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Digital radiography using amorphous selenium: photoconductively activated switch (PAS) readout system.

机译:使用非晶态硒的数字射线照相:光电导开关(PAS)读出系统。

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摘要

A new amorphous selenium (a-Se) digital radiography detector is introduced. The proposed detector generates a charge image in the a-Se layer in a conventional manner, which is stored on electrode pixels at the surface of the a-Se layer. A novel method, called photoconductively activated switch (PAS), is used to read out the latent x-ray charge image. The PAS readout method uses lateral photoconduction at the a-Se surface which is a revolutionary modification of the bulk photoinduced discharge (PID) methods. The PAS method addresses and eliminates the fundamental weaknesses of the PID methods--long readout times and high readout noise--while maintaining the structural simplicity and high resolution for which PID optical readout systems are noted. The photoconduction properties of the a-Se surface were investigated and the geometrical design for the electrode pixels for a PAS radiography system was determined. This design was implemented in a single pixel PAS evaluation system. The results show that the PAS x-ray induced output charge signal was reproducible and depended linearly on the x-ray exposure in the diagnostic exposure range. Furthermore, the readout was reasonably rapid (10 ms for pixel discharge). The proposed detector allows readout of half a pixel row at a time (odd pixels followed by even pixels), thus permitting the readout of a complete image in 30 s for a 40 cm x 40 cm detector with the potential of reducing that time by using greater readout light intensity. This demonstrates that a-Se based x-ray detectors using photoconductively activated switches could form a basis for a practical integrated digital radiography system.
机译:介绍了一种新型的非晶硒(a-Se)数字射线照相探测器。提出的检测器以常规方式在a-Se层中产生电荷图像,该电荷图像被存储在a-Se层的表面的电极像素上。一种称为光导激活开关(PAS)的新颖方法被用来读出潜在的X射线电荷图像。 PAS读出方法在a-Se表面使用横向光电导,这是对体光致放电(PID)方法的革命性修改。 PAS方法解决并消除了PID方法的基本缺点-较长的读取时间和较高的读取噪声-同时保持了PID光学读取系统所关注的结构简单性和高分辨率。研究了a-Se表面的光电导特性,并确定了PAS射线照相系统的电极像素的几何设计。该设计是在单像素PAS评估系统中实现的。结果表明,PAS X射线诱导的输出电荷信号是可重现的,并且线性地取决于诊断曝光范围内的X射线曝光。此外,读数相当快(像素放电为10毫秒)。所提出的检测器允许一次读取半个像素行(奇数像素后跟偶数像素),因此,对于40 cm x 40 cm的检测器,可以在30 s内读取完整图像,并且有可能通过使用更大的读出光强度。这证明了使用光导激活开关的基于a-Se的x射线探测器可以为实用的集成数字放射成像系统奠定基础。

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