Time-domain solution of the temperature increase induced by diagnostic ultrasound

M. Goueygou, J.G. Harris, W. O’Brien
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引用次数: 1

Abstract

Presents a complete time-domain solution to estimate the temperature increase induced by pulsed ultrasonic fields, such as those used in diagnostic applications. The authors' computational model includes 3 steps: (1) calculation of the acoustic field, (2) of the rate of heat generation and (3) of the temperature distribution. For step 1 and 3, the acoustic and thermal fields are computed by integrating the known acoustic and thermal Green functions of the homogenous medium, respectively, over the surface of the transducer and over the volume of interest. For step 2, the authors derive a new expression for the instantaneous rate of heat generation. Previous expressions gave only the average rate of heat for a single frequency excitation. The authors finally present computational results of the temperature increase induced by a point source and by a circular focused transducer.
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诊断超声引起的温度升高的时域解
给出了一个完整的时域解来估计由脉冲超声场引起的温度升高,例如用于诊断应用。作者的计算模型包括3个步骤:(1)计算声场,(2)计算产热率,(3)计算温度分布。对于第1步和第3步,分别在换能器表面和感兴趣的体积上对已知的均匀介质的声和热格林函数进行积分,从而计算声和热场。对于第二步,作者推导出了瞬时产热速率的新表达式。以前的表达式只给出了单频激励下的平均热速率。最后给出了点源和圆形聚焦换能器引起的温度升高的计算结果。
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