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解剖性肺段切除术的三维 CT 重建进展。

Progress in three-dimensional computed tomography reconstruction in anatomic pulmonary segmentectomy.

机构信息

Department of Thoracic Surgery, the Affiliated Hospital of Qingdao University, Qingdao, China.

出版信息

Thorac Cancer. 2022 Jul;13(13):1881-1887. doi: 10.1111/1759-7714.14443. Epub 2022 May 18.

Abstract

The number of minimally invasive surgeries, such as video-assisted thoracoscopic surgery and robot-assisted thoracoscopic surgery, has increased enormously in recent years. More and more relevant studies report that anatomic pulmonary segmentectomy has the same effect as traditional lobectomy in the surgical treatment of early stage non-small cell lung cancer (diameter less than 2.0 cm). Segmentectomy requires sufficient knowledge of the location of the pulmonary nodules, as well as the anatomy of the target segments, blood vessels, and bronchi. With the rapid development of imaging technology and three-dimensional technology, three-dimensional reconstruction has been widely used in the medical field. It can effectively assess the vascular branching patterns, discover the anatomic variations of the blood vessels and bronchi, determine the location of the lesion, and clarify the division of the segments. Therefore, it is helpful for preoperative positioning, surgical planning, preoperative simulation and intraoperative navigation, and provides a reference for formulating an individualized surgical plan. It therefore plays a positive role in anatomic pulmonary segmentectomy. This study reviews the progress made in three-dimensional computed tomography reconstruction in anatomic pulmonary segmentectomy.

摘要

近年来,微创手术(如电视辅助胸腔镜手术和机器人辅助胸腔镜手术)的数量大幅增加。越来越多的相关研究报告表明,解剖性肺段切除术在早期非小细胞肺癌(直径小于 2.0cm)的手术治疗中与传统的肺叶切除术具有相同的效果。段切除术需要对肺结节的位置以及目标段、血管和支气管的解剖结构有充分的了解。随着影像学技术和三维技术的快速发展,三维重建已广泛应用于医学领域。它可以有效地评估血管分支模式,发现血管和支气管的解剖变异,确定病变位置,并明确段的划分。因此,它有助于术前定位、手术规划、术前模拟和术中导航,并为制定个体化手术计划提供参考。因此,它对解剖性肺段切除术具有积极作用。本研究综述了三维计算机断层扫描重建在解剖性肺段切除术方面的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d6/9250838/e7353494d667/TCA-13-1881-g002.jpg

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