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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >Clinical thermometry, using the 27 MHz multi-electrode current-source interstitial hyperthermia system in brain tumours.
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Clinical thermometry, using the 27 MHz multi-electrode current-source interstitial hyperthermia system in brain tumours.

机译:临床测温,在脑肿瘤中使用27 MHz多电极电流源间质热疗系统。

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BACKGROUND AND PURPOSE: In interstitial hyperthermia, temperature measurements are mainly performed inside heating applicators, and therefore, give the maximum temperatures of a rather heterogeneous temperature distribution. The problem of how to estimate lesion temperatures using the multi-electrode current-source interstitial hyperthermia (MECS-IHT) system in the brain was studied. MATERIALS AND METHODS: Temperatures were measured within the electrodes and in an extra catheter at the edge of a 4 x 4 x 4.5 cm(3) glioblastoma multiforme resection cavity. From the temperature decays during a power-off period, information was obtained about local maximum and minimum tissue temperatures. The significance of these data was examined through model calculations. RESULTS: Maximum tissue temperatures could be estimated roughly by switching off all electrodes for about 5 s. Model calculations showed that the minimum tissue temperatures near a certain afterloading catheter correspond well with the temperature of the applicator inside, about 1 min after this applicator was switched off. CONCLUSIONS: Although the electrode temperatures read during heating are not suitable to assess the temperature distribution, it is feasible to heat the brain adequately using the MECS-IHT system with extra sensors outside the electrodes and/or application of decay methods.
机译:背景与目的:在间质性高热中,温度测量主要在加热装置内部进行,因此,给出的温度最高是相当不均匀的温度分布。研究了如何使用脑中的多电极电流源间质热疗(MECS-IHT)系统估算病变温度的问题。材料和方法:在电极内以及在4 x 4 x 4.5 cm(3)胶质母细胞瘤多形切除腔边缘处的额外导管中测量温度。从断电期间的温度衰减中,可以获得有关局部最大和最小组织温度的信息。通过模型计算检查了这些数据的重要性。结果:可以通过关闭所有电极约5 s粗略估计最高组织温度。模型计算表明,在关闭某个施加器后大约1分钟后,某个后加载导管附近的最低组织温度与施加器内部的温度非常吻合。结论:尽管在加热过程中读取的电极温度不适合评估温度分布,但使用带有电极外部额外传感器的MECS-IHT系统和/或采用衰减方法来充分加热大脑是可行的。

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