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[分次放射治疗中的剂量-时间优化]

[Dose-time optimization in fractionated radiotherapy].

作者信息

Kriester A, Kloetzer K H, Kob D

机构信息

Klinik und Poliklinik für Radiologie, Bereiches Medizin der Friedrich-Schiller-Universität Jena, DDR.

出版信息

Strahlenther Onkol. 1988 Aug;164(8):489-98.

PMID:3138769
Abstract

On the basis of an evaluation of different isoeffect correlations for normal tissue reactions supported by a clinical study, a number of correlations for the dose-time optimization of irradiations with equal fractionation intervals are derived from a simple approach for the survival rate of irradiated tumor cells based on a linear quadratic dose-effect function for an exponential cell proliferation. This allows to determine optimum single doses for every given fractionation interval which, applied with the number of fractions tolerated by normal tissue, lead to a maximum reduction of tumor cells. The values of these optimum fractionation parameters depend from cell proliferation and radiosensitivity of the tumoral tissue and vary with respect to a normal tissue tolerance for early and late reactions. The results are described for several fractionation examples. It is shown that, within the tolerance limits of normal tissue, a greater tumor remission is achieved by hyper-fractionated irradiation than by a small number of high-dose irradiations.

摘要

基于一项临床研究支持的对正常组织反应的不同等效效应相关性的评估,从基于指数细胞增殖的线性二次剂量效应函数的照射肿瘤细胞存活率的简单方法中,推导出了一些用于等分割间隔照射剂量 - 时间优化的相关性。这使得能够为每个给定的分割间隔确定最佳单次剂量,将其与正常组织耐受的分割次数相结合应用,可使肿瘤细胞最大程度减少。这些最佳分割参数的值取决于肿瘤组织的细胞增殖和放射敏感性,并因正常组织对早期和晚期反应的耐受性而有所不同。文中针对几个分割示例描述了结果。结果表明,在正常组织的耐受限度内,超分割照射比少量高剂量照射能实现更大程度的肿瘤缓解。

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