首页> 美国卫生研究院文献>Journal of Healthcare Engineering >Feasibility of Using a Novel 2.45 GHz Double Short Distance Slot Coaxial Antenna for Minimally Invasive Cancer Breast Microwave Ablation Therapy: Computational Model Phantom and In Vivo Swine Experimentation
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Feasibility of Using a Novel 2.45 GHz Double Short Distance Slot Coaxial Antenna for Minimally Invasive Cancer Breast Microwave Ablation Therapy: Computational Model Phantom and In Vivo Swine Experimentation

机译:使用新型2.45 GHz双短距离缝隙同轴天线进行微创乳腺癌微波消融治疗的可行性:计算模型幻影和体内猪实验

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摘要

Microwave ablation (MWA) by using coaxial antennas is a promising alternative for breast cancer treatment. A double short distance slot coaxial antenna as a newly optimized applicator for minimally invasive treatment of breast cancer is proposed. To validate and to analyze the feasibility of using this method in clinical treatment, a computational model, phantom, and breast swine in vivo experimentation were carried out, by using four microwave powers (50 W, 30 W, 20 W, and 10 W). The finite element method (FEM) was used to develop the computational model. Phantom experimentation was carried out in breast phantom. The in vivo experimentation was carried out in a 90 kg swine sow. Tissue damage was estimated by comparing control and treated micrographs of the porcine mammary gland samples. The coaxial slot antenna was inserted in swine breast glands by using image-guided ultrasound. In all cases, modeling, in vivo and phantom experimentation, and ablation temperatures (above 60°C) were reached. The in vivo experiments suggest that this new MWA applicator could be successfully used to eliminate precise and small areas of tissue (around 20–30 mm2). By modulating the power and time applied, it may be possible to increase/decrease the ablation area.
机译:通过使用同轴天线进行微波消融(MWA)是治疗乳腺癌的有前途的替代方法。提出了一种双短距离缝隙同轴天线作为一种针对乳腺癌的微创治疗的最新优化应用器。为了验证并分析此方法在临床治疗中的可行性,使用四种微波功率(50 W,30 W,20 W和10 W)进行了计算模型,体模和乳猪体内实验。 。使用有限元方法(FEM)来开发计算模型。在乳房幻影中进行了幻影实验。体内实验是在90kg的猪母猪中进行的。通过比较猪乳腺样品的对照和处理显微照片,估计组织损伤。通过使用图像引导超声将同轴缝隙天线插入猪乳腺。在所有情况下,均达到了建模,体内和体模实验以及消融温度(高于60°C)的要求。体内实验表明,这种新型的MWA涂抹器可成功用于消除组织的细小区域(约20–30 mm 2 )。通过调制施加的功率和时间,可以增加/减少消融面积。

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