PMLS, neurons projecting to contralateral area PMLS are located throughout layers V and VI, whereas neurons projecting to the contralateral area 17/18 border are restricted to layer VI. There are numerous other possible targets for axon collaterals not examined in this paper. However, the scarcity of neurons with multiple projections demonstrated in this study reflects the high degree of specificity of cortical connectivity. This anatomical organization may be the basis for a precise channeling of differential information at the single neuron level.
机译:使用逆行荧光示踪剂Fast Blue和Diamidino Yellow,我们研究了猫的17/18边界区域与后外侧外侧上睑外侧视觉区域(PMLS)之间的os和同侧皮层皮质连接,以及这些区域中每个区域的call连接其对侧同系物。主要目标是确定单个皮层神经元是否带有分支轴突投射到多个皮层目标。此外,双重标记技术使我们能够在皮质组织的单个切片中检查具有不同皮质靶标的神经元的相对分布。在17/18边界区域和PMLS区域标记的大多数皮层神经元仅投射到测试的皮层注射部位之一。当在同一区域标记两种call神经元类型时,未发现双标记神经元。当同侧皮层皮质和call神经元联合标记时,在所检查的两个皮质区域中都发现了一些双重标记的神经元。最常见的双标记神经元类型位于PMLS区域,并双向投影到17/18边界区域。我们关于同侧和对侧投射神经元的层状分布的发现与以前的研究一致。此外,我们发现,对于区域17和18上层内的call神经元,投射到对侧区域17/18边界的神经元位于层II / III的下半部分和上层IV,而神经元投影到对侧区域的PMLS限于II / III层的下部。此外,对于区域PMLS深层内的call神经元,投射到对侧区域PMLS的神经元遍及V和VI层,而投射到对侧区域17/18边界的神经元则限于VI层。本文未检查的轴突抵押品还有许多其他可能的目标。然而,这项研究中证明的具有多个投影的神经元的稀缺反映了皮质连接的高度特异性。这种解剖组织可能是在单个神经元水平上精确传递差异信息的基础。

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