Microtomography with photon counting detectors: improving the quality of tomographic reconstruction by voxel-space oversampling

探测器 光学 物理 闪烁 像素 光子计数 图像分辨率 体素 闪烁体 图像质量 光子 迭代重建 点扩散函数 光传递函数 噪音(视频) 计算机科学 人工智能 图像(数学)
作者
Jan Dudák,J. Jakůbek,Jakub Karch,Zuzana Heřmanová,Jiřı́ Kvaček,F. Krejci
出处
期刊:Journal of Instrumentation [Institute of Physics]
卷期号:12 (01): C01060-C01060 被引量:8
标识
DOI:10.1088/1748-0221/12/01/c01060
摘要

Photon counting detectors Timepix are known for their unique properties enabling X-ray imaging with extremely high contrast-to-noise ratio. Their applicability has been recently further improved since a dedicated technique for assembling large area Timepix detector arrays was introduced. Despite the fact that the sensitive area of Timepix detectors has been significantly increased, the pixel pitch is kept unchanged (55 microns). This value is much larger compared to widely used and popular X-ray imaging cameras utilizing scintillation crystals and CCD-based read-out. On the other hand, photon counting detectors provide steeper point-spread function. Therefore, with given effective pixel size of an acquired radiography, Timepix detectors provide higher spatial resolution than X-ray cameras with scintillation-based devices unless the image is affected by penumbral blur. In this paper we take an advance of steep PSF of photon counting detectors and test the possibility to improve the quality of computed tomography reconstruction using finer sampling of reconstructed voxel space. The achieved results are presented in comparison with data acquired under the same conditions using a commercially available state-of-the-art CCD X-ray camera.
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