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NUMERICAL ANALYSIS OF FERROMAGNETIC EMBOLISATION HYPERTHERMIA FOR LIVER TUMOUR THERAPY

机译:肝肿瘤疗法铁磁性栓塞热疗的数值分析

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The majority of patients with primary or secondary liver cancer have inoperable disease and a poor prognosis [7]. The generally low response rates and side effects of established therapies have motivated the development of ferromagnetic embolisation hyperthermia (FEH) as a potential treatment for liver cancer [14]. FEH involves delivering magnetic microspheres via arterial infusion to embolise the tumour's peripheral vasculature [2]. When exposed to a high frequency magnetic field the microspheres generate heat. The enhanced concentration of microspheres in the rim ensures preferential heating of the tumour while sparing the normal liver tissue. This paper presents results of numerical analysis of FEH which aim to support experimental data, predict temperature distributions, and provide insight into parametric variations such as microsphere dose and tumour size. Results indicate that heating a tumour via heat sources distributed around its periphery rather than throughout its volume creates a homogeneous temperature distribution in the tumour. Larger tumours display a superior heating rate and produce higher steady state temperatures than smaller tumours. These results encourage further development of FEH as a clinical treatment alternative for liver cancer patients.
机译:大多数患有初级或继发性肝癌的患者疾病不可操作,预测不良[7]。既定疗法的常压率和副作用促进了铁磁栓塞热疗(FEH)作为肝癌的潜在治疗的发展[14]。 FEH涉及通过动脉输注提供磁性微球,以栓塞肿瘤的外周脉管系统[2]。当暴露于高频磁场时,微球产生热量。 RIM中的微球的增强浓度可确保肿瘤的优先加热,同时保留正常的肝脏组织。本文介绍了FEH的数值分析的结果,其旨在支持实验数据,预测温度分布,并提供对诸如微球剂量和肿瘤大小的参数变化的见解。结果表明,通过围绕其周边的热源而不是整个体积的热源加热肿瘤在肿瘤中产生均匀的温度分布。较大的肿瘤显示出优异的加热速率并产生比较小的肿瘤更高的稳态温度。这些结果鼓励FEH的进一步发展,作为肝癌患者的临床治疗替代品。

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