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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >On the evolution and relative merits of hard X-ray phase-contrast imaging methods
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On the evolution and relative merits of hard X-ray phase-contrast imaging methods

机译:硬X射线相衬成像方法的发展及相对优点

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摘要

This review provides a brief overview, albeit from a somewhat personal perspective, of the evolution and key features of various hard X-ray phasecontrast imaging (PCI) methods of current interest in connection with translation to a wide range of imaging applications. Although such methods have already found wide-ranging applications using synchrotron sources, application to dynamic studies in a laboratory/clinical context, for example for in vivo imaging, has been slow due to the current limitations in the brilliance of compact laboratory sources and the availability of suitable high-performance X-ray detectors. On the theoretical side, promising new PCI methods are evolving which can record both components of the phase gradient in a single exposure and which can accept a relatively large spectral bandpass. In order to help to identify the most promising paths forward, we make some suggestions as to how the various PCI methods might be compared for performance with a particular view to identifying those which are the most efficient, given the fact that source performance is currently a key limiting factor on the improved performance and applicability of PCI systems, especially in the context of dynamic sample studies. The rapid ongoing development of both suitable improved sources and detectors gives strong encouragement to the view that hard X-ray PCI methods are poised for improved performance and an even wider range of applications in the near future.
机译:这篇综述尽管从某种程度上是个人角度,但还是简要介绍了当前感兴趣的各种硬X射线相衬成像(PCI)方法的发展和关键特征,并将其转换为多种成像应用。尽管这样的方法已经发现使用同步加速器源的广泛应用,但是由于当前紧凑型实验室源的光辉性和可用性方面的局限性,在实验室/临床环境中进行动态研究(例如体内成像)的应用进展缓慢合适的高性能X射线探测器。从理论上讲,正在发展有希望的新PCI方法,该方法可以在一次曝光中记录相梯度的两个分量,并且可以接受相对较大的光谱带通。为了帮助确定最有希望的发展途径,鉴于当前的源性能是一个事实,我们就如何比较各种PCI方法的性能提出了一些建议,并以特定的观点来确定最有效的方法。改善PCI系统性能和适用性的关键限制因素,尤其是在动态样本研究的情况下。合适的改进光源和检测器的快速发展正在大力鼓励这样一种观点,即硬X射线PCI方法已准备好在不久的将来提高性能并扩大应用范围。

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