Meloni Maria Franca, Chiang Jason, Laeseke Paul F, Dietrich Christoph F, Sannino Angela, Solbiati Marco, Nocerino Elisabetta, Brace Christopher L, Lee Fred T
a Department of Radiology , Interventional Ultrasound, Institute of Care IGEA , Milan , Italy.
b Department of Radiology , University of Wisconsin , Madison , Wisconsin , USA.
Int J Hyperthermia. 2017 Feb;33(1):15-24. doi: 10.1080/02656736.2016.1209694. Epub 2016 Aug 2.
Thermal ablation is increasingly being utilised in the treatment of primary and metastatic liver tumours, both as curative therapy and as a bridge to transplantation. Recent advances in high-powered microwave ablation systems have allowed physicians to realise the theoretical heating advantages of microwave energy compared to other ablation modalities. As a result there is a growing body of literature detailing the effects of microwave energy on tissue heating, as well as its effect on clinical outcomes. This article will discuss the relevant physics, review current clinical outcomes and then describe the current techniques used to optimise patient care when using microwave ablation systems.
热消融越来越多地被用于原发性和转移性肝肿瘤的治疗,既作为根治性疗法,也作为移植的桥梁。高功率微波消融系统的最新进展使医生能够认识到与其他消融方式相比,微波能量在加热方面的理论优势。因此,有越来越多的文献详细阐述了微波能量对组织加热的影响及其对临床结果的影响。本文将讨论相关物理学原理,回顾当前的临床结果,然后描述在使用微波消融系统时用于优化患者护理的当前技术。