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脑肿瘤微波热疗:二维评估参数数值研究。

Microwave Hyperthermia of Brain Tumors: A 2D Assessment Parametric Numerical Study.

机构信息

Faculty of Biomedical Engineering, Czech Technical University in Prague, 160 00 Prague, Czech Republic.

出版信息

Sensors (Basel). 2022 Aug 16;22(16):6115. doi: 10.3390/s22166115.

Abstract

Due to the clinically proven benefit of hyperthermia treatments if added to standard cancer therapies for various tumor sites and the recent development of non-invasive temperature measurements using magnetic resonance systems, the hyperthermia community is convinced that it is a time when even patients with brain tumors could benefit from regional microwave hyperthermia, even if they are the subject of a treatment to a vital organ. The purpose of this study was to numerically analyze the ability to achieve a therapeutically relevant constructive superposition of electromagnetic (EM) waves in the treatment of hyperthermia targets within the brain. We evaluated the effect of the target size and position, operating frequency, and the number of antenna elements forming the phased array applicator on the treatment quality. In total, 10 anatomically realistic 2D human head models were considered, in which 10 circular hyperthermia targets with diameters of 20, 25, and 30 mm were examined. Additionally, applicators with 8, 12, 16, and 24 antenna elements and operating frequencies of 434, 650, 915, and 1150 MHz, respectively, were analyzed. For all scenarios considered (4800 combinations), the EM field distributions of individual antenna elements were calculated and treatment planning was performed. Their quality was evaluated using parameters applied in clinical practice, i.e., target coverage (TC) and the target to hot-spot quotient (THQ). The 12-antenna phased array system operating at 434 MHz was the best candidate among all tested systems for HT treatments of glioblastoma tumors. The 12 antenna elements met all the requirements to cover the entire target area; an additional increase in the number of antenna elements did not have a significant effect on the treatment quality.

摘要

由于在各种肿瘤部位的标准癌症治疗中添加热疗治疗具有临床证明的益处,以及最近开发出使用磁共振系统进行非侵入性温度测量的技术,热疗界相信,即使对于脑瘤患者,也可以从区域性微波热疗中受益,即使他们是重要器官治疗的对象。本研究的目的是数值分析在大脑内的热疗靶区中实现电磁(EM)波治疗相关的建设性叠加的能力。我们评估了目标大小和位置、工作频率以及形成相控阵治疗器的天线元件数量对治疗质量的影响。总共考虑了 10 个解剖学上逼真的 2D 人体头部模型,其中检查了 10 个直径为 20、25 和 30mm 的圆形热疗靶区。此外,还分析了具有 8、12、16 和 24 个天线元件且工作频率分别为 434、650、915 和 1150MHz 的治疗器。对于所有考虑的情况(4800 种组合),计算了各个天线元件的电磁场分布并进行了治疗计划。使用临床实践中应用的参数评估了它们的质量,即目标覆盖率(TC)和目标至热点比(THQ)。在所有测试系统中,工作频率为 434MHz 的 12 天线相控阵系统是胶质母细胞瘤肿瘤热疗治疗的最佳候选系统。12 个天线元件满足覆盖整个目标区域的所有要求;天线元件数量的额外增加对治疗质量没有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcc6/9416291/d98142c20309/sensors-22-06115-g0A1a.jpg

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