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大鼠视觉皮层中皮质顶盖和皮质顶盖前投射神经元的电生理学、形态学和功能之间的相关性

Correlation of electrophysiology, morphology, and functions in corticotectal and corticopretectal projection neurons in rat visual cortex.

作者信息

Rumberger A, Schmidt M, Lohmann H, Hoffmann K P

机构信息

Ruhr-Universität Bochum, Department of General Zoology and Neurobiology, Germany.

出版信息

Exp Brain Res. 1998 Apr;119(3):375-90. doi: 10.1007/s002210050353.

Abstract

In most mammals the superior colliculus (SC) and the pretectal nucleus of the optic tract (NOT) receive direct input from the ipsilateral visual cortex via projection neurons from infragranular layer V. We examined whether these projection neurons belong to different populations and, if so, whether it is possible to correlate the electrophysiological features with the suggested function of these neurons. Projection cells were retrogradely labeled in vivo by rhodamine-coupled latex beads or fast blue injections into the SC or the NOT 2-5 days prior to the electrophysiological experiment. Intracellular recordings of prelabeled neurons were made from standard slice preparations and cells were filled with biocytin in order to reveal their morphology. Both cell populations consist of layer V pyramids with long apical dendrites that form terminal tufts in layer I. In electrophysiological terms, 12 of the corticotectal cells could be classified as intrinsically bursting (IB), while two neurons showed a doublet firing characteristic and one neuron was classified as regular-spiking (RS). Intracortical microstimulation of cortical layer II/III revealed that SC-projecting neurons responded optimally to stimulation sites up to a distance of 1000 microm from the recorded cell. The morphological features of the SC-projecting cells reveal an apical dendritic tuft in layer I with a lateral extension of 300 microm, a mean spine density of 65 spines per 40 microm on the apical dendrites located in layer II/III, and a bouton density of 13 boutons per 100 microm on the intracortical axons. Sixteen NOT-projecting neurons exhibited an IB and five cells an RS characteristic. Intracortical microstimulation of cortical layer II/III showed that NOT-projecting neurons responded optimally to stimulation sites up to a distance of 1500 microm. Their morphological features consist of an apical dendritic tuft with a lateral extension of 500 microm, a mean spine density of 25 spines per 40 microm on the apical dendrites located in layer II/III, and a bouton density of 6 boutons per 100 microm on the intracortical axons. When the passive membrane parameters, responses to intracortical microstimulation in layer V, the extension of the basal dendritic field, and spine densities in layers I or V were compared between SC- and NOT-projecting cells, no differences were revealed. Differences were only consistently found in the supragranular layers, either for morphological parameters or for intracortical microstimulation. The results suggest that NOT-projecting and SC-projecting neurons, although biophysically similar, could integrate and transmit different spatial aspects of cortical visual information to their target structures.

摘要

在大多数哺乳动物中,上丘(SC)和视束前顶盖核(NOT)通过来自颗粒下层V的投射神经元接收来自同侧视皮层的直接输入。我们研究了这些投射神经元是否属于不同的群体,如果是,是否有可能将电生理特征与这些神经元的假定功能联系起来。在电生理实验前2 - 5天,通过将罗丹明偶联乳胶珠或快蓝注射到SC或NOT中,在体内对投射细胞进行逆行标记。从标准脑片制备中对预先标记的神经元进行细胞内记录,并向细胞内注入生物胞素以揭示其形态。这两个细胞群体均由具有长顶树突的V层锥体组成,这些顶树突在I层形成终末簇。在电生理方面,12个皮质 - 上丘细胞可被归类为内在爆发性(IB),而两个神经元表现出双脉冲放电特征,一个神经元被归类为规则放电(RS)。对皮质II / III层进行皮质内微刺激显示,投射到SC的神经元对距离记录细胞达1000微米的刺激位点反应最佳。投射到SC的细胞的形态特征显示,I层有一个顶树突簇,其横向延伸为300微米,位于II / III层的顶树突上平均每40微米有65个棘突,皮质内轴突上每100微米有13个突触小体。16个投射到NOT的神经元表现出IB特征,5个细胞表现出RS特征。对皮质II / III层进行皮质内微刺激表明,投射到NOT的神经元对距离达1500微米的刺激位点反应最佳。它们的形态特征包括一个横向延伸为500微米的顶树突簇,位于II / III层的顶树突上平均每40微米有25个棘突,皮质内轴突上每100微米有6个突触小体。当比较投射到SC和NOT的细胞之间的被动膜参数、对V层皮质内微刺激的反应、基底树突野的延伸以及I层或V层的棘突密度时,未发现差异。仅在颗粒上层中始终发现形态参数或皮质内微刺激方面的差异。结果表明,投射到NOT和SC的神经元虽然在生物物理特性上相似,但可能整合并向其靶结构传递皮质视觉信息的不同空间方面。

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