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Comparaison de la micro-tomodensitométrie par comptage de photons et par intégration de charges avec le dispositif d'irradiation PIXSCAN

机译:通过光子计数和PIXSCAN辐照设备的电荷积分比较微光密度法

摘要

The pathway that has been followed by the imXgam team at CPPM was to adapt the hybrid pixel technology XPAD to biomedical imaging. It is in this context that the micro-CT PIXSCAN II based on the new generation of hybrid pixel detectors called XPAD3 has been developed. This thesis describes the process undertaken to assess the contribution of the hybrid pixel technology in X-ray computed tomography in terms of contrast and dose and to explore new opportunities for biomedical imaging at low doses. Performance evaluation aswell as the validation of the results obtained with data acquired with the detector XPAD3 were compared to results obtained with the CCD camera DALSA XR-4 similar to detectors used in most conventional micro-CT systems. The detector XPAD3 allows to obtain reconstruced images of satisfactory quality close to that of images from the DALSA XR-4 camera, but with a better spatial resolution. At low doses, the images from the detector XPAD3 have a better quality that is those from CCD camera. From an instrumentation point of view, this project demonstrated the proper operations of the device PIXSCAN II for mouse imaging. We were able to reproduce an image quality similar to that obtained with a charge integration detector such as a CCD camera. To improve the performance of the detector XPAD3, we will have to optimize the stability of the thresholds and in order to obtain more homogeneous response curves of the pixels as a function as energy by using a denser sensor such as CdTe.
机译:CPPM的imXgam团队遵循的途径是使混合像素技术XPAD适应生物医学成像。在这种情况下,已经开发出了基于新一代混合像素检测器XPAD3的微型CT PIXSCAN II。本论文描述了在对比度和剂量方面评估混合像素技术在X射线计算机断层摄影中的贡献并探索低剂量生物医学成像的新机会的过程。性能评估以及使用探测器XPAD3采集的数据所获得的结果的验证结果与使用CCD相机DALSA XR-4所获得的结果(与大多数常规微CT系统中使用的探测器相似)进行了比较。检测器XPAD3可以获取质量令人满意的重建图像,该图像质量与DALSA XR-4相机的图像质量相近,但具有更好的空间分辨率。在低剂量下,来自探测器XPAD3的图像具有比CCD相机更好的质量。从仪器的角度来看,该项目演示了用于鼠标成像的设备PIXSCAN II的正确操作。我们能够再现与使用电荷积分检测器(例如CCD相机)获得的图像质量相似的图像质量。为了提高检测器XPAD3的性能,我们将必须优化阈值的稳定性,并通过使用密度较大的传感器(例如CdTe)来获得像素作为能量函数的更均匀的响应曲线。

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    Ouamara H.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 fr
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