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人类脾脏中的动静脉分流

Arteriovenous shunts in the human spleen.

作者信息

Barnhart M I, Baechler C A, Lusher J M

出版信息

Am J Hematol. 1976;1(1):105-14. doi: 10.1002/ajh.2830010112.

Abstract

The mission of this study was to determine whether or not arteriovenous connections, indicative of a "closed" type of circulation, existed in the human spleen. Spleens from four patients requiring therapeutic splenectomy were the basis for this report. Scanning electron microscopy of plastic corrosion casts, prepared from these four spleens, revealed direct vascular conduits between splenic pulp arteries or arterial capillaries and the venous sinuses in the red pulp. Also demonstrated were a few arteriovenous shunts between pulp arteries or arterial capillaries and pulp or trabecular veins. Inclusion of sized microspheres in low-viscosity perfusion plastic illustrated that some diameters of the connecting shunts were 7-10 mum, with other shunts even smaller. Not only do arteriovenous connections exist in human spleens, but their frequency, as revealed by methods accentuating three-dimensional aspects of the splenic microcirculation, justify future reconsiderations of the functional significance of this closed type of circulation. Examination of samples of the same intact spleens, prepared by freeze-fracture and conventional critical-point drying, also revealed an "open" type circulation structure, namely, pore-patterned sinus walls that could facilitate blood cell movement from pulp cords into venous sinuses. Scanning electron microscopy thus has provided direct evidence that human spleens have both "open" and "closed" circulatory pathways in their microvasculature.

摘要

本研究的目的是确定人体脾脏中是否存在动静脉连接,这种连接表明存在一种“封闭”型循环。本报告以4例需要进行治疗性脾切除术的患者的脾脏为基础。对这4个脾脏制作的塑料腐蚀铸型进行扫描电子显微镜检查,发现脾髓动脉或动脉毛细血管与红髓中的静脉窦之间存在直接的血管通道。还发现了一些髓动脉或动脉毛细血管与髓静脉或小梁静脉之间的动静脉分流。在低粘度灌注塑料中加入不同大小的微球表明,一些连接分流的直径为7 - 10微米,其他分流甚至更小。人体脾脏中不仅存在动静脉连接,而且通过突出脾微循环三维特征的方法显示,其出现频率使得未来有必要重新考虑这种封闭型循环的功能意义。对通过冷冻断裂和传统临界点干燥制备的相同完整脾脏样本进行检查,也发现了一种“开放”型循环结构,即有孔状的窦壁,可促进血细胞从脾索进入静脉窦。因此,扫描电子显微镜提供了直接证据,证明人体脾脏的微血管系统中同时存在“开放”和“封闭”的循环途径。

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