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The effects of residual temperature rise on ultrasound heating.

机译:残留温度升高对超声加热的影响。

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In recent theoretical studies, the temperature rise produced by diagnostic ultrasound was estimated by solving the Bioheat Transfer Equation (BHTE) but ignoring the initial temperature rise. The temperature rise was determined in our study by the BHTE including an initial temperature rise. We discuss how the initial temperature rise occurs during an ultrasound examination, and how the initial temperature rise affects subsequent ultrasound heating. We theoretically show that the temperature rise produced by the ultrasound examination (exposure time of 500 s) in a tissue sample having an initial temperature rise was higher than that in a tissue sample with no initial temperature rise that was exposed to ultrasound (exposure time of 1200 s). The theoretical results for these two cases were 5.64 degrees C and 3.58 degrees C, respectively. In our experimental study, the highest temperature rise was measured in the presence of an initial temperature rise as in the theoretical study under the same exposure conditions. Mean temperature rises for tissue without an initial temperature rise and for tissue with an initial temperature rise were 2.42 +/- 0.13 degrees C and 3.62 +/- 0.17 degrees C, respectively. Both theoretical and experimental studies show that unless the initial temperature rise produced by the first ultrasound examination decreases to 0 degrees C, the next ultrasound examination on the same tissue sample may cause the temperature rise to be higher than expected.
机译:在最近的理论研究中,通过求解生物热传递方程(BHTE)估算了诊断超声产生的温升,但忽略了初始温升。 BHTE在我们的研究中确定了温度升高,包括初始温度升高。我们讨论在超声检查期间初始温度升高如何发生,以及初始温度升高如何影响随后的超声加热。从理论上讲,在初始温度上升的组织样本中,通过超声波检查产生的温度上升(暴露时间为500 s)要比没有暴露于超声的初始温度上升的组织样本中(通过暴露时间为500 s)高。 1200秒)。这两种情况的理论结果分别为5.64摄氏度和3.58摄氏度。在我们的实验研究中,与理论研究一样,在相同的暴露条件下,在存在初始温升的情况下测得的最高温升。没有初始温度升高的组织的平均温度升高和初始温度升高的组织的平均温度升高分别为2.42 +/- 0.13摄氏度和3.62 +/- 0.17摄氏度。理论和实验研究均表明,除非第一次超声检查产生的初始温度升高降低到0摄氏度,否则对同一组织样本进行的下次超声检查可能会导致温度升高高于预期。

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