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实验室小鼠神经垂体血管周围间隙系统的组织与发育

Organization and development of the perivascular space system in the neurohypophysis of the laboratory mouse.

作者信息

Enemar A, Eurenius L

出版信息

Cell Tissue Res. 1979 Jun 8;199(1):99-116. doi: 10.1007/BF00237730.

DOI:10.1007/BF00237730
PMID:466700
Abstract

The organization of the system of perivascular space around the capillaries in the neurohypophysis was studied in the adult and developing laboratory mouse by the use of histological silver impregnation and electron microscopical techniques. In the median eminence short and long extensions, arising mainly from the shallow space around capillary loops of the primary plexus of the portal system, formed radiations into the adjacent neural tissue of the external zone. The tissue of the neural lobe was separable into non-vascular regions dominated by undilated portions of neurosecretory nerve fibres and pituicytes, and neurovascular regions with perivascular space extensions forming an extensive system of connections between neighbouring capillaries. In the median eminence, the system of extensions of the perivascular space was estimated to increase the neurovascular contact surface area by at least 50%, implying an increased efficiency of the organ without a notable increase of its volume. The possibility that the ramifications of the perivascular space imply an enhanced uptake rate into the bloodstream and a subsequent increased concentration of the neurohormones in the portal blood, was discussed. During development of the median eminence, differentiation of perivascular space extensions of the adult type started in the juvenile of about three weeks of age, when shallow capillary loops had been formed. In the neural lobe, perivascular space ramifications were already present when the internal capillaries were formed and were fairly frequent in ten-day young. At the age of three to four weeks the organization of the system was similar to that of the adult animal.

摘要

利用组织学银浸染和电子显微镜技术,对成年和发育中的实验室小鼠神经垂体中毛细血管周围血管周隙系统的组织结构进行了研究。在正中隆起处,主要源自门脉系统初级丛毛细血管袢周围浅隙的长短延伸,形成了向外侧区相邻神经组织的放射状结构。神经叶组织可分为以神经分泌神经纤维和垂体细胞未扩张部分为主的非血管区域,以及血管周隙延伸形成相邻毛细血管间广泛连接系统的神经血管区域。在正中隆起处,血管周隙延伸系统估计使神经血管接触表面积增加了至少50%,这意味着该器官在体积没有显著增加的情况下效率提高。文中讨论了血管周隙分支意味着神经激素进入血流的摄取率提高以及随后门脉血中神经激素浓度增加的可能性。在正中隆起发育过程中,成年型血管周隙延伸的分化在约三周龄的幼鼠中开始,此时已形成浅毛细血管袢。在神经叶中,内部毛细血管形成时血管周隙分支就已存在,在十日龄幼鼠中相当常见。在三到四周龄时,该系统的组织结构与成年动物相似。

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AN ELECTRON MICROSCOPICAL STUDY OF THE HUMAN NEUROPHYPOPHYSIS.人类神经垂体的电子显微镜研究
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Ultrastructure of the rabbit neurohypophysis with special reference to the release of hormones.兔神经垂体的超微结构,特别涉及激素的释放
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Electron microscopic observations of neurosecretory granules, nerve and glial fibers, and blood vessels in the median eminence of the rabbit.兔正中隆起处神经分泌颗粒、神经和胶质纤维以及血管的电子显微镜观察。
Am J Anat. 1965 Sep;117(2):251-86. doi: 10.1002/aja.1001170207.
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A comparative study of the ultrastructure of the median eminence, infundiblar stem and neural lobe of the hypophysis of the rat.大鼠垂体正中隆起、漏斗干和神经叶超微结构的比较研究。
Z Zellforsch Mikrosk Anat. 1967;76(3):405-32. doi: 10.1007/BF00339297.
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Ultrastructural features of the developing hypothalamo-hypophysial axis in the rat. A correlative study.大鼠下丘脑-垂体轴发育的超微结构特征。一项相关性研究。
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[Ultrastructure of the median eminence of the duck Anas platyrhynchos].[鸭(绿头鸭)正中隆起的超微结构]
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