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Evaluation of Venous Structures that Are Involved in Transsylvian Approach Using 3D Rotational Venography

机译:使用 3D 旋转静脉造影评估跨外侧入路涉及的静脉结构

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摘要

In the transsylvian (TS) approach, as characterized by clipping surgery, the presurgical visualization of the superficial middle cerebral vein (SMCV) can help change the surgical approach to ensure safe microsurgery. Nevertheless, identifying preoperatively the venous structures that are involved in this approach is difficult. In this study, we investigated the venous structures that are involved in the TS approach using three-dimensional (3D) rotational venography (3D-RV) and evaluated the effectiveness of this method for presurgical simulation. Patients who underwent 3D-RV between August 2018 and June 2020 were involved in this retrospective study. The 3D-RV and partial maximum intensity projection images with a thickness of 5 mm were computationally reconstructed. The venous structures were subdivided into the following three portions according to the anatomic location: superficial, intermediate, and basal portions. In the superficial portion, predominant frontosylvian veins were observed on 31 (41%) sides, predominant temporosylvian veins on seven (9%) sides, and equivalent fronto- and temporosylvian veins on 28 (37%) sides. The veins in the intermediate (deep middle cerebral and uncal veins) and basal portions (frontobasal bridging veins) emptied into the SMCV on 57 (75%) and 34 (45%) sides, respectively. The 3D-RV images were highly representative of the venous structures observed during microsurgery. In this study, 3D-RV was utilized to capture the details of the venous structures from the superficial to the deep portions. Presurgical simulation of the venous structures that are involved in the TS approach using 3D-RV may increase the safety of microsurgical approaches.
机译:在经外侧 (TS) 入路中,以夹闭手术为特征,浅表大脑中静脉 (SMCV) 的术前可视化可以帮助改变手术方法,以确保安全的显微手术。然而,术前识别这种方法所涉及的静脉结构是困难的。在这项研究中,我们使用三维 (3D) 旋转静脉造影 (3D-RV) 调查了 TS 入路中涉及的静脉结构,并评估了该方法对术前模拟的有效性。2018 年 8 月至 2020 年 6 月期间接受 3D-RV 的患者参与了这项回顾性研究。对厚度为 5 mm 的 3D-RV 和部分最大强度投影图像进行了计算重建。静脉结构根据解剖位置细分为以下三个部分:浅、中、基部。在浅表部分,在 31 个 (41%) 侧观察到占主导地位的额外侧脉,在 7 个 (9%) 侧观察到占主导地位的颞叶脉,在 28 个 (37%) 侧观察到等效的额叶和颞叶脉。中间 (大脑中深静脉和钩股静脉) 和基底部分 (额基肌桥接静脉) 的静脉分别在 57 (75%) 和 34 (45%) 侧排空到 SMCV 中。3D-RV 图像高度代表了显微外科手术期间观察到的静脉结构。在这项研究中,3D-RV 用于捕捉从浅部到深部的静脉结构的细节。使用 3D-RV 对 TS 入路中涉及的静脉结构进行术前模拟可能会提高显微外科入路的安全性。

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