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Exploiting Microwave Imaging Methods for Real-Time Monitoring of Thermal Ablation

机译:利用微波成像方法实时监测热消融

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Microwave thermal ablation is a cancer treatment that exploits local heating caused by a microwave electromagnetic field to induce coagulative necrosis of tumor cells. Recently, such a technique has significantly progressed in the clinical practice. However, its effectiveness would dramatically improve if paired with a noninvasive system for the real-time monitoring of the evolving dimension and shape of the thermally ablated area. In this respect, microwave imaging can be a potential candidate to monitor the overall treatment evolution in a noninvasive way, as it takes direct advantage from the dependence of the electromagnetic properties of biological tissues from temperature. This paper explores such a possibility by presenting a proof of concept validation based on accurate simulated imaging experiments, run with respect to a scenario that mimics an ex vivo experimental setup. In particular, two model-based inversion algorithms are exploited to tackle the imaging task. These methods provide independent results in real-time and their integration improves the quality of the overall tracking of the variations occurring in the target and surrounding regions.
机译:微波热消融是一种癌症治疗方法,利用微波电磁场引起的局部加热来诱导肿瘤细胞的凝集性坏死。近来,这种技术在临床实践中已取得重大进展。但是,如果与非侵入性系统配合使用以实时监控热消融区域的不断发展的尺寸和形状,其有效性将大大提高。在这方面,微波成像可能是以无创方式监测总体治疗进展的潜在候选者,因为它直接受益于生物组织的电磁特性对温度的依赖性。本文通过提出一种基于精确模拟成像实验的概念验证来探索这种可能性,该模拟实验是针对模拟离体实验设置的场景进行的。特别是,利用两种基于模型的反演算法来解决成像任务。这些方法实时提供独立的结果,它们的集成提高了对目标区域和周围区域中发生的变化进行整体​​跟踪的质量。

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