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通过局部加热和全身血液冷却改善肿瘤优先热疗:一种平衡传热方法。

Improved preferential tumor hyperthermia with regional heating and systemic blood cooling: a balanced heat transfer method.

作者信息

Oleson J R, Babbs C F, Parks L C

出版信息

Radiat Res. 1984 Mar;97(3):488-98.

PMID:6729025
Abstract

Absorption of power in large body volumes can occur with some approaches used for hyperthermia treatment of cancer. A systemic heat absorption rate exceeding the heat dissipation rate can lead to systemic temperature elevation that limits the magnitude and duration of application of power and hence the degree of preferential tumor temperature rise. We describe a hyperthermia approach consisting of regional electromagnetic power absorption and extracorporeal blood cooling with regulation of both systemic heat absorption and dissipation rates ("balanced heat transfer"). A test of this approach in five dogs with nonperfused tumor models demonstrated intratumoral temperatures greater than 42 degrees C, while systemic temperature remained at 33 degrees C and visceral temperatures within the heated region equilibrated between 33 and 42 degrees C. Solutions of the bioheat transfer equation were obtained for a simplified model with a tumor perfusion rate lower than surrounding normal tissue perfusion rate. In this model, the use of arterial blood temperatures less than 37 degrees C allowed higher power densities to be used, for given normal tissue temperatures, than when arterial temperature was greater than or equal to 37 degrees C. As a result, higher intratumoral temperatures were predicted. Control of arterial blood temperature using extracorporeal cooling may thus (1) limit systemic temperature rise produced by regional heating devices and (2) offer a means of improving intratumoral temperature elevations.

摘要

用于癌症热疗的某些方法可能会导致大量身体组织吸收能量。全身热吸收率超过散热率会导致全身温度升高,这限制了能量施加的幅度和持续时间,进而限制了肿瘤优先升温的程度。我们描述了一种热疗方法,该方法包括局部电磁能量吸收和体外血液冷却,同时调节全身的热吸收和散热速率(“平衡热传递”)。在五只患有非灌注肿瘤模型的狗身上对该方法进行的测试表明,肿瘤内温度高于42摄氏度,而全身温度保持在33摄氏度,加热区域内的内脏温度在33至42摄氏度之间达到平衡。对于肿瘤灌注率低于周围正常组织灌注率的简化模型,获得了生物热传递方程的解。在该模型中,对于给定的正常组织温度,使用低于37摄氏度的动脉血温度比使用大于或等于37摄氏度的动脉血温度时能够使用更高的功率密度。结果,预测肿瘤内温度会更高。因此,使用体外冷却控制动脉血温度可能(1)限制局部加热设备引起的全身温度升高,(2)提供一种提高肿瘤内温度升高的方法。

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