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使用具有70 kVp多色X射线光谱的高能X射线相衬CT进行定量成像。

Quantitative imaging using high-energy X-ray phase-contrast CT with a 70 kVp polychromatic X-ray spectrum.

作者信息

Sarapata Adrian, Willner Marian, Walter Marco, Duttenhofer Thomas, Kaiser Konradin, Meyer Pascal, Braun Christian, Fingerle Alexander, Noël Peter B, Pfeiffer Franz, Herzen Julia

出版信息

Opt Express. 2015 Jan 12;23(1):523-35. doi: 10.1364/OE.23.000523.

Abstract

Imaging of large and dense objects with grating-based X-ray phase-contrast computed tomography requires high X-ray photon energy and large fields of view. It has become increasingly possible due to the improvements in the grating manufacturing processes. Using a high-energy X-ray phase-contrast CT setup with a large (10 cm in diameter) analyzer grating and operated at an acceleration tube voltage of 70 kVp, we investigate the complementarity of both attenuation and phase contrast modalities with materials of various atomic numbers (Z). We confirm experimentally that for low-Z materials, phase contrast yields no additional information content over attenuation images, yet it provides increased contrast-to-noise ratios (CNRs). The complementarity of both signals can be seen again with increasing Z of the materials and a more comprehensive material characterization is thus possible. Imaging of a part of a human cervical spine with intervertebral discs surrounded by bones and various soft tissue types showcases the benefit of high-energy X-ray phase-contrast system. Phase-contrast reconstruction reveals the internal structure of the discs and makes the boundary between the disc annulus and nucleus pulposus visible. Despite the fact that it still remains challenging to develop a high-energy grating interferometer with a broad polychromatic source with satisfactory optical performance, improved image quality for phase contrast as compared to attenuation contrast can be obtained and new exciting applications foreseen.

摘要

使用基于光栅的X射线相衬计算机断层扫描对大型致密物体进行成像需要高X射线光子能量和大视野。由于光栅制造工艺的改进,这一点变得越来越可行。我们使用具有大型(直径10厘米)分析光栅的高能X射线相衬CT装置,并在70 kVp的加速管电压下运行,研究了不同原子序数(Z)材料的衰减和相衬模式的互补性。我们通过实验证实,对于低Z材料,相衬在衰减图像上不会产生额外的信息内容,但它提供了更高的对比度噪声比(CNR)。随着材料Z值的增加,可以再次看到两种信号的互补性,从而有可能进行更全面的材料表征。对包含被骨骼和各种软组织类型包围的椎间盘的人体颈椎部分进行成像,展示了高能X射线相衬系统的优势。相衬重建揭示了椎间盘的内部结构,并使椎间盘纤维环和髓核之间的边界可见。尽管开发具有令人满意光学性能的宽多色源高能光栅干涉仪仍然具有挑战性,但与衰减对比度相比,可以获得更高的相衬图像质量,并预见了新的令人兴奋的应用。

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