SPACES: Our team's experience in lung tumor microwave ablation

低温消融 微波消融 烧蚀 医学 射频消融术 肺癌 放射科 烧蚀区 阶段(地层学) 外科 医学物理学 肿瘤科 内科学 古生物学 生物
作者
Xin Ye,Zhigang Wei,Xia Yang,Jing Wu,Peng Zhang,Guanghui Huang,Yang Ni,Guoliang Xue
出处
期刊:Journal of Cancer Research and Therapeutics 卷期号:19 (1): 1-13 被引量:10
标识
DOI:10.4103/jcrt.jcrt_70_23
摘要

The standard treatment of stage I nonsmall cell lung cancer is lobectomy with systematic mediastinal lymph node evaluation. Unfortunately, up to 25% of patients with stage I nonsmall cell lung cancer are not candidates for surgery due to severe medical comorbidities (poor cardiopulmonary function). Image-guided thermal ablation is an alternative for those patients, includes radiofrequency ablation, microwave ablation (MWA), cryoablation, and laser ablation. Compared to them, MWA is a relatively new technique with some potential advantages, such as faster heating times, higher intralesional temperatures, larger ablation zones, less procedural pain, relative insensitivity to "heat sinks," and less sensitivity to tissue types. However, some advantages of MWA mentioned above (such as higher intralesional temperatures, larger ablation zones) also have potential risks and problems, and an innovative and standardized guidance system is needed to avoid and solve these risks and problems. This article combs our team's clinical experience over the past decade, summarizes a systematic and standardized guidance system, and names it SPACES (Selection, Procedure, Assessment, Complication, Evaluation, Systemic therapy). Both primary and metastatic pulmonary tumors can be efficiently treated with image-guided thermal ablation in selected candidates. The selection and use of ablation techniques should consider the size and location of the target tumor, the risk of complications, and the expertise and skills of the professionals, among which the size of the target tumor (<3 mm) is a major factor determining the success of ablation.

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