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Combining target coverage and hot-spot suppression into one cost function: the hot-to-cold spot quotient

机译:将目标覆盖范围和热点抑制结合成一个成本函数:热到冷的现场商

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Microwave hyperthermia treatment planning (HTP) is a multi-objective task for which several cost functions have been suggested over the years. The power distribution inside the patient, achieved by amplitude and phase steering of the applicator array, must fulfill diverse requirements. On the one hand, high and homogeneous target power deposition is required for temperature elevation. On the other, healthy tissues should not be subjected to excessive heating and hot-spots outside the target should be suppressed. To these ends, two major SAR- based indicators are currently used as cost functions in clinical HTP, albeit with slightly different meanings: the HTQ and the TC. We propose a novel cost function, termed the hot-to-cold spot quotient (HCQ), aiming at simultaneous target coverage and hot-spot suppression. We show that the HCQ yields HTP solutions that represent a good compromise between the HTQ- and TC-optimal ones for two realistic cases in both single- and multi-frequency settings.
机译:微波热疗治疗计划(HTP)是多年来提出了几个成本职能的多目标任务。患者内部的功率分布,通过涂抹器阵列的幅度和相位转向实现,必须满足多样化的要求。一方面,温度升高需要高且均匀的目标功率沉积。另一方面,应不会对健康组织进行过度加热,并且应抑制目标外的热点。对于这些目的,目前两大的基于SAR的指标在临床HTP中用作成本函数,尽管含义略有不同:HTQ和TC。我们提出了一种新的成本函数,称为热到冷的现场商(HCQ),旨在同时进行目标覆盖和热点抑制。我们表明HCQ产生了HTP解决方案,它在单频和多频设置的两个现实情况下,HTQ-and Tc-Optimal Into-Optimal Intual之间具有良好的折衷。

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