首页> 外文期刊>Physics in medicine and biology. >THEORETICAL ANALYSIS OF TRANSURETHRAL LASER-INDUCED THERMO-THERAPY FOR TREATMENT OF BENIGN PROSTATIC HYPERPLASIA - EVALUATION OF A WATER-COOLED APPLICATOR
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THEORETICAL ANALYSIS OF TRANSURETHRAL LASER-INDUCED THERMO-THERAPY FOR TREATMENT OF BENIGN PROSTATIC HYPERPLASIA - EVALUATION OF A WATER-COOLED APPLICATOR

机译:经尿道激光诱导的热疗治疗良性前列腺增生症的理论分析-水冷式涂抹器的评估

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A mathematical model for predicting the temperature rise in transurethral laser-induced thermo-therapy for benign prostatic hyperplasia was developed. In the model an optical line source emitting light from an Nd:YAG laser isotropically was placed in the urethra. Water cooling of the urethral epithelium was modelled using a two-tube system. The relationship between the difference in outlet and inlet water temperatures and the highest tissue temperature level reached was theoretically investigated. It was found that the water temperature difference was linearly dependent on the steady-state maximum tissue temperature. The theoretical calculations suggest that the water-cooled applicator can be used to measure the maximum tissue temperature. With temperature control, the prostatic tissue temperature can be prevented from exceeding the boiling point of water, excluding tissue carbonization. The model was also used to evaluate the influence of a number of different parameters on the damaged tissue volume. Increasing the urethral lumen radius by a factor of two by means of inserting different sized tubes was found to augment the tissue volume raised to therapeutic temperatures by up to 50%. The calculations showed that cooling of the urethral epithelium can result in an increase in the damaged volume by 80% as compared to not applying any cooling. The temperature of the cooling water was found to influence the tissue temperature only to a small extent. [References: 60]
机译:建立了预测良性前列腺增生的经尿道激光诱导的热疗法中温度升高的数学模型。在该模型中,将各向同性地从Nd:YAG激光器发射光的光线源放置在尿道中。使用两管系统对尿道上皮的水冷进行建模。理论上研究了出水温度和进水温度之间的差异与达到的最高组织温度水平之间的关系。发现水温差与稳态最大组织温度成线性关系。理论计算表明,水冷式涂药器可用于测量最高组织温度。通过温度控制,可以防止前列腺组织温度超过水的沸点,这不包括组织碳化。该模型还用于评估许多不同参数对受损组织体积的影响。发现通过插入不同尺寸的管将尿道内腔半径增加两倍,可以将升高到治疗温度的组织体积增加多达50%。计算表明,与不进行任何冷却相比,对尿道上皮进行冷却可导致受损体积增加80%。发现冷却水的温度仅在很小程度上影响组织温度。 [参考:60]

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