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盆腔神经节和子宫颈旁神经节的形态学与神经化学

Morphology and neurochemistry of the pelvic, and paracervical ganglia.

作者信息

Mitchell B S

机构信息

Faculty of Medicine, Southampton, England.

出版信息

Histol Histopathol. 1993 Oct;8(4):761-73.

PMID:7508306
Abstract

Autonomic ganglia are relays in the distribution of nerve fibres in the peripheral nervous system. In the pelvis there are local ganglion formations in the pathway of nerve fibres to and from pelvic viscera and vasculature: in rodents these are the male anterior major pelvic ganglion and the female paracervical ganglion (Frankenhäuser's ganglion). They are unusual in that they contain both sympathetic and parasympathetic ganglion cells. Homologous formations occur in humans. Since the best studied examples of these ganglionic formations are rodent ganglia the latter are reviewed in terms of their gross anatomy, cell morphology and immunohistochemistry. The synaptology, and neurotransmitter and neuropeptide contents of the neuronal perikarya and nerve terminals, of the ganglia are discussed in relation to the concepts of coexistence and chemical coding in autonomic ganglia in general. The neuropeptide content of the nerve fibres projecting to their visceral targets is described and discussed in functional terms. Conclusions are drawn with respect to the contributions made by study of these ganglia to further understanding of the organisation of the autonomic nervous system in general. The possible link between the autonomic nervous system and the endocrine system is discussed with respect to control of pelvic visceral activities.

摘要

自主神经节是周围神经系统中神经纤维分布的中继站。在盆腔中,神经纤维进出盆腔脏器和血管的路径上存在局部神经节结构:在啮齿动物中,这些结构是雄性的前主盆腔神经节和雌性的子宫颈旁神经节(弗兰克豪泽神经节)。它们的不同寻常之处在于同时包含交感神经节细胞和副交感神经节细胞。人类也存在同源结构。由于这些神经节结构中研究得最充分的例子是啮齿动物的神经节,因此将从大体解剖学、细胞形态学和免疫组织化学方面对后者进行综述。结合自主神经节中一般的共存和化学编码概念,讨论了这些神经节的突触学、神经细胞体和神经末梢的神经递质及神经肽含量。描述并从功能角度讨论了投射到其内脏靶标的神经纤维的神经肽含量。得出了关于研究这些神经节对进一步理解整个自主神经系统组织所做贡献的结论。就盆腔内脏活动的控制而言,讨论了自主神经系统与内分泌系统之间可能的联系。

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