Development of a scanner-specific simulation framework for photon-counting computed tomography
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Shobhit Sharma | Karl Stierstorfer | Elizabeth Jones | Brian P. Harrawood | Ehsan Abadi | Jayasai Rajagopal | Ehsan Samei | Jayasai R. Rajagopal | Anuj J. Kapadia | William P. Segars | Martin Sedlmair | E. Samei | W. Segars | B. Harrawood | K. Stierstorfer | M. Sedlmair | E. Abadi | A. Kapadia | E. Jones | Shobhit Sharma
[1] C. Svensson,et al. Evaluation of a Second-Generation Ultra-Fast Energy-Resolved ASIC for Photon-Counting Spectral CT , 2013, IEEE Transactions on Nuclear Science.
[2] Baiyu Chen,et al. Evaluation of conventional imaging performance in a research whole-body CT system with a photon-counting detector array , 2016, Physics in medicine and biology.
[3] J. Solomon,et al. Characteristic image quality of a third generation dual-source MDCT scanner: Noise, resolution, and detectability. , 2015, Medical physics.
[4] Shuai Leng,et al. Spectral performance of a whole-body research photon counting detector CT: quantitative accuracy in derived image sets , 2017, Physics in medicine and biology.
[5] Ehsan Samei,et al. The Effect of Contrast Material on Radiation Dose at CT: Part I. Incorporation of Contrast Material Dynamics in Anthropomorphic Phantoms. , 2017, Radiology.
[6] Ehsan Samei,et al. Impact of energy threshold on material quantification of contrast agents in photon-counting CT , 2019, Medical Imaging.
[7] Gregory M. Sturgeon,et al. Modeling Lung Architecture in the XCAT Series of Phantoms: Physiologically Based Airways, Arteries and Veins , 2018, IEEE Transactions on Medical Imaging.
[8] Andrew D. A. Maidment,et al. Optimized generation of high resolution breast anthropomorphic software phantoms. , 2012, Medical physics.
[9] Polad M Shikhaliev,et al. Beam hardening artefacts in computed tomography with photon counting, charge integrating and energy weighting detectors: a simulation study , 2005, Physics in medicine and biology.
[10] Steffen Kappler,et al. Low-dose lung cancer screening with photon-counting CT: a feasibility study , 2017, Physics in medicine and biology.
[11] Stefan Ulzheimer,et al. Feasibility of Dose-reduced Chest CT with Photon-counting Detectors: Initial Results in Humans. , 2017, Radiology.
[12] Katsuyuki Taguchi,et al. Spatio-energetic cross-talk in photon counting detectors: Numerical detector model (PcTK) and workflow for CT image quality assessment. , 2018, Medical physics.
[13] Jongduk Baek,et al. To bin or not to bin? The effect of CT system limiting resolution on noise and detectability , 2013, Physics in medicine and biology.
[14] Andrew D. A. Maidment. Virtual Clinical Trials for the Assessment of Novel Breast Screening Modalities , 2014, Digital Mammography / IWDM.
[15] Aldo Badano,et al. Accelerating Monte Carlo simulations of photon transport in a voxelized geometry using a massively parallel graphics processing unit. , 2009, Medical physics.
[16] S. Kappler,et al. Photon-Counting CT of the Brain: In Vivo Human Results and Image-Quality Assessment , 2017, American Journal of Neuroradiology.
[17] D. Tisseur,et al. Scattering correction using continuously thickness-adapted kernels , 2016 .
[18] K. Taguchi,et al. Vision 20/20: Single photon counting x-ray detectors in medical imaging. , 2013, Medical physics.
[19] Karl Stierstorfer,et al. Modeling the frequency‐dependent detective quantum efficiency of photon‐counting x‐ray detectors , 2018, Medical physics.
[20] Nooshin Kiarashi,et al. Development of realistic physical breast phantoms matched to virtual breast phantoms based on human subject data. , 2015, Medical physics.
[21] Cheng Xu,et al. A High-Rate Energy-Resolving Photon-Counting ASIC for Spectral Computed Tomography , 2012, IEEE Transactions on Nuclear Science.
[22] Gregory M. Sturgeon,et al. Modeling “Textured” Bones in Virtual Human Phantoms , 2019, IEEE Transactions on Radiation and Plasma Medical Sciences.
[23] K Stierstorfer,et al. Strategies for scatter correction in dual source CT. , 2010, Medical physics.
[24] 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.
[25] W. Paul Segars,et al. Virtual clinical trial in action: textured XCAT phantoms and scanner-specific CT simulator to characterize noise across CT reconstruction algorithms , 2018, Medical Imaging.
[26] Bruno Golosio,et al. The xraylib library for X-ray-matter interactions. Recent developments , 2011 .
[27] Amir Pourmorteza,et al. Photon-counting CT: Technical Principles and Clinical Prospects. , 2018, Radiology.
[28] John Hoffman,et al. Technical Note: FreeCT_wFBP: A robust, efficient, open-source implementation of weighted filtered backprojection for helical, fan-beam CT. , 2016, Medical physics.
[29] Daniel Turecek,et al. Characterization of Medipix3 With Synchrotron Radiation , 2011, IEEE Transactions on Nuclear Science.
[30] Stefan Ulzheimer,et al. Dose Efficiency of Quarter-Millimeter Photon-Counting Computed Tomography: First-in-Human Results , 2018, Investigative radiology.
[31] Andrew D. A. Maidment,et al. Realistic Simulation of Breast Tissue Microstructure in Software Anthropomorphic Phantoms , 2014, Digital Mammography / IWDM.
[32] Ehsan Samei,et al. Patient-based estimation of organ dose for a population of 58 adult patients across 13 protocol categories. , 2014, Medical physics.