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Influence of Blood Vessels on Temperature during High-Intensity Focused Ultrasound Hyperthermia Based on the Thermal Wave Model of Bioheat Transfer

机译:基于生物热传递热波模型的高强度聚焦超声热疗过程中血管对温度的影响

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摘要

The coupled effects of blood vessels and thermal relaxation time on temperature and thermal lesion region in biological tissue during high-intensity focused ultrasound (HIFU) hyperthermia are numerically investigated. Considering the non-Fourier behavior of heat conduction in biological tissue, the traditional Pennes bioheat equation was modified to thermal wave model of bioheat transfer (TWMBT). Consequently, a joint physical model, which combines TWMBT for tissue and energy transport equation for blood vessel, is presented to predict the evolution of temperature and the thermal lesion region. In this study, pulsatile blood flow is first introduced into numerical study of HIFU hyperthermia, and thermal relaxation time, ultrasonic focus location, blood vessel radius, and blood flow velocity are all taken into account. The results show that the thermal relaxation time plays a key role in the temperature and the thermal lesion region. Larger thermal relaxation time results in lower temperature and smaller thermal lesion region, which indicates that TWMBT leads to lower temperature and smaller thermal lesion region compared to Pennes bioheat transfer model. In addition, we found that the ultrasonic focus location and blood vessel radius significantly affected the temperature and thermal lesion region, while the heartbeat frequency and amplitude factor of pulsating blood flow as well as the average velocity of blood flow had only a slight effect.
机译:数值研究了高强度聚焦超声(HIFU)热疗过程中血管和热弛豫时间对生物组织中温度和热损伤区域的耦合影响。考虑到生物组织中导热的非傅立叶行为,将传统的Pennes生物热方程修改为生物热传递的热波模型(TWMBT)。因此,提出了一个联合的物理模型,该模型结合了用于组织的TWMBT和用于血管的能量传输方程,以预测温度和热损伤区域的演变。在这项研究中,搏动性血流首先被引入HIFU热疗的数值研究中,并且考虑了热弛豫时间,超声聚焦位置,血管半径和血流速度。结果表明,热弛豫时间在温度和热损伤区域中起关键作用。较大的热弛豫时间导致较低的温度和较小的热损伤区域,这表明与Pennes生物传热模型相比,TWMBT导致较低的温度和较小的热损伤区域。此外,我们发现超声焦点位置和血管半径显着影响温度和热损伤区域,而脉动血流的心跳频率和幅度因子以及平均血流速度仅影响很小。

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