Bruners Philipp
Klinik für Diagnostische und Interventionelle Radiologie, Universitätsklinik RWTH Aachen, Pauwelsstraße 30, 52074, Aachen, Deutschland.
Radiologie (Heidelb). 2023 Jul;63(7):490-496. doi: 10.1007/s00117-023-01164-1. Epub 2023 Jun 12.
Applicator-based local ablations under computed tomography (CT) guidance for the treatment of malignant tumors have found their way into clinical routine.
The basic principles of the different ablation technologies and their specific clinical field of application are described.
A comprehensive literature review regarding applicator-based ablation techniques was carried out.
Radiofrequency (RFA) and microwave ablation (MWA) represent two image-guided hyperthermal treatment modalities that have been established for the treatment of primary and secondary liver malignancies. In addition, both techniques are also applied for local ablative therapy of lung- and kidney tumors. Cryoablation is mainly used for the local ablation of T1 kidney cancer and due to its intrinsic analgetic characteristics for application in the musculoskeletal system. Nonresectable pancreatic tumors and centrally located liver malignancies can be treated with irreversible electroporation. This nonthermal ablation modality preserves the structure of the extracellular matrix including blood vessels and ducts. Technical advancements in the field of CT-guided interventions include the use of robotics, different tracking and navigation technologies and the use of augmented reality with the goal to achieve higher precision, shorter intervention time and thereby reduce radiation exposure.
Percutaneous ablation techniques under CT guidance are an essential part of interventional radiology and they are suited for local treatment of malignancies in most organ systems.
在计算机断层扫描(CT)引导下基于施源器的局部消融术已应用于恶性肿瘤治疗的临床常规操作中。
描述不同消融技术的基本原理及其特定的临床应用领域。
对基于施源器的消融技术进行了全面的文献综述。
射频消融(RFA)和微波消融(MWA)是两种已确立用于治疗原发性和继发性肝恶性肿瘤的影像引导下的热疗方式。此外,这两种技术也应用于肺和肾肿瘤的局部消融治疗。冷冻消融主要用于T1期肾癌的局部消融,因其具有内在的镇痛特性,可应用于肌肉骨骼系统。不可切除的胰腺肿瘤和位于肝脏中央的恶性肿瘤可采用不可逆电穿孔治疗。这种非热消融方式可保留包括血管和导管在内的细胞外基质结构。CT引导介入领域的技术进步包括机器人技术的应用、不同的跟踪和导航技术以及增强现实技术的应用,目的是实现更高的精度、更短的介入时间,从而减少辐射暴露。
CT引导下的经皮消融技术是介入放射学的重要组成部分,适用于大多数器官系统恶性肿瘤的局部治疗。