Complex dark-field contrast and its retrieval in x-ray phase contrast imaging implemented with Talbot interferometry

被引:3
|
作者
Yang, Yi [1 ]
Tang, Xiangyang [1 ]
机构
[1] Emory Univ, Sch Med, Dept Radiol & Imaging Sci, Atlanta, GA 30322 USA
关键词
x-ray differential phase contrast imaging; x-ray Talbot interferometry; x-ray dark-field imaging; x-ray phase contrast CT; complex dark-field contrast; phase-attenuation duality; COMPUTED-TOMOGRAPHY; SIGNAL; GRATINGS;
D O I
10.1118/1.4896098
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: Under the existing theoretical framework of x-ray phase contrast imaging methods implemented with Talbot interferometry, the dark-field contrast refers to the reduction in interference fringe visibility due to small-angle x-ray scattering of the subpixel microstructures of an object to be imaged. This study investigates how an object's subpixel microstructures can also affect the phase of the intensity oscillations. Methods: Instead of assuming that the object's subpixel microstructures distribute in space randomly, the authors' theoretical derivation starts by assuming that an object's attenuation projection and phase shift vary at a characteristic size that is not smaller than the period of analyzer grating G(2) and a characteristic length d(c). Based on the paraxial Fresnel-Kirchhoff theory, the analytic formulae to characterize the zeroth- and first-order Fourier coefficients of the x-ray irradiance recorded at each detector cell are derived. Then the concept of complex dark-field contrast is introduced to quantify the influence of the object's microstructures on both the interference fringe visibility and the phase of intensity oscillations. A method based on the phase-attenuation duality that holds for soft tissues and high x-ray energies is proposed to retrieve the imaginary part of the complex dark-field contrast for imaging. Through computer simulation study with a specially designed numerical phantom, they evaluate and validate the derived analytic formulae and the proposed retrieval method. Results: Both theoretical analysis and computer simulation study show that the effect of an object's subpixel microstructures on x-ray phase contrast imaging method implemented with Talbot interferometry can be fully characterized by a complex dark-field contrast. The imaginary part of complex dark-field contrast quantifies the influence of the object's subpixel microstructures on the phase of intensity oscillations. Furthermore, at relatively high energies, for soft tissues it can be retrieved for imaging with a method based on the phase-attenuation duality. Conclusions: The analytic formulae derived in this work to characterize the complex dark-field contrast in x-ray phase contrast imaging method implemented with Talbot interferometry are of significance, which may initiate more activities in the research and development of x-ray differential phase contrast imaging for extensive biomedical applications. (C) 2014 American Association of Physicists in Medicine.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] Complex dark-field contrast in grating-based x-ray phase contrast imaging
    Yang, Yi
    Tang, Xiangyang
    MEDICAL IMAGING 2015: PHYSICS OF MEDICAL IMAGING, 2015, 9412
  • [2] The second-order differential phase contrast and its retrieval for imaging with x-ray Talbot interferometry
    Yang, Yi
    Tang, Xiangyang
    MEDICAL PHYSICS, 2012, 39 (12) : 7237 - 7253
  • [3] 2D grating simulation for X-ray phase-contrast and dark-field imaging with a Talbot interferometer
    Zanette, Irene
    David, Christian
    Rutishauser, Simon
    Weitkamp, Timm
    X-RAY OPTICS AND MICROANALYSIS, PROCEEDINGS, 2010, 1221 : 73 - +
  • [4] On detailed contrast of biomedical object in X-ray dark-field imaging
    Shimao, Daisuke
    Sugiyama, Hiroshi
    Kunisada, Toshiyuki
    Hyodo, Kazuyuki
    Mori, Koichi
    Ando, Masami
    SYNCHROTRON RADIATION INSTRUMENTATION, PTS 1 AND 2, 2007, 879 : 1960 - +
  • [5] X-ray Dark-Field Imaging for Improved Contrast in Historical Handwritten Literature
    Akstaller, Bernhard
    Schreiner, Stephan
    Dietrich, Lisa
    Rauch, Constantin
    Schuster, Max
    Ludwig, Veronika
    Hofmann-Randall, Christina
    Michel, Thilo
    Anton, Gisela
    Funk, Stefan
    JOURNAL OF IMAGING, 2022, 8 (09)
  • [6] State of the Art of X-ray Speckle-Based Phase-Contrast and Dark-Field Imaging
    Zdora, Marie-Christine
    JOURNAL OF IMAGING, 2018, 4 (05)
  • [7] X-ray dark-field phase-contrast imaging: Origins of the concept to practical implementation and applications
    Ando, Masami
    Gupta, Rajiv
    Iwakoshi, Akari
    Kim, Jong-Ki
    Shimao, Daisuke
    Sugiyama, Hiroshi
    Sunaguchi, Naoki
    Yuasa, Tetsuya
    Ichihara, Shu
    PHYSICA MEDICA-EUROPEAN JOURNAL OF MEDICAL PHYSICS, 2020, 79 : 188 - 208
  • [8] Phase-Contrast and Dark-Field Imaging
    Zabler, Simon
    JOURNAL OF IMAGING, 2018, 4 (10):
  • [9] Hybrid dark-field and attenuation contrast retrieval for laboratory-based X-ray tomography
    Doherty, Adam
    Buchanan, Ian
    Roche I Morgo, Oriol
    Astolfo, Alberto
    Savvidis, Savvas
    Gerli, Mattia F. M.
    Citro, Antonio
    Olivo, Alessandro
    Endrizzi, Marco
    OPTICA, 2024, 11 (12): : 1603 - 1613
  • [10] Phase-contrast X-ray imaging based on interferometry
    Momose, A
    JOURNAL OF SYNCHROTRON RADIATION, 2002, 9 : 136 - 142