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首页> 外文期刊>The Journal of the Acoustical Society of America >Experimental validation of a tractable numerical model for focused ultrasound heating in flow-through tissue phantoms
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Experimental validation of a tractable numerical model for focused ultrasound heating in flow-through tissue phantoms

机译:在流经组织体模中聚焦超声加热的易处理数值模型的实验验证

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摘要

Heating from high intensity focused ultrasound (HIFU) can be used to control bleeding, both from individual blood vessels as well as from gross damage to the capillary bed. The presence of vascularity can limit one's ability to elevate the temperature owing to convective heat transport. In an effort to better understand the heating process in tissues with vascular structure we have developed a numerical simulation that couples models for ultrasound propagation, acoustic streaming, ultrasound heating and blood cooling in a Newtonian viscous medium. The 3-D simulation allows for the study of complicated biological structures and insonation geometries. We have also undertaken a series of in vitro experiments employing non-uniform flow-through tissue phantoms and designed to provide verification of the model predictions. We show that blood flow of 2 cm/s (6.4 ml/min through a 2.6 mm 'vessel') can reduce peak temperature in a vessel wall by 25%. We also show that HIFU intensities of 6.5X 10(5) W/m(2) can induce acoustic streaming with peak velocities up to 5 cm/s and this can reduce heating near a vessel wall by more than 10%. These results demonstrate that convective cooling is important in HIFU and can be accounted for within simulation models. (C) 2004 Acoustical Society of America.
机译:高强度聚焦超声(HIFU)产生的热量可用于控制出血,无论是单个血管还是毛细血管床的严重损伤。由于对流热传递,血管的存在会限制人升高温度的能力。为了更好地理解具有血管结构的组织中的加热过程,我们开发了一种数值模拟,将牛顿粘性介质中的超声传播,声流,超声加热和血液冷却模型耦合在一起。 3-D模拟可以研究复杂的生物结构和声波几何形状。我们还进行了一系列使用非均匀流通组织体模的体外实验,旨在提供对模型预测的验证。我们显示2 cm / s的血液流量(通过2.6 mm的“血管”通过6.4 ml / min)可以使血管壁的峰值温度降低25%。我们还显示6.5 X 10(5)W / m(2)的HIFU强度可以诱导声流,其峰值速度高达5 cm / s,这可以减少靠近容器壁的热量超过10%。这些结果表明,对流冷却在HIFU中很重要,可以在仿真模型中说明。 (C)2004年美国声学学会。

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