首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005) vol.1; 20050717-22; San Francisco,CA(UA) >A THEORETICAL COMPARISON OF THE EFFICACY OF MICROWAVE AND ULTRASOUND APPLICATORS USED IN TRANSURETHRAL THERMAL THERAPY
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A THEORETICAL COMPARISON OF THE EFFICACY OF MICROWAVE AND ULTRASOUND APPLICATORS USED IN TRANSURETHRAL THERMAL THERAPY

机译:微波和超声涂药在经尿道热疗中功效的理论比较

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Microwave and ultrasound energy sources are commonly used in minimally invasive thermal therapy for benign prostatic hyperplasia. Successful management of the therapy using either of these methods requires an accurate estimation of the thermal dosage. The purpose of this study is to evaluate, theoretically, the thermal damage caused by typical transurethral microwave and ultrasound applicators for different thermal doses and compare the efficacy of the two methods. Using an Alternating-direction implicit method, the Pennes bio-heat transfer equation is solved for different levels of power and heating times. Internal and external cooling is applied to preserve the urethral and rectal lining and to control the temperatures within the tissue. The extent of thermal coagulation is determined from the resulting temperature histories, using the existing experimental thermal damage data for prostate tumor cells. The temperatures and damage contours calculated are validated using an Arrhenius analysis of the temperature and thermal-lesion data from the available experimental results. Results show that the calculated damage zones are in good agreement with those observed in the experiments. Results from calculations for different combinations of the parameters are presented in terms of the transient temperature histories and radial and axial extent of the lesion shapes. These results suggest that both methods can yield comparable thermal damage, though ultrasound appears to possess an improved control of directional heating.
机译:微波和超声能量源通常用于良性前列腺增生的微创热疗中。使用这些方法中的任何一种成功管理治疗都需要准确估计热剂量。这项研究的目的是从理论上评估典型的经尿道微波和超声涂药器对不同热剂量造成的热损伤,并比较这两种方法的功效。使用交替方向隐式方法,求解了不同功率和加热时间的Pennes生物传热方程。进行内部和外部冷却以保留尿道和直肠内膜并控制组织内的温度。使用现有的前列腺肿瘤细胞实验性热损伤数据,根据所得的温度历史记录确定热凝程度。使用来自可用实验结果的温度和热损伤数据的Arrhenius分析来验证计算出的温度和损伤轮廓。结果表明,计算出的损伤区与实验中观察到的相符。针对参数的不同组合的计算结果以瞬时温度历史记录以及病变形状的径向和轴向范围表示。这些结果表明,尽管超声方法似乎可以更好地控制定向加热,但两种方法都可以产生相当的热损伤。

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