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Energy sensitive X-ray phase contrast imaging with a CdTe-Timepix3 detector

机译:使用CdTe-Timepix3检测器的能量敏感型X射线相衬成像

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The Timepix3 is a photon counting semiconductor detector that enables to simultaneously measure the energy and time of arrival of each incident X- ray photon. These properties, along with the high spatial resolution and high efficiency, due to the CdTe sensor material, can be exploited for several imaging applications, such as X-ray phase contrast imaging (XPCI).XPCI relies on the phase shift suffered by X-rays when traversing the sample. This study focuses on the free-space propagation XPCI and single mask edge illumination XPCI methods, which are two approaches that are well suited for laboratory implementations.Since both techniques are highly sensitive to charge-sharing, the Timepix3 energy and time information for each photon are used to minimize this effect by using pixel clustering methods. In addition, the performance of both XPCI techniques across a 30kVp source spectrum is studied using the energy-resolving capabilities of the detector. In both cases, the phase contrast and signal-to-noise ratio (SNR) are assessed as a function of different energy. Finally, it is demonstrated that phase contrast enhancement is feasible with pixel clustering and energy-selection for both XPCI techniques.
机译:Timepix3是一个光子计数半导体检测器,能够同时测量每个入射X射线光子的能量和到达时间。这些特性以及CdTe传感器材料带来的高空间分辨率和高效率可用于多种成像应用,例如X射线相衬成像(XPCI)。XPCI依靠X-射线所遭受的相移遍历样品时会发出光线。这项研究的重点是自由空间传播XPCI和单掩模边缘照明XPCI方法,这两种方法非常适合实验室实施,由于这两种技术都对电荷共享高度敏感,因此每个光子的Timepix3能量和时间信息通过使用像素聚类方法来最小化此影响。此外,使用探测器的能量分辨能力,研究了两种XPCI技术在30kVp源频谱上的性能。在这两种情况下,相位对比度和信噪比(SNR)都是根据不同能量进行评估的。最后,证明了两种XPCI技术在像素聚类和能量选择方面都可以实现相位对比增强。

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