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首页> 外文期刊>International Journal of Heat and Mass Transfer >Analysis For The Dual-phase-lag Bio-heat Transfer During Magnetic Hyperthermia Treatment
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Analysis For The Dual-phase-lag Bio-heat Transfer During Magnetic Hyperthermia Treatment

机译:磁热疗中双相滞后生物传热分析

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Magnetic fluid hyperthermia is one of hyperthermia modalities for tumor treatment. The control of temperatures is necessary and important for treatment quality. Living tissue is highly non-homogenous, and the velocity of heat transfer in it should be limited. Thus, this work analyzes the temperature rise behaviors in biological tissues during hyperthermia treatment within the dual-phase-lag model, which accounts the effect of local non-equilibrium on the thermal behavior. A small tumor surrounded by the health tissue is considered as a solid sphere. The influences of lag times, metabolic heat generation rate, blood perfusion rate, and other physiological parameters on the thermal response in tissues are investigated. While the metabolic heat generation takes little percentage of heating source, its effect on the temperature rise can be ignored. The control of the blood perfusion rate is helpful to have an ideal hyperthermia treatment. The lag times, τ_q and τ_T, affect the bio-heat transfer at the early times of heating. The total effect of τ_q and τ_T on the bio-heat transfer may be different for the same τ_T/τ_q value.
机译:磁流体热疗是用于肿瘤治疗的热疗方式之一。温度的控制对于治疗质量是必要的,也是重要的。活组织高度不均匀,因此应限制其中的热传递速度。因此,这项工作在双相滞后模型中分析了高温治疗期间生物组织中的温度升高行为,这说明了局部非平衡对热行为的影响。被健康组织包围的小肿瘤被视为实心球。研究了滞后时间,代谢热产生速率,血液灌注速率和其他生理参数对组织中热响应的影响。尽管新陈代谢产生的热量仅占热源的百分比,但其对温度升高的影响可以忽略。控制血液灌注速率有助于进行理想的高热治疗。滞后时间τ_q和τ_T影响加热初期的生物热传递。对于相同的τ_T/τ_q值,τ_q和τ_T对生物传热的总影响可能不同。

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