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一种使用射野图像提高患者摆位精度的验证程序。

A verification procedure to improve patient set-up accuracy using portal images.

作者信息

Bel A, van Herk M, Bartelink H, Lebesque J V

机构信息

Radiotherapy Department, The Netherlands Cancer Institute (Antoni van Leeuwenhoek Huis, Amsterdam.

出版信息

Radiother Oncol. 1993 Nov;29(2):253-60. doi: 10.1016/0167-8140(93)90255-7.

Abstract

The purpose of this study was to establish which level of geometrical accuracy can be obtained during radiotherapy, using portal image analysis, with a minimum number of patient set-up measurements and corrections. A set-up verification and correction procedure using decision rules for improving the set-up of a patient during radiotherapy was investigated by means of a computer simulation. In this simulation study, set-up deviations were assumed to be the sum of random and systematic deviations and varying ratios of random and systematic deviations were studied. The distribution of random deviations (SD equal to sigma) was assumed to be equal for all patients of a specific treatment site. Set-up deviations are measured during the first N consecutive fractions after the start of the treatment or after a patient set-up correction. A set-up is corrected when the deviation averaged over these measurements is larger than an N-dependent action level. This action level is specified by alpha/square root of N, in which alpha is a variable initial action level parameter. After the start of the treatment or after each correction, Nmax measurements are made to decide on a possible (further) correction. By varying alpha and Nmax, the relation between the overall accuracy and the workload has been analyzed. It was possible to obtain a resulting overall accuracy level which is almost independent of the initial distribution of systematic deviations.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究的目的是通过射野图像分析,在患者摆位测量和校正次数最少的情况下,确定放射治疗期间可获得的几何精度水平。通过计算机模拟研究了一种使用决策规则的摆位验证和校正程序,以改善放射治疗期间患者的摆位。在该模拟研究中,假设摆位偏差是随机偏差和系统偏差的总和,并研究了随机偏差与系统偏差的不同比例。对于特定治疗部位的所有患者,假设随机偏差的分布(标准差等于西格玛)是相等的。在治疗开始后或患者摆位校正后的前N个连续分次期间测量摆位偏差。当这些测量的平均偏差大于与N相关的行动水平时,进行摆位校正。该行动水平由α/√N指定,其中α是可变的初始行动水平参数。在治疗开始后或每次校正后,进行Nmax次测量以决定是否可能(进一步)校正。通过改变α和Nmax,分析了总体精度与工作量之间的关系。有可能获得几乎与系统偏差的初始分布无关的总体精度水平。(摘要截于250字)

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