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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Effect of interseed spacing, tissue perfusion, thermoseed temperatures and catheters in ferromagnetic hyperthermia: results from simulations using finite element models of thermoseeds and catheters
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Effect of interseed spacing, tissue perfusion, thermoseed temperatures and catheters in ferromagnetic hyperthermia: results from simulations using finite element models of thermoseeds and catheters

机译:铁磁热疗中种子间距,组织灌注,热种子温度和导管的影响:使用热种子和导管的有限元模型进行模拟得出的结果

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摘要

Finite element heat-transfer models of ferromagnetic thermoseeds and catheters are developed for simulating ferromagnetic hyperthermia, These models are implemented into a general purpose, finite element computer program to solve the bioheat transfer equation. The seed and catheter models are unique in that they have fewer modeling constraints than other previously developed thermal models. Simulations are conducted with a 4/spl times/4 array of seeds in a multicompartment tissue model. The heat transfer model predicts that fractions of tumor greater than 43/spl deg/C are between 8 and 40% lower when seed temperatures depend on power versus models which assume a constant seed temperature. Fractions of tumor greater than 42/spl deg/C, in simulations using seed and catheter models, are between 3.3 and 25% lower than in simulations with bare seeds. It is demonstrated that an array of seeds with Curie points of 62.6/spl deg/C heats the tumor very well over nearly all blood perfusion cases studied. In summary, results herein suggest that thermal models simulating ferromagnetic hyperthermia should consider the power-temperature dependence of seeds and include explicit models of catheters.
机译:开发了用于模拟铁磁高温的铁磁热种子和导管的有限元传热模型,并将这些模型实施到通用的有限元计算机程序中,以解决生物传热方程。种子和导管模型的独特之处在于,与其他先前开发的热模型相比,它们具有较少的建模约束。在多室组织模型中使用4 / spl次/ 4个种子阵列进行模拟。传热模型预测,与假定种子温度恒定的模型相比,当种子温度取决于功率时,大于43 / spl deg / C的肿瘤比例要低8%至40%。在使用种子和导管模型的模拟中,大于42 / spl deg / C的肿瘤分数比在裸露种子的模拟中要低3.3%至25%。结果表明,在几乎所有研究的血液灌流病例中,居里点为62.6 / spl deg / C的一系列种子都能很好地加热肿瘤。总而言之,本文的结果表明,模拟铁磁高温的热模型应考虑种子的功率-温度依赖性,并包括导管的显式模型。

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