...
首页> 外文期刊>Medical Physics >Fundamental form of a population TCP model in the limit of large heterogeneity.
【24h】

Fundamental form of a population TCP model in the limit of large heterogeneity.

机译:大量异质性限制下的总体TCP模型的基本形式。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A population tumor control probability (TCP) model for fractionated external beam radiotherapy, based on Poisson statistics and in the limit of large parameter heterogeneity, is studied. A reduction of a general eight-parameter TCP equation, which incorporates heterogeneity in parameters characterizing linear-quadratic radiosensitivity, repopulation, and clonogen number, to an equation with four parameters is obtained. The four parameters represent the mean and standard deviation for both clonogen number and a generalized radiosensitivity that includes linear-quadratic and repopulation descriptors. Further, owing to parameter inter-relationship, it is possible to express these four parameters as three ratios of parameters in the large heterogeneity limit. These ratios can be directly linked to two defining features of the TCP dose response: D50 and gamma50. In the general case, the TCP model can be written in terms of D50, gamma50 and a third parameter indicating the ratio of the levels of heterogeneity in clonogen number and generalized radiosensitivity; however, the third parameter is unnecessary when either of these two sources of heterogeneity is dominant. It is shown that heterogeneity in clonogen number will have little impact on the TCP formula for clinical scenarios, and thus it will generally be the case that the fundamental form of the Poisson-based population TCP model can be specified completely in terms of D50 and gamma50: TCP= 1/2 erfc[square root of pi(gamma50)(D50/D-1)]. This implies that limited radiobiological information can be determined by the analysis of dose response data: information about parameter ratios can be ascertained, but knowledge of absolute values for the fundamental radiobiological parameters will require independent auxiliary measurements.
机译:研究了基于泊松统计和在大参数异质性限制下的局部外照射放疗的总体肿瘤控制概率(TCP)模型。得到了一个简化的通用八参数TCP方程,该方程将表征线性二次辐射敏感性,再填充和克隆原数的参数中的异质性合并为具有四个参数的方程。这四个参数代表了克隆原数和包括线性二次方和再种群描述子在内的广义放射敏感性的均值和标准差。此外,由于参数的相互关系,可以将这四个参数表示为异质性大的三个参数的比率。这些比率可以直接与TCP剂量响应的两个定义特征相关:D50和gamma50。在一般情况下,TCP模型可以用D50,γ50和第三个参数表示,第三个参数表示克隆原体数量的异质性水平与广义放射敏感性的比值。但是,当这两个异质性来源中的任何一个占主导地位时,第三个参数都是不必要的。结果表明,克隆蛋白数量的异质性对临床方案的TCP公式影响很小,因此通常情况下,可以完全根据D50和gamma50来指定基于Poisson的总体TCP模型的基本形式:TCP = 1 / 2erfc [pi(gamma50)(D50 / D-1)的平方根]。这意味着可以通过剂量响应数据的分析来确定有限的放射生物学信息:可以确定有关参数比率的信息,但是了解基本放射生物学参数的绝对值将需要独立的辅助测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号