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Optimal Ablation Volumes Are Achieved at Submaximal Power Settings in a 2.45-GHz Microwave Ablation System

机译:在2.45 GHz微波消融系统中,在次最大功率设置下可获得最佳消融体积

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Introduction. Local ablative therapies, including microwave ablation (MWA), are common treatment modalities for in situ tumor destruction. Currently, 2.45-GHz ablation systems are gaining prominence because of the shorter application times required. The aims of this study were to determine optimal power and time to ablation volume (AbV) ratios for a new 1.8-mm-2.45-GHz antenna using ex vivo tissue models. Methods. The 1.8-mm-2.45-GHz Accu2i MWA system was employed to perform ablations in bovine liver, porcine muscle, and porcine kidney ex vivo. Whole tissues were prewarmed (35 degrees C) and multiple ablations performed at power settings of 60 to 180 W for 2- to 6-minute time intervals. Postablation, tissues were dissected, AbVs calculated, and correlations to power and time settings made. Results. Significant increases in AbV were measured between each of the time points for a constant power setting in all 3 tissues. Increasing power settings led to significant increases in AbV at power settings 140 W. However, no significant increase in AbV was obtained at power settings >140 W. Conclusions. Optimal efficiency for MWA using a new 1.8-mm-2.45-GHz system is achieved at settings of 140 W for 6 minutes in a range of ex vivo tissue and no additional benefit occurs by increasing the power setting to 180 W in these tissues.
机译:介绍。包括微波消融(MWA)在内的局部消融疗法是用于原位肿瘤破坏的常见治疗方式。当前,由于需要更短的应用时间,因此2.45 GHz消融系统正变得越来越重要。这项研究的目的是使用离体组织模型确定新型1.8mm-2.45GHz天线的最佳功率和消融体积(AbV)比。方法。使用1.8mm-2.45-GHz Accu2i MWA系统离体进行牛肝,猪肌肉和猪肾脏的消融。将整个组织预热(35摄氏度),并以60至180 W的功率设置进行2至6分钟的时间间隔多次消融。消融后,解剖组织,计算AbV,并进行功率和时间设置的相关性。结果。在所有三个组织的恒定功率设置下,在每个时间点之间均测量到AbV的显着增加。功率设置的增加导致功率设置为140 W时AbV显着增加。但是,功率设置> 140 W时,没有获得AbV显着增加。结论。在一系列离体组织中,在140 W的设置下持续6分钟,使用新的1.8mm-2.45-GHz系统获得的MWA的最佳效率,并且通过将这些组织中的功率设置增加到180 W,不会产生额外的好处。

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