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迷走神经背核中已鉴定的节前神经元的形态学

Morphology of identified preganglionic neurons in the dorsal motor nucleus of the vagus.

作者信息

Fox E A, Powley T L

机构信息

Laboratory of Regulatory Psychobiology, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Comp Neurol. 1992 Aug 1;322(1):79-98. doi: 10.1002/cne.903220107.

Abstract

To determine the degree of variation of neuronal morphology both within and between the subnuclei of the dorsal motor nucleus of the vagus (dmnX), structural features of the preganglionic neurons of each of the five primary subnuclei in the rat dmnX were characterized quantitatively. Each of the columnar subnuclei was separately labeled by application of the retrograde tracer fast blue to its corresponding subdiaphragmatic vagal branch. Fixed brain slices of 100 microns thickness were then prepared in coronal, sagittal, and horizontal orientations. Next, randomly selected fast blue labeled neurons (n = 1,256) were injected with Lucifer yellow, drawn with camera lucida, and digitized. For each cell, three features of the perikaryon and twelve of the dendritic tree were measured. Dorsal motor nucleus neurons with up to eight primary dendrites, 30 dendritic segments, and seventh order dendritic branches were observed. Throughout the dmnX, the dendrites of preganglionic neurons were preferentially oriented in the horizontal plane. Consistent with an organizing role for the columnar subnuclei, most dendrites remained within their column of origin. However, between 5 and 30% of the neurons in each of the columns projected dendrites into adjacent dmnX subnuclei or other brainstem nuclei, including the nucleus of the solitary tract (NTS). The cyto- and dendroarchitectural analyses revealed systematic gradations in morphology, although they did not support the idea that the dmnX was composed of multiple distinct preganglionic types. The most parsimonious interpretation of the data is that dmnX motorneurons are variants of a single prototype, with dendrites varying widely in length and degree of ramification. The extent of an individual preganglionic neuron's dendritic field was predicted by three factors: the cell's rostrocaudal position within the dmnX, its location within a transverse plane (i.e., its coronal position within or ectopic to the dmnX), and its subnucleus of origin. Neurons at rostral and midlongitudinal levels of each column had more extensive dendritic arbors than those at caudal levels. Ectopic neurons had more extensive dendritic fields than similar cells in the corresponding columns; in fact, of all vagal preganglionic neurons, ectopics had the most extensive dendritic fields. Somata and dendrites of celiac column neurons were more extensive than those of hepatic and gastric column cells. These differential regional distributions of vagal preganglionics suggest that their structure and function are correlated.

摘要

为了确定迷走神经背运动核(dmnX)各亚核内部以及之间神经元形态的变化程度,对大鼠dmnX五个主要亚核中每个亚核的节前神经元的结构特征进行了定量分析。通过向相应的膈下迷走神经分支应用逆行示踪剂快蓝,分别标记每个柱状亚核。然后制备厚度为100微米的固定脑片,分别取冠状、矢状和水平方向。接下来,随机选择快蓝标记的神经元(n = 1256),注射路西法黄,用绘图仪绘制并数字化。对于每个细胞,测量了核周体的三个特征和树突的十二个特征。观察到背运动核神经元具有多达八个初级树突、30个树突节段和七阶树突分支。在整个dmnX中,节前神经元的树突优先沿水平面方向排列。与柱状亚核的组织作用一致,大多数树突仍保留在其起源柱内。然而,每列中5%至30%的神经元将树突投射到相邻的dmnX亚核或其他脑干核,包括孤束核(NTS)。细胞和树突结构分析揭示了形态上的系统渐变,尽管它们并不支持dmnX由多种不同节前类型组成的观点。对数据最简洁的解释是,dmnX运动神经元是单一原型的变体,其树突在长度和分支程度上有很大差异。单个节前神经元树突野的范围由三个因素预测:细胞在dmnX内的头尾位置、其在横向平面内的位置(即其在dmnX内或异位的冠状位置)以及其起源亚核。每列头侧和中纵水平的神经元比尾侧水平的神经元具有更广泛的树突分支。异位神经元比相应列中的相似细胞具有更广泛的树突野;事实上,在所有迷走神经节前神经元中,异位神经元具有最广泛的树突野。腹腔柱神经元的胞体和树突比肝柱和胃柱细胞的更广泛。迷走神经节前神经元的这些不同区域分布表明它们的结构和功能是相关的。

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