Joint Statistical Iterative Material Image Reconstruction for Spectral Computed Tomography Using a Semi-Empirical Forward Model
暂无分享,去创建一个
Franz Pfeiffer | Peter B. Noël | Korbinian Mechlem | Sebastian Ehn | Thorsten Sellerer | Eva Braig | Daniela Münzel | F. Pfeiffer | P. Noël | K. Mechlem | Eva Braig | S. Ehn | T. Sellerer | D. Münzel
[1] Lei Zhu,et al. Iterative image-domain decomposition for dual-energy CT. , 2014, Medical physics.
[2] Thorsten M. Buzug,et al. Polychromatic Iterative Statistical Material Image Reconstruction for Photon-Counting Computed Tomography , 2016, Int. J. Biomed. Imaging.
[3] Marc Kachelrieß,et al. Image-based dual energy CT using optimized precorrection functions: A practical new approach of material decomposition in image domain. , 2009, Medical physics.
[4] J. Sijbers,et al. An energy-based beam hardening model in tomography. , 2002, Physics in medicine and biology.
[5] Li Zhang,et al. X-ray spectrum estimation from transmission measurements using the expectation maximization method , 2007, 2007 IEEE Nuclear Science Symposium Conference Record.
[6] Franz Pfeiffer,et al. Spectral Photon-counting CT: Initial Experience with Dual-Contrast Agent K-Edge Colonography. , 2017, Radiology.
[7] E. Roessl,et al. Cramér–Rao lower bound of basis image noise in multiple-energy x-ray imaging , 2009, Physics in medicine and biology.
[8] Amir Pourmorteza,et al. Abdominal Imaging with Contrast-enhanced Photon-counting CT: First Human Experience. , 2016, Radiology.
[9] Jin Peng,et al. Liver virtual non-enhanced CT with dual-source, dual-energy CT: a preliminary study , 2010, European Radiology.
[10] E. Ritman,et al. Human Imaging With Photon Counting–Based Computed Tomography at Clinical Dose Levels: Contrast-to-Noise Ratio and Cadaver Studies , 2016, Investigative radiology.
[11] R. Alvarez. Estimator for photon counting energy selective x-ray imaging with multibin pulse height analysis. , 2011, Medical physics.
[12] A. Macovski,et al. Energy-selective reconstructions in X-ray computerised tomography , 1976, Physics in medicine and biology.
[13] Mark A. Anastasio,et al. Proximal ADMM for Multi-Channel Image Reconstruction in Spectral X-ray CT , 2014, IEEE Transactions on Medical Imaging.
[14] Jeffrey A. Fessler,et al. Statistical Sinogram Restoration in Dual-Energy CT for PET Attenuation Correction , 2009, IEEE Transactions on Medical Imaging.
[15] A Fenster,et al. An accurate method for direct dual-energy calibration and decomposition. , 1990, Medical physics.
[16] Hakan Erdogan,et al. Ordered subsets algorithms for transmission tomography. , 1999, Physics in medicine and biology.
[17] Jeffrey A. Fessler,et al. Multi-Material Decomposition Using Statistical Image Reconstruction for Spectral CT , 2014, IEEE Transactions on Medical Imaging.
[18] W. Kalender,et al. Empirical Dual Energy Calibration (EDEC) for Cone-Beam Computed Tomography , 2006, 2006 IEEE Nuclear Science Symposium Conference Record.
[19] Alvin C. Silva,et al. Iterative Reconstruction Technique for Reducing Body Radiation Dose at Ct: Feasibility Study Hara Et Al. Ct Iterative Reconstruction Technique Gastrointestinal Imaging Original Research , 2022 .
[20] J Herzen,et al. Basis material decomposition in spectral CT using a semi-empirical, polychromatic adaption of the Beer-Lambert model. , 2017, Physics in medicine and biology.
[21] A. Istratov,et al. Exponential analysis in physical phenomena , 1999 .
[22] Darin P Clark,et al. Spectral diffusion: an algorithm for robust material decomposition of spectral CT data , 2014, Physics in medicine and biology.
[23] Yurii Nesterov,et al. Smooth minimization of non-smooth functions , 2005, Math. Program..
[24] C. McCollough,et al. Virtual monochromatic imaging in dual-source dual-energy CT: radiation dose and image quality. , 2011, Medical physics.
[25] Ernst J. Rummeny,et al. Does Iterative Reconstruction Lower CT Radiation Dose: Evaluation of 15,000 Examinations , 2013, PloS one.
[26] Mulugeta Gebregziabher,et al. Dual-energy CT of the heart for diagnosing coronary artery stenosis and myocardial ischemia-initial experience , 2008, European Radiology.
[27] Jeffrey A. Fessler,et al. Combining Ordered Subsets and Momentum for Accelerated X-Ray CT Image Reconstruction , 2015, IEEE Transactions on Medical Imaging.
[28] K. Deng,et al. Clinical evaluation of dual-energy bone removal in CT angiography of the head and neck: comparison with conventional bone-subtraction CT angiography. , 2009, Clinical radiology.
[29] Xiaochuan Pan,et al. A robust method of x-ray source spectrum estimation from transmission measurements: Demonstrated on computer simulated, scatter-free transmission data , 2005 .
[30] K. Taguchi,et al. Vision 20/20: Single photon counting x-ray detectors in medical imaging. , 2013, Medical physics.
[31] Axel Thran,et al. Statistical Reconstruction of Material Decomposed Data in Spectral CT , 2013, IEEE Transactions on Medical Imaging.
[32] Thomas Koehler,et al. Ultra Low Dose CT Pulmonary Angiography with Iterative Reconstruction , 2016, PloS one.
[33] Ken D. Sauer,et al. Model-Based Iterative Reconstruction for Dual-Energy X-Ray CT Using a Joint Quadratic Likelihood Model , 2014, IEEE Transactions on Medical Imaging.
[34] P. Joseph,et al. Noise considerations in dual energy CT scanning. , 1979, Medical physics.
[35] R. Mudde,et al. Beam hardening: analytical considerations of the effective attenuation coefficient of X-ray tomography. , 2007, Medical physics.
[36] L. MacDonald,et al. Quantitative material characterization from multi-energy photon counting CT. , 2013, Medical physics.
[37] Graham R. Davis,et al. X-ray microtomography scanner using time-delay integration for elimination of ring artefacts in the reconstructed image , 1997 .
[38] Xiaochuan Pan,et al. An algorithm for constrained one-step inversion of spectral CT data , 2015, Physics in medicine and biology.
[39] Ernst J. Rummeny,et al. Targeted dual-energy single-source CT for characterisation of urinary calculi: experimental and clinical experience , 2011, European Radiology.
[40] A. Mohammad-Djafari,et al. A full-spectral Bayesian reconstruction approach based on the material decomposition model applied in dual-energy computed tomography. , 2013, Medical physics.
[41] J. Leipsic,et al. Reduced iodine load at CT pulmonary angiography with dual-energy monochromatic imaging: comparison with standard CT pulmonary angiography--a prospective randomized trial. , 2012, Radiology.
[42] Li Zhang,et al. A weighted polynomial based material decomposition method for spectral x-ray CT imaging. , 2016, Physics in medicine and biology.
[43] Ernst J Rummeny,et al. Initial performance characterization of a clinical noise-suppressing reconstruction algorithm for MDCT. , 2011, AJR. American journal of roentgenology.