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使用正常组织并发症概率(NTCP0)作为评估放射肿瘤治疗副作用的新替代方法在安全性评估中的应用。

The use of the normal tissue non-complication probability (NTCP0) in the safety evaluations as a new alternative of assessing the side-effects of the radiation oncology treatments.

机构信息

Owner at Statistical models project, LLC, Chicago, IL, USA.

Division of Science and Mathematics, University of District of Columbia, Washington, DC, USA.

出版信息

Int J Radiat Biol. 2023;99(4):656-662. doi: 10.1080/09553002.2022.2110299. Epub 2022 Aug 15.

Abstract

PURPOSE

To encourage the use of the NTCP0 for evaluating safety as a new alternative of assessing the S-Es of the radiation oncology treatments; and the use of the 'NTCP0cal' methodology that calculates/estimates NTCP0.

METHOD

Revisions of studies related to use of the NTCP in the evaluations of S-Es. Development of the first version of the Matlab application of our methodology, which provides three options, two of them employ the well-known aspects of a phenomenological model, or the relationship with the TNTCP; where NTCP0 = 100%-TNTCP; and the third option determines NTCP0 from an assumed NTCP discrete probabilistic distribution from the binomial distribution, where one of its parameters is automatically defined from a databased of the Disease locations Vs. Late complications.

RESULT

As result of revisions of some QUANTEC studies, we can say that: (1) The majority of current NTCP models are DVH-based; (2) The risk of toxicity is the way of evaluating the S-Es of the radiation oncology treatments; and (3) The NTCP are used mainly for evaluations of individual or principal complications or Endpoints of the radiation treatments. The 'NTCP0cal' Matlab application developed in this study has three calculation options. Two of the options provide additional graphical information about the distributions.

CONCLUSIONS

The NTCP0 is a new radiobiological concept, its introduction let to correct some current P + and UTCP formulations, and will allow evaluating S-Es in whatever activity involving ionizing radiation, like radiation treatments; and its phenomenological model function of dose prescribed (D = n*d) will allow calculating values of NTCP0 for a range of dose per fraction (d) in a treatment with a determined number of fractions (n), or for range of for a constant . The DVH is irrelevant for this model. For whatever radiation treatment given to a population of similar patients under similar circumstances, the NTCP0 is calculated as ratio of the number of patients without acute/late complications and total of them. When this number is unknown, then NTCP0 can be obtained using the 'NTCP0cal' application.

摘要

目的

鼓励使用 NTCP0 来评估安全性,作为评估放射肿瘤治疗的 S-Es 的新替代方法;并使用“NTCP0cal”方法来计算/估计 NTCP0。

方法

对与 NTCP 在 S-Es 评估中使用相关的研究进行修订。开发我们方法的第一个 Matlab 应用程序版本,该版本提供了三个选项,其中两个选项采用了一种现象学模型或与 TNTCP 的关系;其中 NTCP0=100%-TNTCP;第三个选项从假设的 NTCP 离散概率分布(来自二项分布)中确定 NTCP0,其中一个参数自动从疾病部位与迟发性并发症的数据库中定义。

结果

通过对一些 QUANTEC 研究的修订,可以得出以下结论:(1)目前大多数 NTCP 模型都是基于剂量体积直方图(DVH)的;(2)毒性风险是评估放射肿瘤治疗的 S-Es 的方法;(3)NTCP 主要用于评估个体或主要并发症或放射治疗的终点。本研究中开发的“NTCP0cal”Matlab 应用程序有三个计算选项。其中两个选项提供了关于分布的额外图形信息。

结论

NTCP0 是一个新的放射生物学概念,它的引入纠正了当前一些 P + 和 UTCP 公式,并将允许评估任何涉及电离辐射的活动中的 S-Es,例如放射治疗;其规定剂量(D=n*d)的现象学模型函数将允许计算在特定的分割数(n)下的每个分割剂量(d)范围内的 NTCP0 值,或者在固定剂量时的范围内的。该模型与剂量体积直方图无关。对于在类似情况下给予类似患者群体的任何放射治疗,NTCP0 计算为无急性/迟发性并发症的患者数与总患者数的比值。当这个数字未知时,可以使用“NTCP0cal”应用程序来获得 NTCP0。

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