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胶片剂量测定中的有用光密度范围:噪声和饱和导致的局限性。

Useful optical density range in film dosimetry: limitations due to noise and saturation.

作者信息

González-López Antonio

机构信息

Servicio de Radiofísica y Protección Radiológica, Hospital Universitario Virgen de la Arrixaca, Ctra. Madrid-Cartagena S/N, E-30120 El Palmar (Murcia), Spain.

出版信息

Phys Med Biol. 2007 Aug 7;52(15):N321-7. doi: 10.1088/0031-9155/52/15/N01. Epub 2007 Jun 27.

Abstract

The optical density (OD) range for the scanners used in film dosimetry is limited due to saturation and noise. As the OD increases, saturation causes the rate of change of the output with respect to the input to become smaller, while at the same time noise remains fairly constant or increases. The combined effect leads to a degradation of the signal-to-noise ratio (SNR) at high optical densities. In this study, the uncertainty in the OD measurement, d(m), is expressed as a function of the optical density d. The functional relationship obtained gives the amplitude w of an interval around d in which d(m) will be found with a given probability p. The relationship w = w(d, p) is later used to determine which OD ranges fulfil a set of requirements on w and p. As an application of the procedure, the noise and saturation characteristics of a commercial film digitizer system are measured. Their contribution to the uncertainties of the dosimetric procedure is reported, and the data are used to provide an optical density range for a given uncertainty and confidence level associated with the digitizer. These data can be further combined with the data from other sources of noise such as film noise in order to estimate the final uncertainty of the dosimetric process.

摘要

由于饱和与噪声问题,用于胶片剂量测定的扫描仪的光密度(OD)范围受到限制。随着光密度增加,饱和会使输出相对于输入的变化率变小,而与此同时噪声保持相当恒定或有所增加。综合效应导致在高光密度下信噪比(SNR)下降。在本研究中,OD测量的不确定度d(m)表示为光密度d的函数。所得到的函数关系给出了围绕d的一个区间的幅度w,在该区间内d(m)将以给定概率p被找到。关系w = w(d, p)随后被用于确定哪些OD范围满足关于w和p的一组要求。作为该程序的一个应用,测量了一个商用胶片数字化系统的噪声和饱和特性。报告了它们对剂量测定程序不确定度的贡献,并使用这些数据给出与数字化仪相关的给定不确定度和置信水平下的光密度范围。这些数据可以进一步与来自其他噪声源(如胶片噪声)的数据相结合,以估计剂量测定过程的最终不确定度。

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