Effective atomic number and electron density determination using spectral x-ray CT

被引:4
|
作者
Busi, Matteo [1 ]
Kehres, Jan [1 ]
Khalil, Mohamad [1 ]
Olsen, Ulrik L. [1 ]
机构
[1] Tech Univ Denmark, DTU Phys, Fysikvej 311, DK-2800 Lyngby, Denmark
来源
ANOMALY DETECTION AND IMAGING WITH X-RAYS (ADIX) IV | 2019年 / 10999卷
关键词
Spectral X-ray CT; X-ray Characterization; Effective atomic number; Electron density; MULTIXME100; Threat Detection; Security Screening; COMPUTED-TOMOGRAPHY;
D O I
10.1117/12.2519851
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present Spectral X-ray Computed Tomography (SCT) estimations of material properties directly from energy-dependent measurements of linear attenuation coefficients (LAC). X-ray Computed Tomography (CT) is commonly utilized to characterize the internal properties of an object of interest. Dual-Energy X-ray CT allows material characterization into energy-independent physical properties such as Z(e) and electron density rho(e). However, it is not robust in presence of dense materials and metal artifacts. We report on the performance of a method for system-independent characterization of materials that introduces a spectroscopic detector into X-ray CT, called spectral rho(e)/Z(e) estimation (SRZE). We benchmark the SRZE method against energy-integrated measurements in material classification tests, finding superior accuracy in the predictions. The advantage of this technique, over other methods for material characterization using x-ray CT, is that it does not require a set of reference materials for calibration. Moreover, the simultaneous detection of spectral features makes it robust to highly attenuating materials, since the energy intervals for which the attenuation is photon limited can easily be detected and excluded from the feature estimation.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Effective atomic number, electron density and kerma of gamma radiation for oxides of lanthanides
    Niranjan, R. S.
    Rudraswamy, B.
    Dhananjaya, N.
    PRAMANA-JOURNAL OF PHYSICS, 2012, 78 (03): : 451 - 458
  • [32] Correction for atomic number in X-ray electron probe microanalysis by spectra of reflected electrons
    N. P. Il’in
    Journal of Analytical Chemistry, 2015, 70 : 1092 - 1102
  • [33] Correction for Atomic Number in X-ray Electron Probe Microanalysis by Spectra of Reflected Electrons
    Il'in, N. P.
    JOURNAL OF ANALYTICAL CHEMISTRY, 2015, 70 (09) : 1092 - 1102
  • [34] Development of a Method to Determine Electron Density and Effective Atomic Number of High Atomic Number Solid Materials Using Dual-Energy Computed Tomography
    Bharati, Avinav
    Mandal, Susama Rani
    Gupta, Arun Kumar
    Seth, Amlesh
    Sharma, Raju
    Bhalla, Ashu S.
    Das, Chandan J.
    Chatterjee, S.
    Kumar, Pratik
    JOURNAL OF MEDICAL PHYSICS, 2019, 44 (01) : 49 - +
  • [35] Determination of Effective Atomic Number for Different Brands of Diclofenac Sodium Drug at 8 keV to 32 keV X-Ray Energy
    Manjunath, A.
    Kerur, Basavaraj R.
    Rautary, Tapash R.
    ADVANCED SCIENCE LETTERS, 2016, 22 (02) : 410 - 414
  • [36] The significance of the spectral correction of photon counting detector response in material classification from spectral X-ray CT
    Jumanazarov, Doniyor
    Koo, Jakeoung
    Poulsen, Henning F.
    Olsen, Ulrik L.
    Iovea, Mihai
    QUANTUM OPTICS AND PHOTON COUNTING 2021, 2021, 11771
  • [37] Measurement of electron density in dual-energy x-ray CT with monochromatic x rays and evaluation of its accuracy
    Tsunoo, Takanori
    Torikoshi, Masami
    Ohno, Yumiko
    Uesugi, Kentaro
    Yagi, Naoto
    MEDICAL PHYSICS, 2008, 35 (11) : 4924 - 4932
  • [38] Application of Particular X-ray Standing Wave for Accurate Determination of Electron Density
    Pobydaylo, Oksana V.
    Shevchenko, Michael B.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2005, 61 : C434 - C434
  • [39] Compressive Spectral X-Ray CT Reconstruction via Deep Learning
    Zhang, Tong
    Zhao, Shengjie
    Ma, Xu
    Restrepo, Carlos M. M.
    Arce, Gonzalo R. R.
    IEEE TRANSACTIONS ON COMPUTATIONAL IMAGING, 2022, 8 : 1038 - 1050
  • [40] Absolute Measurement of Effective Atomic Number and Electron Density using Dual-Energy Computed Tomography images
    Kim, Dae-Hong
    Kim, Hee-Joung
    Lee, Chang-Lae
    Cho, Hyo-Min
    Park, Hye-Suk
    Lee, Seung-Wan
    Choi, Yu-Na
    Kim, Ye-Seul
    Park, Su-Jin
    MEDICAL IMAGING 2012: PHYSICS OF MEDICAL IMAGING, 2012, 8313