Contrast-enhancement, image noise and dual-energy simulations for quantum-counting clinical CT

被引:11
|
作者
Kappler, S. [1 ]
Niederloehner, D. [1 ]
Stierstorfer, K. [1 ]
Flohr, T. [1 ]
机构
[1] Siemens AG, Healthcare Sector, D-91301 Forchheim, Germany
关键词
CT; CTDE; DET; SYS; COMPUTED-TOMOGRAPHY;
D O I
10.1117/12.843650
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The spectral sensitivity of quantum-counting detectors promises increased contrast-to-noise ratios and dual-energy capabilities for Computed Tomography (CT). In this article we quantify the benefits as well as the conceptual limitations of this technology under realistic clinical conditions. We present detailed simulations of a CT system with CdZnTe-based quantum-counting detector and compare to a conventional energy-integrating detector with Gd2O2S scintillator. Detector geometries and pixel layouts are adapted to specific requirements of clinical CT and its high-flux environment. The counting detector is realized as a two-threshold counter. An image-based method is used to adapt thresholds and data weights optimizing contrasts and image noise with respect to the typical spectra provided by modern high-power tungsten anode X-ray tubes. We consider the case of moderate X-ray fluxes and compare contrasts and image noise at same patient dose and image sharpness. We find that the spectral sensitivity of such a CT system offers dose reduction potentials of 31.5% (9.2%) maintaining Iodine-water contrast-to-noise ratios at 120kVp (80kVp). The improved contrast-to-noise ratios result mainly from improved contrasts and not from reduced image noise. The presence of fluorescence effects in the sensor material is the reason why image noise levels are not significantly reduced in comparison to energy-integrating systems. Dual-energy performance of quantum-counting single-source CT in terms of bone-Iodine separation is found to be somewhat below the level of today's dual-source CT devices with optimized pre-filtration of the X-ray beams.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Complementary contrast media for metal artifact reduction in Dual-Energy CT
    Lambert, Jack W.
    Edic, Peter M.
    FitzGerald, Paul
    Torres, Andrew S.
    Yeh, Benjamin M.
    [J]. MEDICAL IMAGING 2015: PHYSICS OF MEDICAL IMAGING, 2015, 9412
  • [42] Spectra Optimization for Dual-Energy Contrast-Enhanced Breast CT
    de Carvalho, Pablo Milioni
    Carton, Ann-Katherine
    Saab-Puong, Sylvie
    Iordache, Razvan
    Muller, Serge
    [J]. MEDICAL IMAGING 2013: PHYSICS OF MEDICAL IMAGING, 2013, 8668
  • [43] Optimizing dual-energy CT technique for iodine-based contrast-to-noise ratio, a theoretical study
    Terzioglu, Fatma
    Sidky, Emil Y.
    Phillips, John Paul
    Reiser, Ingrid S.
    Bal, Guillaume
    Pan, Xiaochuan
    [J]. MEDICAL PHYSICS, 2024, 51 (04) : 2871 - 2881
  • [44] Dual-Energy CT: Dual-KV Techniques and Clinical Applications
    McCollough, C.
    [J]. MEDICAL PHYSICS, 2008, 35 (06)
  • [45] Dual-contrast decomposition of dual-energy CT using convolutional neural networks
    Shapira, Nadav
    Cao, Wenchao
    Liu, Leening P.
    Leiner, Tim
    Smits, Maarten L. J.
    Noel, Peter B.
    [J]. MEDICAL IMAGING 2021: PHYSICS OF MEDICAL IMAGING, 2021, 11595
  • [46] Clinical Analysis of a Dual-Energy CT Joint Statistical Image Reconstruction Method in Proton Therapy
    Chen, X.
    Medrano, M.
    Ge, T.
    Liao, R.
    Politte, D.
    Whiting, B.
    Hao, Y.
    Williamson, J.
    O'Sullivan, J.
    Zhao, T.
    [J]. MEDICAL PHYSICS, 2022, 49 (06) : E806 - E806
  • [47] A Novel Image Restoration Method Assisted by Reference Image in Dual-energy CT
    Li, Yuanji
    Zhang, Li
    Kang, Kejun
    [J]. 2013 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (NSS/MIC), 2013,
  • [48] Spectral CT imaging: Technical principles of dual-energy CT and multi-energy photon-counting CT
    Greffier, Joel
    Villani, Nicolas
    Defez, Didier
    Dabli, Djamel
    Si-Mohamed, Salim
    [J]. DIAGNOSTIC AND INTERVENTIONAL IMAGING, 2023, 104 (04) : 167 - 177
  • [49] Assessment of Liver Fat: Dual-Energy CT versus Conventional CT with and without Contrast
    Xu, Jack Junchi
    Boesen, Mikkel Ranum
    Hansen, Sofie Lindskov
    Ulriksen, Peter Sommer
    Holm, Soren
    Lonn, Lars
    Hansen, Kristoffer Lindskov
    [J]. DIAGNOSTICS, 2022, 12 (03)
  • [50] Quantitative comparison of dual-energy CT and differential phase contrast CT imaging methods
    Zhang, Xin
    Su, Ting
    Xia, Dongmei
    Liang, Dong
    Ge, Yongshuai
    [J]. MEDICAL IMAGING 2022: PHYSICS OF MEDICAL IMAGING, 2022, 12031