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经脉络膜入路至第三脑室:脉络膜裂的解剖学研究及其临床应用

Transchoroidal approach to the third ventricle: an anatomic study of the choroidal fissure and its clinical application.

作者信息

Wen H T, Rhoton A L, de Oliveira E

机构信息

Neurological Institute of São Paulo, University of São Paulo, Brazil.

出版信息

Neurosurgery. 1998 Jun;42(6):1205-17; discussion 1217-9. doi: 10.1097/00006123-199806000-00001.

Abstract

OBJECTIVE

We review the anatomic features of the lateral ventricle, the foramen of Monro, the third ventricle, and the choroidal fissure, and we describe the transchoroidal approach to the third ventricle. This approach consists of opening the taenia fornicis of the choroidal fissure in the body of the lateral ventricle and approaching the third ventricle between the two internal cerebral veins. This route allows further posterior enlargement of the foramen of Monro without sacrificing any neural structures. When necessary, the anterior septal vein can be sacrificed.

METHODS

Twenty adult cadaveric brains and four adult cadaveric heads were studied, using a magnification ranging from 3 times to 40 times, after perfusion of the arteries and veins with colored latex.

RESULTS

The choroidal fissure is a natural cleft between the thalamus and the fornix, and it is identified by following the choroid plexus in the lateral ventricle. The choroid plexus in the body of the lateral ventricle originates from the tela choroidea of the roof of the third ventricle and is apparently attached to the fornix by the taenia fornicis and to the thalamus by the taenia choroidea. The taenia is actually the ependyma that covers the internal wall of the ventricular cavity and the choroid plexus.

CONCLUSION

An understanding of the choroidal fissure is fundamental for use of the transchoroidal approach. Unlike transforaminal, subchoroidal, subforniceal, and interforniceal approaches to the third ventricle, which sacrifice some neural or vascular structures, the transchoroidal approach follows a natural route, and certainly it is one of the options to be considered when entry into the third ventricle is required.

摘要

目的

我们回顾侧脑室、室间孔、第三脑室及脉络膜裂的解剖学特征,并描述经脉络膜入路至第三脑室的方法。该入路由打开侧脑室体部脉络膜裂的穹窿带并在两条大脑内静脉之间接近第三脑室组成。此路径可在不牺牲任何神经结构的情况下进一步向后扩大室间孔。必要时,可牺牲前隔静脉。

方法

在向动脉和静脉灌注有色乳胶后,使用3倍至40倍的放大倍数对20个成人尸体脑和4个成人尸体头部进行研究。

结果

脉络膜裂是丘脑与穹窿之间的天然裂隙,可通过追踪侧脑室内的脉络丛来识别。侧脑室体部的脉络丛起源于第三脑室顶的脉络组织,显然通过穹窿带附着于穹窿,通过脉络带附着于丘脑。该带实际上是覆盖脑室腔内壁和脉络丛的室管膜。

结论

了解脉络膜裂是使用经脉络膜入路的基础。与经室间孔、脉络膜下、穹窿下和穹窿间入路至第三脑室不同,后者会牺牲一些神经或血管结构,经脉络膜入路遵循天然路径,当然它是在需要进入第三脑室时应考虑的选择之一。

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