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放射性核素治疗单次剂量测定应用的理论方面。

Theoretical aspects on the use of single-time-point dosimetry for radionuclide therapy.

作者信息

Gustafsson Johan, Taprogge Jan

机构信息

Medical Radiation Physics, Lund, Lund University, Lund, 221 85, Sweden.

Joint Department of Physics, Royal Marsden Hospital, Sutton, United Kingdom.

出版信息

Phys Med Biol. 2022 Jan 19;67(2). doi: 10.1088/1361-6560/ac46e0.

DOI:10.1088/1361-6560/ac46e0
PMID:34965519
Abstract

. This study considers the error distributions for time-integrated activity (TIA) of single-time-point (STP) methods for patient-specific dosimetry in radionuclide therapy.. The general case with the same pharmaceutical labelled with different radionuclides for imaging and therapy are considered for a mono-exponential time-activity curve. Two methods for STP dosimetry, both based on the combination of one activity estimate with the population-mean effective decay constant, are investigated. The cumulative distribution functions (CDFs) and the probability density functions for the two methods are analytically derived for arbitrary distributions of the biological decay constant. The CDFs are used for determining 95% coverage intervals of the relative errors for different combinations of imaging time points, physical decay constants, and relative standard deviations of the biological decay constant. Two examples, in the form of kidney dosimetry in [Lu]Lu-DOTA-TATE therapy and tumour dosimetry for Na[I]I therapy for thyroid cancer with dosimetry based on imaging of Na[I]I, are also studied in more detail with analysis of the sensitivity with respect to errors in the mean biological decay constant and to higher moments of the distribution.. The distributions of the relative errors are negatively skewed, potentially leading to the situation that some TIA estimates are highly underestimated even if the majority of estimates are close to the true value.. The main limitation of the studied STP dosimetry methods is the risk of large underestimations of the TIA.

摘要

本研究考虑了放射性核素治疗中针对患者特定剂量测定的单时间点(STP)方法的时间积分活度(TIA)的误差分布。对于单指数时间-活度曲线,考虑了用不同放射性核素标记用于成像和治疗的相同药物的一般情况。研究了两种基于将一个活度估计值与总体平均有效衰变常数相结合的STP剂量测定方法。针对生物衰变常数的任意分布,解析推导了这两种方法的累积分布函数(CDF)和概率密度函数。CDF用于确定不同成像时间点、物理衰变常数和生物衰变常数相对标准偏差组合下相对误差的95%覆盖区间。还以[Lu]Lu-DOTA-TATE治疗中的肾脏剂量测定以及基于Na[I]I成像的甲状腺癌Na[I]I治疗的肿瘤剂量测定为例,更详细地研究了对平均生物衰变常数误差和分布高阶矩的敏感性分析。相对误差分布呈负偏态,这可能导致即使大多数估计值接近真实值,一些TIA估计值仍被严重低估的情况。所研究的STP剂量测定方法的主要局限性在于TIA被大幅低估的风险。

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