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融合图像在前脉络膜动脉解剖变异术前评估中的效能

[Efficacy of fusion image for the preoperative assessment of anatomical variation of the anterior choroidal artery].

作者信息

Aoki Yasuko, Endo Hidenori, Niizuma Kuniyasu, Inoue Takashi, Shimizu Hiroaki, Tominaga Teiji

机构信息

Department of Neurosurgery, Kohnan Hospital.

出版信息

No Shinkei Geka. 2013 Dec;41(12):1075-80.

Abstract

We report two cases with internal carotid artery(ICA)aneurysms, in which fusion image effectively indicated the anatomical variations of the anterior choroidal artery (AchoA). Fusion image was obtained using fusion application software (Integrated Registration, Advantage Workstation VS4, GE Healthcare). When the artery passed through the choroidal fissure, it was diagnosed as AchoA. Case 1 had an aneurysm at the left ICA. Left internal carotid angiography (ICAG) showed that an artery arising from the aneurysmal neck supplied the medial occipital lobe. Fusion image showed that this artery had a branch passing through the choroidal fissure, which was diagnosed as hyperplastic AchoA. Case 2 had an aneurysm at the supraclinoid segment of the right ICA. AchoA or posterior communicating artery (PcomA) were not detected by the right ICAG. Fusion image obtained from 3D vertebral angiography (VAG) and MRI showed that the right AchoA arose from the right PcomA. Fusion image obtained from the right ICAG and the left VAG suggested that the aneurysm was located on the ICA where the PcomA regressed. Fusion image is an effective tool for assessing anatomical variations of AchoA. The present method is simple and quick for obtaining a fusion image that can be used in a real-time clinical setting.

摘要

我们报告了两例颈内动脉(ICA)动脉瘤病例,其中融合图像有效地显示了脉络膜前动脉(AchoA)的解剖变异。融合图像是使用融合应用软件(Integrated Registration,Advantage Workstation VS4,GE Healthcare)获得的。当动脉穿过脉络膜裂时,被诊断为AchoA。病例1左侧ICA有一个动脉瘤。左侧颈内动脉血管造影(ICAG)显示,动脉瘤颈部发出的一条动脉供应枕叶内侧。融合图像显示,这条动脉有一个分支穿过脉络膜裂,被诊断为增生性AchoA。病例2右侧ICA鞍上段有一个动脉瘤。右侧ICAG未检测到AchoA或后交通动脉(PcomA)。从三维椎动脉血管造影(VAG)和MRI获得的融合图像显示,右侧AchoA起源于右侧PcomA。从右侧ICAG和左侧VAG获得的融合图像表明,动脉瘤位于PcomA退化的ICA上。融合图像是评估AchoA解剖变异的有效工具。本方法简单快速,可获得可用于实时临床环境的融合图像。

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