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猫背外侧膝状核的臂旁神经支配:使用示踪剂菜豆白细胞凝集素(PHA-L)的电子显微镜研究

Parabrachial innervation of the cat's dorsal lateral geniculate nucleus: an electron microscopic study using the tracer Phaseolus vulgaris leucoagglutinin (PHA-L).

作者信息

Cucchiaro J B, Uhlrich D J, Sherman S M

机构信息

Department of Neurobiology and Behavior, State University of New York, Stony Brook 11794-5230.

出版信息

J Neurosci. 1988 Dec;8(12):4576-88. doi: 10.1523/JNEUROSCI.08-12-04576.1988.

Abstract

Ascending pathways from the brain stem play a key role, generally facilitatory, in controlling the transmission of retinal information through the lateral geniculate nucleus to the visual cortex (for reviews, see Singer, 1977; Burke and Cole, 1978; Sherman and Koch, 1986). In order to characterize the morphological basis of this brain-stem control, we used the electron microscope to study synaptic terminals labeled anterogradely from injections of the tracer Phaseolus vulgaris leucoagglutinin into the parabrachial region of the brain stem. The labeled axons, which are fine and unmyelinated in our material, form conventional synaptic contacts onto both relay cells and interneurons. These connections are surprisingly selective for certain postsynaptic elements such as the dendritic shafts and appendages of relay cells and the presynaptic dendritic terminals of interneurons. That is, the morphology of contacts made from parabrachial axons varies with the specific postsynaptic profile. Even a single axon can form symmetrical contacts onto F2 terminals, which are synaptic terminals deriving from dendrites of interneurons, and dendritic shafts of relay X cells, and form asymmetrical contacts onto dendritic appendages of the same relay X cells. Reconstructions of the dendritic segments postsynaptic to the labeled terminals show that the dendritic appendages receive retinal and parabrachial input in triadic relationships with F2 terminals: a retinal or parabrachial axon contacts the F2 terminal, and the F2 terminal plus the retinal or parabrachial axon contact the dendritic appendage. This positioning of the parabrachial innervation is well suited for control of retinal transmission. Finally, the dual morphology of the parabrachial synaptic contacts suggests that their actions may differ depending on the postsynaptic target.

摘要

来自脑干的上行通路在控制视网膜信息通过外侧膝状体核向视觉皮层的传递过程中起着关键作用,通常具有易化作用(相关综述见Singer,1977;Burke和Cole,1978;Sherman和Koch,1986)。为了阐明这种脑干控制的形态学基础,我们使用电子显微镜研究了从向脑干臂旁区域注射示踪剂菜豆白细胞凝集素后顺行标记的突触终末。在我们的材料中,标记的轴突很细且无髓鞘,它们在中继细胞和中间神经元上形成常规的突触联系。这些联系对某些突触后成分具有惊人的选择性,比如中继细胞的树突干和附属物以及中间神经元的突触前树突终末。也就是说,臂旁轴突形成的突触形态会因特定的突触后结构而有所不同。即使是单个轴突也能在F2终末(源自中间神经元树突的突触终末)以及中继X细胞的树突干上形成对称突触联系,并在同一中继X细胞的树突附属物上形成不对称突触联系。对标记终末的突触后树突节段进行的重建显示,树突附属物以三联关系接收视网膜和臂旁输入:视网膜或臂旁轴突接触F2终末,而F2终末加上视网膜或臂旁轴突接触树突附属物。臂旁神经支配的这种定位非常适合控制视网膜传递。最后,臂旁突触联系的双重形态表明,它们的作用可能因突触后靶点的不同而有所差异。

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