Evaluation of Abdominal Computed Tomography Image Quality Using a New Version of Vendor-Specific Model-Based Iterative Reconstruction
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Wei Wei | John Rong | Corey T Jensen | Eric P Tamm | Nicolaus A Wagner-Bartak | Aliya Qayyum | Xinming Liu | Janio Szklaruk | Adam G Chandler | Morgan E Telesmanich
[1] Joon Koo Han,et al. Assessment of a Model-Based, Iterative Reconstruction Algorithm (MBIR) Regarding Image Quality and Dose Reduction in Liver Computed Tomography , 2013, Investigative radiology.
[2] Ke Li,et al. Statistical model based iterative reconstruction (MBIR) in clinical CT systems: experimental assessment of noise performance. , 2014, Medical physics.
[3] Varut Vardhanabhuti,et al. Image Comparative Assessment Using Iterative Reconstructions: Clinical Comparison of Low-Dose Abdominal/Pelvic Computed Tomography Between Adaptive Statistical, Model-Based Iterative Reconstructions and Traditional Filtered Back Projection in 65 Patients , 2014, Investigative radiology.
[4] Jean-Baptiste Thibault,et al. A three-dimensional statistical approach to improved image quality for multislice helical CT. , 2007, Medical physics.
[5] Jean-Baptiste Thibault,et al. Model-based iterative reconstruction versus adaptive statistical iterative reconstruction and filtered back projection in liver 64-MDCT: focal lesion detection, lesion conspicuity, and image noise. , 2013, AJR. American journal of roentgenology.
[6] Masaki Katsura,et al. Model-Based Iterative Reconstruction Technique for Ultralow-Dose Chest CT: Comparison of Pulmonary Nodule Detectability With the Adaptive Statistical Iterative Reconstruction Technique , 2013, Investigative radiology.
[7] M. Körner,et al. Filtered back projection, adaptive statistical iterative reconstruction, and a model-based iterative reconstruction in abdominal CT: an experimental clinical study. , 2013, Radiology.
[8] Keith T. Chan,et al. Standard and reduced radiation dose liver CT images: adaptive statistical iterative reconstruction versus model-based iterative reconstruction-comparison of findings and image quality. , 2014, Radiology.
[9] David H. Kim,et al. Abdominal CT with model-based iterative reconstruction (MBIR): initial results of a prospective trial comparing ultralow-dose with standard-dose imaging. , 2012, AJR. American journal of roentgenology.
[10] Samuel L Brady,et al. Investigation of American Association of Physicists in Medicine Report 204 size-specific dose estimates for pediatric CT implementation. , 2012, Radiology.
[11] E. Samei,et al. Low-tube-voltage, high-tube-current multidetector abdominal CT: improved image quality and decreased radiation dose with adaptive statistical iterative reconstruction algorithm--initial clinical experience. , 2010, Radiology.
[12] Atul Padole,et al. Dose reduction in pediatric abdominal CT: use of iterative reconstruction techniques across different CT platforms , 2015, Pediatric Radiology.
[13] M. Goodsitt,et al. Model-based iterative reconstruction: effect on patient radiation dose and image quality in pediatric body CT. , 2013, Radiology.
[14] D. Volders,et al. Model-based iterative reconstruction and adaptive statistical iterative reconstruction techniques in abdominal CT: comparison of image quality in the detection of colorectal liver metastases. , 2013, Radiology.
[15] Mannudeep K. Kalra,et al. Comparison of Hybrid and Pure Iterative Reconstruction Techniques With Conventional Filtered Back Projection: Dose Reduction Potential in the Abdomen , 2012, Journal of computer assisted tomography.
[16] Sebastian Feuerlein,et al. New iterative reconstruction techniques for cardiovascular computed tomography: how do they work, and what are the advantages and disadvantages? , 2011, Journal of cardiovascular computed tomography.