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Numerical analysis of coupled effects of pulsatile blood flow and thermal relaxation time during thermal therapy

机译:热疗过程中脉动血流与热弛豫时间耦合效应的数值分析

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The main purpose of this study is to investigate the coupled effects of the pulsatile blood flow in thermally significant blood vessels and the thermal relaxation time in living tissues on temperature distributions during thermal treatments. Considering the fact that propagation speed of heat transfer in solid tissues is actually finite according to experiments, the traditional Pennes bioheat transfer equation (PBTE) was modified to a wave bioheat transfer equation (WBTE) that contains both wave transportation and diffusion competing with each other and characterized by the thermal relaxation time. The wave behavior will be more dominant when the relaxation time is large. WBTE together with a coupled energy transport equation for blood vessel flow was used to describe the temperature evolution of our current tumor-blood vessel system, and the equations were numerically solved by the highly accurate multi-block Chebyshev pseudospectral method. Numerical results showed that temperature evolution from WBTE was quite different from their counterparts from PBTE due to the dominant wave feature under large relaxation time. For example, larger relaxation time would preserve high temperature longer and this effect is even more pronounced when heating is fast. It further implies that heat is drained more slowly when relaxation time is large, and would make thermal lesion region cover the tumor tissue, the heating target, better. This phenomenon would therefore hint that the traditional PBTE simulations might under-estimate the thermal dose exerted on tumor. As to the pulsation frequency of blood flow from heart beat which was originally predicted to be important here, it turned out that the thermal behavior is quite insensitive to pulsation frequency in the current study.
机译:这项研究的主要目的是研究热治疗过程中重要脉管中脉动血流和活组织中热弛豫时间对温度分布的耦合作用。考虑到根据实验,固体组织中传热的传播速度实际上是有限的,因此将传统的Pennes生物传热方程(PBTE)修改为包含生物传递和扩散竞争的波浪生物传热方程(WBTE)。并以热弛豫时间为特征。当弛豫时间较大时,波浪行为将更为明显。 WBTE连同耦合的用于血管流动的能量传输方程式被用来描述我们当前的肿瘤-血液系统的温度变化,并且该方程式是通过高精度的多块Chebyshev伪谱方法进行数值求解的。数值结果表明,由于大弛豫时间下的主导波特征,WBTE的温度演化与PBTE的演化完全不同。例如,较长的松弛时间将使高温保存的时间更长,而加热速度快时,这种效果会更加明显。这还意味着,当松弛时间较长时,热量释放的速度会更慢,并使热损伤区域更好地覆盖肿瘤组织(加热目标)。因此,该现象将暗示传统的PBTE模拟可能会低估施加在肿瘤上的热剂量。关于最初被认为在这里很重要的心跳引起的血流的脉动频率,事实证明,在当前的研究中,热行为对脉动频率非常不敏感。

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