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机器人辅助支气管镜检查与三维荧光透视术联合用于单次手术对双侧肺部结节进行取样。

Robotic-Assisted Bronchoscopy Integrated with Three-Dimensional Fluoroscopy for Sampling Bilateral Pulmonary Nodules in a Single Procedure.

机构信息

Division of Pulmonary, Allergy, and Sleep Medicine, Mayo Clinic, Jacksonville, Florida, USA.

Department of Pulmonary Medicine and Thoracic Surgery, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Respiration. 2023;102(6):449-453. doi: 10.1159/000530234. Epub 2023 Apr 27.

Abstract

Bronchoscopic biopsy of peripheral pulmonary nodules has evolved in recent years with the emergence of new technologies such as shape-sensing robotic-assisted bronchoscopy. The use of three-dimensional (3D) fluoroscopy for intraoperative visualization of the biopsy tool in relation to the target nodule aims to overcome computed tomography-to-body divergence encountered during the procedure and allows for more accurate sampling to improve adequacy and diagnostic performance. Until recently, the robotic-assisted navigation plan and 3D imaging function as separate systems. We present a case where intraoperative 3D fluoroscopy images were integrated to the robotic bronchoscopy navigation system, resulting in a single, dynamic, real-time 3D virtual plan showing readjusted paths toward the lesion displayed in the robotic bronchoscopy navigation system, allowing in this case, biopsying two bilateral pulmonary nodules, resulting in different diagnosis within the same endoscopic procedure.

摘要

近年来,随着形状感应机器人辅助支气管镜等新技术的出现,外周肺部结节的支气管镜活检也取得了进展。术中使用三维(3D)透视术,使活检工具与目标结节之间的关系可视化,旨在克服在手术过程中遇到的计算机断层扫描到身体的发散,并允许更准确的采样以提高充足性和诊断性能。直到最近,机器人辅助导航计划和 3D 成像功能仍然是独立的系统。我们提出了一个案例,其中术中 3D 透视图像被集成到机器人支气管镜导航系统中,从而形成一个单一的、动态的、实时的 3D 虚拟计划,显示了在机器人支气管镜导航系统中显示的病变的重新调整路径,使得在这种情况下,可以对两个双侧肺结节进行活检,从而在同一内镜手术中获得不同的诊断。

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