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The application of dose-rate volume histograms and survival fractions to multicellular dosimetry.

机译:剂量率体积直方图和存活分数在多细胞剂量测定中的应用。

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The distribution of therapeutic radiopharmaceuticals in volumes smaller than those that can be fully resolved by the imaging system, such as by PET and SPECT scanners, is usually assumed to be homogeneous. The aim of this study was to investigate the implications of such an assumption at a scale that can be defined as multicellular for heterogeneous activity localizations of (32)P, (90)Y, and (131)I. Dose-rate distributions from heterogeneous radioactivity uptakes have been calculated in cubic volumes of 1, 3, and 4 mm using the in-house software package DOVE. These have been studied by the use of dose-rate volume histograms, and the influence of the heterogeneous dose distribution on the treatment outcome has been analyzed by the calculation of Integral Survival Fractions. The results showed that the effect of the heterogeneous localization of the compound can be overridden by the amount of radioactivity administered. However, significant variations in the survival probability distributions have been observed, depending on the amount of initial activity considered, the activity configuration, the radionuclide, and the time over which the energy was deposited. It has been shown, for example, that the ability of longer-range beta emitters, such as (32)P and (90)Y, to invalidate heterogeneous dose-rate distributions may be negated by the decay rate of the radioactivity.
机译:通常认为治疗用放射性药物的分布体积小于通过成像系统(例如PET和SPECT扫描仪)可以完全分辨的体积。这项研究的目的是在一个可以定义为(32)P,(90)Y和(131)I的异质活性定位的多细胞尺度上研究这种假设的含义。使用内部软件包DOVE,已计算出异质放射性摄取的剂量率分布,分别为1、3和4 mm的立方体积。这些已通过使用剂量率体积直方图进行了研究,并且通过计算整体生存率分析了异构剂量分布对治疗结果的影响。结果表明,化合物的异质定位作用可以被所给予的放射量所覆盖。但是,根据所考虑的初始活动量,活动构型,放射性核素和能量沉积的时间,观察到了生存概率分布的显着变化。例如,已经表明,放射性衰变速率可能会抵消诸如(32)P和(90)Y等更长距离的β发射体使异质剂量率分布无效的能力。

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