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Physics of pulsed dose-rate brachytherapy

机译:脉冲剂量率近距离放射疗法的物理学

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Pulsed Dose-rate (PDR) brachytherapy is a highly fractionated treatment with a single stepping source which intends to replace Continuous Low Dose-rate (CLDR) therapy with radioactive wires or seeds. The advantages of the stepping source are it's better possibilities of optimizing the shape and the homogeneity of the dose distribution by modulating the dwell times. Radiobiological calculations predict conditions concerning fraction ("pulse") dose and inter-fraction intervals under which PDR should yield an equivalent biological effectiveness to a CLDR treatment. PDR afterloaders operate with source activities around 1 Ci of Ir-192 leading to irradiations at high dose-rate. The safety issues of high dose-rate treatments have so far kept the number of PDR users small. One of the important issues is the question whether the presence of a physicist is required at all times during the treatment, or if an availability within an as yet unspecified response time is sufficient. Other important issues are staff training, and quality assurance of applications suited for long overall times of automatically controlled treatment.
机译:脉冲剂量率(PDR)近距离放射治疗是一种采用单一步进源的高度分级治疗方法,旨在用放射性金属丝或种子代替连续低剂量率(CLDR)治疗。步进源的优势在于,它有更好的可能性,可以通过调节停留时间来优化形状和剂量分布的均匀性。放射生物学计算预测有关分数(“脉冲”)剂量和分数间隔间隔的条件,在此条件下,PDR应产生与CLDR治疗等效的生物学效力。 PDR后装填器的放射源活动在Ir-192的1 Ci附近,导致高剂量率的照射。迄今为止,高剂量率治疗的安全性问题使PDR使用者的数量很少。一个重要的问题是在治疗过程中是否始终需要有物理学家在场,或者在尚未确定的响应时间内是否有足够的可用性这一问题。其他重要问题是人员培训以及适用于长时间自动控制治疗的应用程序的质量保证。

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