Umetani K, Ueki H, Ueda K, Hirai T, Takeda T, Doi T, Wu J, Itai Y, Akisada M
J Synchrotron Radiat. 1996 May 1;3(Pt 3):136-44. doi: 10.1107/S0909049596001859.
A high-sensitivity HARPICON camera was developed for medical X-ray imaging using a fluorescent screen. It is an avalanche-multiplication-type image pick-up tube and is 32 times more sensitive than conventional tubes. The camera also has a wider dynamic range than conventional medical-imaging cameras because a maximum output signal current of 2.3 muA is obtained and, in high-illumination-intensity regions, photocurrent is not proportional to illumination intensity. The fluorescent screen is an intensifying screen of the type used for radiographic screen-film combinations in medical examination. An X-ray image on the screen is focused on the photoconductive layer of the pick-up tube using a coupling lens with f/0.65. Experiments were performed using monochromated X-rays at the Photon Factory. An image of a spatial resolution test chart was taken in a 525 scanning-line mode of the camera. The chart pattern of 5 line-pairs mm(-1 )(spatial resolution of 100 mum) was observed at an X-ray input field of 50 x 50 mm. Real-time digital images of the heart of a 12 kg dog were obtained at a frame rate of 60 images s(-1) after injection of a contrast medium into an artery. The images were stored in digital format at 512 x 480 pixels with 12 bits pixel(-1). High-spatial-resolution and high-contrast images of coronary arteries were obtained in aortography using X-rays with energy above that of the iodine K edge; the image quality was comparable with that of conventional selective coronary angiography.
一种用于医学X射线成像的高灵敏度HARPICON相机被开发出来,它使用荧光屏。它是一种雪崩倍增型摄像管,比传统摄像管的灵敏度高32倍。该相机还具有比传统医学成像相机更宽的动态范围,因为能获得2.3 μA的最大输出信号电流,并且在高光照强度区域,光电流与光照强度不成正比。荧光屏是医学检查中用于射线照相屏-片组合的那种增感屏。利用f/0.65的耦合透镜将屏上的X射线图像聚焦到摄像管的光电导层上。在光子工厂使用单色X射线进行了实验。在相机的525扫描线模式下拍摄了空间分辨率测试图的图像。在50×50 mm的X射线输入视野中观察到了5线对/mm(空间分辨率为100μm)的图纹。在向一只12 kg重的狗的动脉注射造影剂后,以60帧/秒的帧率获得了该狗心脏的实时数字图像。这些图像以512×480像素、12位/像素的数字格式存储。在主动脉造影中,使用能量高于碘K吸收限的X射线获得了冠状动脉的高空间分辨率和高对比度图像;图像质量与传统选择性冠状动脉造影相当。