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一种用于放射治疗定位的数字荧光透视成像设备。

A digital fluoroscopic imaging device for radiotherapy localization.

作者信息

Munro P, Rawlinson J A, Fenster A

机构信息

Department of Medical Biophysics, University of Toronto, Ontario, Canada.

出版信息

Int J Radiat Oncol Biol Phys. 1990 Mar;18(3):641-9. doi: 10.1016/0360-3016(90)90073-s.

Abstract

We have been developing a digital fluoroscopic imaging system to replace the portal films that are currently used to verify patient positioning during radiotherapy treatments. Our system has a number of modifications compared to previously reported devices. The detector, which consists of a copper plate with Gd2O2S:Tb phosphor bonded directly to the copper, has been designed to maximize light output from the phosphor by increasing the phosphor thickness. The operation of the T.V. camera has been modified so that the light signal is accumulated on the target of the T.V. camera for periods of 0.2-2.0 seconds. Accumulation of the light increases the video signal relative to the fixed noise current generated by the camera, and thus minimizes the camera noise. The resulting image quality is comparable to film, so the imaging system represents a promising alternative to film as a method of verifying patient positioning in radiotherapy.

摘要

我们一直在开发一种数字荧光成像系统,以取代目前在放射治疗过程中用于验证患者体位的定位片。与先前报道的设备相比,我们的系统有许多改进之处。探测器由一块铜板和直接粘结在铜板上的Gd2O2S:Tb磷光体组成,其设计目的是通过增加磷光体厚度来最大化磷光体的光输出。电视摄像机的操作已作了改进,使光信号在电视摄像机的靶上累积0.2至2.0秒。光的累积增加了相对于摄像机产生的固定噪声电流的视频信号,从而使摄像机噪声最小化。所得到的图像质量与胶片相当,因此该成像系统作为放射治疗中验证患者体位的一种方法,是胶片的一种很有前途的替代方案。

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