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Charge sharing between pixels in the spectral Medipix2 x-ray detector

机译:Medipix2 X射线光谱探测器中像素之间的电荷共享

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摘要

This paper gives an overview of the Medipix2 x-raydetector and its use in medical imaging, with the MARS-CT scanner (MARS, Medipix All Resolution System) as an example. The Medipix2 chip is a photon counting pixel detector with the ability of energy discrimination. It was developed at CERN and is composed of a sensor layer bump bonded to electronics layer. It has 256x256 pixels, each one covering an area of 55x55µm².Furthermore, every pixel can be read out separately. The MARS-CT scanner uses these properties to scan biological objects obtaining multi-energy (spectral) x-ray images with high contrast between materials and high spatial resolution. Charge sharing is the phenomenon by which the electron-hole chargecloud, induced in the sensor layer by an absorbed photon, is detected by a cluster of neighbouring pixels. Each pixel in the cluster generates a signal corresponding to its fraction of the cloud, so the detector will record several photons each of lower energies. This effect has to be considered with the use of Medipix2, because of its small pixels and the hybrid architecture. The effect was measured and a simulation modelled with the aim to reconstruct the spectrum removing the distortion of the detection process.
机译:本文以MARS-CT扫描仪(MARS,Medipix All Resolution System)为例,概述了Medipix2 X射线探测器及其在医学成像中的应用。 Medipix2芯片是具有能量识别能力的光子计数像素检测器。它是由欧洲核子研究组织(CERN)开发的,由与电子层结合的传感器层凸点组成。它具有256x256像素,每个像素占地55x55µm²。此外,每个像素都可以单独读取。 MARS-CT扫描仪利用这些特性来扫描生物对象,从而获得多能量(光谱)X射线图像,并且材料之间的对比度高且空间分辨率高。电荷共享是一种现象,通过该现象,由吸收的光子在传感器层中感应出的电子空穴电荷云被一簇相邻像素检测到。群集中的每个像素都会生成与其云量相对应的信号,因此检测器将记录几个较低能量的光子。由于Medipix2的像素小和混合架构,因此必须考虑使用Medipix2。对该效果进行了测量,并进行了仿真建模,旨在重建频谱,以消除检测过程的失真。

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