Quantitative Phase Retrieval of Heterogeneous Samples from Spectral X-ray Measurements

被引:4
|
作者
Vazquez, Ivan [1 ]
Fredette, Nathaniel R. [2 ]
Das, Mini [1 ,2 ]
机构
[1] Univ Houston, Dept Phys, Houston, TX 77204 USA
[2] Univ Houston, Dept Biomed Engn, Houston, TX 77204 USA
关键词
Phase contrast; Phase retrieval; Photon counting detector; Polychromatic microfocus source; IMAGE;
D O I
10.1117/12.2513513
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
We recently proposed a method for retrieving absorption and phase properties of samples using a set of spectral x-ray measurements obtained in phase enhanced geometries. The spectral measurements can be obtained using state-of-the-art photon counting detectors (PCDs). These detectors permit the use of polychromatic sources and record accurate spectroscopic information in each pixel from a single X-ray exposure. In previous simulations and benchtop experiments we demonstrated that our method can be used to obtain quantitatively accurate absorption and phase properties of samples with effective atomic numbers (Z(eff)) that are close to soft tissue. This report expands on those findings to include heterogeneous samples to emulate complex composition in biological materials as well as samples with relatively high Zeff, such as bones and microcalcifications. Here we also demonstrate that excellent quantitative estimates of multiple object properties can be simultaneously obtained for these heterogeneous samples when spectral data is available. These multi-contrast estimates would allow differentiation of materials that would otherwise be indistinguishable using conventional, absorption contrast imaging. These preliminary results including phase retrieval of Aluminum rod also confirms that the slowly varying phase approximation used in PB-PCI transport of intensity models will not hinder their applicability for complex tissue imaging and small animal imaging.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Quantitative tomographic X-ray profiling of non-Bragg diffracting materials using phase retrieval X-ray diffractometry
    Nikulin, AY
    Horney, RB
    Darahanau, A
    Svalbe, ID
    Bigault, T
    Ziegler, E
    OPTICS COMMUNICATIONS, 2004, 235 (1-3) : 49 - 54
  • [22] Phase retrieval from one single phase contrast x-ray image
    Wu, Xizeng
    Yan, Aimin
    OPTICS EXPRESS, 2009, 17 (13): : 11187 - 11196
  • [23] Model Validation for Quantitative X-Ray Measurements
    Reusch, L. M.
    Franz, P.
    Den Hartog, D. J.
    Goetz, J. A.
    Nornberg, M. D.
    VanMeter, P.
    FUSION SCIENCE AND TECHNOLOGY, 2018, 74 (1-2) : 167 - 176
  • [24] Phase retrieval in quantitative x-ray microtomography with a single sample-to-detector distance
    Chen, R. C.
    Xie, H. L.
    Rigon, L.
    Longo, R.
    Castelli, E.
    Xiao, T. Q.
    OPTICS LETTERS, 2011, 36 (09) : 1719 - 1721
  • [25] DOSE RATE AND SPECTRAL MEASUREMENTS FROM PULSED X-RAY GENERATORS
    TOCHILIN, E
    GOLDSTEIN, N
    HEALTH PHYSICS, 1966, 12 (12): : 1705 - +
  • [26] Quantitative phase measurements of human cell nuclei using X-ray ptychography
    Schwenke, Jorg
    Yusuf, Mohammed
    Shemilt, Laura A.
    Wagner, Ulrich
    Sajid, Atiqa
    Morrison, Graeme R.
    Zhang, Fucai
    Parsons, Aaron
    Rau, Christoph
    Robinson, Ian K.
    JOURNAL OF SYNCHROTRON RADIATION, 2021, 28 : 1166 - 1173
  • [27] Unambiguous x-ray phase retrieval from Fraunhofer diffraction data
    Siu, KKW
    Nikulin, AY
    Wells, P
    Harvey, E
    Bigault, T
    Freund, AK
    Ishikawa, T
    JOURNAL OF APPLIED PHYSICS, 2003, 93 (09) : 5161 - 5166
  • [28] X-RAY TIMING AND SPECTRAL MEASUREMENTS OF X-PERSEI
    ROBBA, NR
    WARWICK, RS
    ASTROPHYSICAL JOURNAL, 1989, 346 (01): : 469 - 474
  • [29] A phase retrieval algorithm for X-ray phase contrast imaging
    Wu, Jie
    Chen, Jiabi
    OPTIK, 2013, 124 (09): : 864 - 866
  • [30] X-ray phase-attenuation duality and phase retrieval
    Wu, XZ
    Liu, H
    Yan, AM
    OPTICS LETTERS, 2005, 30 (04) : 379 - 381