Development of a prototype gantry system for preclinical x-ray phase-contrast computed tomography

被引:41
|
作者
Tapfer, Arne [1 ,2 ]
Bech, Martin [1 ,2 ]
Pauwels, Bart [3 ]
Liu, Xuan [3 ]
Bruyndonckx, Peter [3 ]
Sasov, Alexander [3 ]
Kenntner, Johannes [4 ]
Mohr, Juergen [4 ]
Walter, Marco [5 ]
Schulz, Joachim [5 ]
Pfeiffer, Franz [1 ,2 ]
机构
[1] Tech Univ Munich, Dept Phys, D-85748 Garching, Germany
[2] Tech Univ Munich, Inst Med Engn IMETUM, D-85748 Garching, Germany
[3] SkyScan, B-2550 Kontich, Belgium
[4] Karlsruhe Inst Technol, Inst Microstruct Technol, D-76344 Karlsruhe, Germany
[5] Microworks, D-76137 Karlsruhe, Germany
基金
欧洲研究理事会;
关键词
x-ray imaging; phase contrast; computed tomography; micro-computed tomography;
D O I
10.1118/1.3644844
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: To explore the potential of grating-based x-ray phase-contrast imaging for clinical applications, a first compact gantry system was developed. It is designed such that it can be implemented into an in-vivo small-animal phase-contrast computed tomography (PC-CT) scanner. The purpose of the present study is to assess the accuracy and quantitativeness of the described gantry in both absorption and phase-contrast. Methods: A phantom, containing six chemically well-defined liquids, was constructed. A tomography scan with cone-beam reconstruction of this phantom was performed yielding the spatial distribution of the linear attenuation coefficient mu and decrement delta of the complex refractive index. Theoretical values of mu and delta were calculated for each liquid from tabulated data and compared with the experimentally measured values. Additionally, a color-fused image representation is proposed to display the complementary absorption and phase-contrast information in a single image. Results: Experimental and calculated data of the phantom agree well confirming the quantitativeness and accuracy of the reconstructed spatial distributions of mu and delta. The proposed color-fused image representation, which combines the complementary absorption and phase information, considerably helps in distinguishing the individual substances. Conclusions: The concept of grating-based phase-contrast computed tomography (CT) can be implemented into a compact, cone-beam geometry gantry setup. The authors believe that this work represents an important milestone in translating phase-contrast x-ray imaging from previous proof-of-principle experiments to first preclinical biomedical imaging applications on small-animal models. (C) 2011 American Association of Physicists in Medicine. [DOI: 10.1118/1.3644844]
引用
收藏
页码:5910 / 5915
页数:6
相关论文
共 50 条
  • [41] Benchtop phase-contrast X-ray imaging
    Gundogdu, O.
    Nirgianaki, E.
    Ismail, E. Che
    Jenneson, P. M.
    Bradley, D. A.
    APPLIED RADIATION AND ISOTOPES, 2007, 65 (12) : 1337 - 1344
  • [42] The possibility of phase-contrast X-ray microtomography
    Momose, A
    Hirano, K
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 1999, 38 : 625 - 629
  • [43] Simulations of single-shot X-ray phase-contrast tomography based on edge illumination
    Zhang, Cui
    Li, Chang
    Qi, Ji
    Shang, Hongjie
    Pan, Xiaodong
    Li, Gongping
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2020, 983 (983)
  • [44] Optimization of propagation-based x-ray phase-contrast tomography for breast cancer imaging
    Baran, P.
    Pacile, S.
    Nesterets, Y. I.
    Mayo, S. C.
    Dullin, C.
    Dreossi, D.
    Arfelli, F.
    Thompson, D.
    Lockie, D.
    McCormack, M.
    Taba, S. T.
    Brun, F.
    Pinamonti, M.
    Nickson, C.
    Hall, C.
    Dimmock, M.
    Zanconati, F.
    Cholewa, M.
    Quiney, H.
    Brennan, P. C.
    Tromba, G.
    Gureyev, T. E.
    PHYSICS IN MEDICINE AND BIOLOGY, 2017, 62 (06) : 2315 - 2332
  • [45] Intra-Operative Assessment of Cancer with X-Ray Phase Contrast Computed Tomography
    Partridge, T.
    Massimi, L.
    Wolfson, P.
    Jiang, J.
    Astolfo, A.
    Suaris, T.
    Havariyoun, G.
    Savvidis, S.
    Jones, C. J. Maughan
    Djurabekova, N.
    Hawker, P. M. Sam
    Smit, B.
    Larkin, O. J.
    Millard, E.
    Shorrock, W.
    Waltham, R. M.
    Ho, K. M. A.
    Mc Bain, H.
    Wilson, A.
    Peel, A.
    Shah, Z.
    Nelan, R. L.
    Delaney, H.
    Liyadipita, A.
    Levine, A. P.
    Dawas, K.
    Mohammadi, B.
    Qureshi, Y. A.
    Chouhan, M. D.
    Taylor, S. A.
    Mughal, M.
    Endrizzi, M.
    Hagen, C. K.
    Munro, P. R. T.
    Duffy, S. W.
    Jones, J. L.
    Novelli, M.
    Lovat, L. B.
    Haig, I. G.
    Bate, D.
    Olivo, A.
    DEVELOPMENTS IN X-RAY TOMOGRAPHY XIV, 2022, 12242
  • [46] Limited-angle tomography for analyzer-based phase-contrast x-ray imaging
    Majidi, Keivan
    Wernick, Miles N.
    Li, Jun
    Muehleman, Carol
    Brankov, Jovan G.
    PHYSICS IN MEDICINE AND BIOLOGY, 2014, 59 (13) : 3483 - 3500
  • [47] Polychromatic X-ray in-line phase-contrast tomography for soft tissue
    Guo, Xue-Jun
    Liu, Xiao-Lin
    Gu, Mu
    Ni, Chen
    Huang, Shi-Ming
    Liu, Bo
    EPL, 2012, 98 (01)
  • [48] Edge-illumination x-ray phase-contrast imaging
    Olivo, Alessandro
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2021, 33 (36)
  • [49] Project for applications of phase-contrast X-ray imaging to medicine using an X-ray interferometer
    Momose, A
    Yoneyama, A
    Takeda, T
    Itai, Y
    Tu, J
    Hirano, K
    MEDICAL APPLICATIONS OF PENETRATING RADIATION, 1999, 3770 : 23 - 31
  • [50] Reverse projection retrieval in edge illumination x-ray phase contrast computed tomography
    Hagen, Charlotte K.
    Endrizzi, Marco
    Diemoz, Paul C.
    Olivo, Alessandro
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2016, 49 (25)