论文标题
牙加嘌呤池作为多光谱医学成像的检测材料的质量评估
Quality assessment of Cadmium Telluride as a detector material for multispectral medical imaging
论文作者
论文摘要
洁牙池(CDTE)是具有出色光子辐射吸收特性的高Z材料,使其成为辐射检测技术中包括的有希望的材料。但是,CDTE晶体的脆性及其不同的缺陷浓度需要在复杂的探测器处理程序之前进行彻底的质量评估。我们将CDTE作为多光谱医学成像的探测器材料介绍,这项研究是作为财团项目多光谱光子计数的一部分进行的,用于医学成像和光束表征(MPMIB)。该项目的目的是开发新型的CDTE检测器并获得每金谱信息,从而使不同的辐射类型和组织之间的区别。为了评估晶体内部的缺陷密度(可能会恶化检测器性能),我们采用红外显微镜(IRM)。后验数据分析使我们能够将缺陷分布视为3D缺陷图。此外,我们使用电流 - 电压(IV)测量来研究材料的前后差异,以确定晶体像素化的首选表面,并使用原型进行测试测量,以提供进一步处理的反馈。我们介绍了质量评估链的不同部分,并将在小型断层扫描设置中使用我们的原型PC检测器之一获得的首次实验结果结束。
Cadmium Telluride (CdTe) is a high-Z material with excellent photon radiation absorption properties, making it a promising material to include in radiation detection technologies. However, the brittleness of CdTe crystals as well as their varying concentration of defects necessitate a thorough quality assessment before the complex detector processing procedure. We present our quality assessment of CdTe as a detector material for multispectral medical imaging, a research which is conducted as part of the Consortium Project Multispectral Photon-counting for Medical Imaging and Beam characterization (MPMIB). The aim of the project is to develop novel CdTe detectors and obtain spectrum-per-pixel information that make the distinction between different radiation types and tissues possible. To evaluate the defect density inside the crystals -- which can deteriorate the detector performance -- we employ infrared microscopy (IRM). Posterior data analysis allows us to visualise the defect distributions as 3D defect maps. Additionally, we investigate front and backside differences of the material with current-voltage (IV) measurements to determine the preferred surface for the pixelisation of the crystal, and perform test measurements with the prototypes to provide feedback for further processing. We present the different parts of our quality assessment chain and will close with first experimental results obtained with one of our prototype PC detectors in a small tomographic setup.