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小鼠、豚鼠、兔子和绵羊肠神经节中神经元和神经胶质细胞的大小。

Size of neurons and glial cells in the enteric ganglia of mice, guinea-pigs, rabbits and sheep.

作者信息

Gabella G, Trigg P

出版信息

J Neurocytol. 1984 Feb;13(1):49-71. doi: 10.1007/BF01148318.

Abstract

A quantitative light microscopic study has been carried out on the myenteric and submucosal ganglia of the stomach, duodenum, ileum, proximal colon and rectum of the guinea-pig; the enteric ganglia of the ileum were studied also in the mouse, rabbit and sheep. The area of the profiles of nerve cells, of nerve cell nuclei and of glial nuclei, and the proportion of the area of ganglia occupied by neuropil were measured, and the relative numbers of neurons and glial cells were estimated. The myenteric ganglia were found to be firmly anchored to the stroma of the muscle coat; their shape and the shape of their component cells varied with contraction and distension of the musculature. The range of neuronal sizes in the myenteric ganglia was extremely wide. In the guinea-pig, the myenteric neurons were on average largest in the stomach and duodenum and smallest in the ileum, with intermediate values in the colon and rectum; the submucosal neurons showed little variation in average size along the length of the gut. The average size of ganglion neurons in the ileum was greatest in the sheep and smallest in the mouse, and had intermediate values in the guinea-pig and rabbit. The percentage volume of neuropil in the myenteric ganglia was 51% in the mouse, 65% in the guinea-pig, 70% in the rabbit, and 74% in the sheep. The number of glial cells relative to the number of neurons was also ranked in the same order. In all the species examined the submucosal ganglia, when compared with the corresponding myenteric ganglia, had a smaller percentage volume of neuropil, a much smaller number of glial cells and (except in the mouse ileum) neurons of smaller average size. In all the ganglia there was a positive correlation between size of neurons and size of glial cells. The results are discussed in the light of possible relations between body size (and length of the intestine), numerical density of ganglion neurons, average size of neurons, amount of musculature, average distance between neurons, and amount of neuropil.

摘要

对豚鼠胃、十二指肠、回肠、近端结肠和直肠的肌间神经节和黏膜下神经节进行了定量光镜研究;还对小鼠、兔子和绵羊的回肠肠神经节进行了研究。测量了神经细胞、神经细胞核和神经胶质细胞核轮廓的面积,以及神经毡占据神经节的面积比例,并估计了神经元和神经胶质细胞的相对数量。发现肌间神经节牢固地附着于肌层的基质;它们的形状及其组成细胞的形状随肌肉组织的收缩和扩张而变化。肌间神经节中神经元大小的范围非常广泛。在豚鼠中,肌间神经元平均在胃和十二指肠中最大,在回肠中最小,在结肠和直肠中为中间值;黏膜下神经元的平均大小沿肠道长度变化不大。回肠神经节神经元的平均大小在绵羊中最大,在小鼠中最小,在豚鼠和兔子中为中间值。肌间神经节中神经毡的体积百分比在小鼠中为51%,在豚鼠中为65%,在兔子中为70%,在绵羊中为74%。神经胶质细胞与神经元数量的比例也按相同顺序排列。在所有检查的物种中,与相应的肌间神经节相比,黏膜下神经节的神经毡体积百分比更小,神经胶质细胞数量少得多,并且(小鼠回肠除外)平均大小的神经元更小。在所有神经节中,神经元大小与神经胶质细胞大小之间存在正相关。根据体型(和肠道长度)、神经节神经元的数量密度、神经元的平均大小、肌肉组织量、神经元之间的平均距离以及神经毡量之间可能的关系对结果进行了讨论。

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