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使用多狭缝和针孔相机确定有效电子源尺寸。

Determination of effective electron source size using multislit and pinhole cameras.

作者信息

Lief E P, Lutz W R

机构信息

Department of Medical Physics, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.

出版信息

Med Phys. 2000 Oct;27(10):2372-5. doi: 10.1118/1.1290713.

Abstract

Two independent methods have been utilized for determination of effective source sizes for 6, 12, and 20 MeV electron beams generated by a Varian 2100C linear accelerator. First, a multislit camera has been constructed using parallel aluminum plates and plastic strip spacers, similar to the beam-spot camera for the photon source imaging. Second, pinhole imaging was performed using a lead plate with a small hole on the central axis of the beam. The plate thickness and the hole diameter varied with electron energy. The cameras were positioned directly at the opening of the movable photon collimator. The size of the source distribution from each camera was characterized by its full width at half-maximum (FWHM) value. The measured values of FWHM are different for each camera because of their different imaging principles. For the multislit camera, the measured FWHM values were (6.3 +/- 0.4) cm for the 6 MeV beam, (3.6 +/- 0.4) cm for 12 MeV, and (2.7 +/- 0.4) cm for 20 MeV. For the pinhole camera the measured values of FWHM were (7.9 +/- 0.6) cm for 6 MeV, (4.5 +/- 0.4) cm for 12 MeV, and (3.0 +/- 0.4) cm for the 20 MeV beam. Additionally, the effective source position was derived from output measurements at different values of the SSD, which were fitted to the inverse square law.

摘要

已使用两种独立方法来确定由瓦里安2100C直线加速器产生的6兆电子伏、12兆电子伏和20兆电子伏电子束的有效源尺寸。首先,已使用平行铝板和塑料条间隔物构建了一台多缝相机,类似于用于光子源成像的束斑相机。其次,使用在束的中心轴上有一个小孔的铅板进行针孔成像。板的厚度和孔的直径随电子能量而变化。相机直接放置在可移动光子准直器的开口处。每个相机的源分布大小由其半高宽(FWHM)值来表征。由于成像原理不同,每个相机测得的FWHM值也不同。对于多缝相机,6兆电子伏束的测得FWHM值为(6.3±0.4)厘米,12兆电子伏的为(3.6±0.4)厘米,20兆电子伏的为(2.7±0.4)厘米。对于针孔相机,6兆电子伏的FWHM测量值为(7.9±0.6)厘米,12兆电子伏的为(4.5±0.4)厘米,20兆电子伏束的为(3.0±0.4)厘米。此外,有效源位置是从在不同源皮距(SSD)值下的输出测量结果推导出来的,这些测量结果被拟合到平方反比定律。

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