Christopher H. Cagnon, Ph.D. - Publications

Affiliations: 
2003 University of California, Los Angeles, Los Angeles, CA 
Area:
Medical Biophysics, Biomedical Engineering, Computer Science

70 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2021 Hardy AJ, Bostani M, Kim GHJ, Cagnon CH, Zankl MA, McNitt-Gray M. Evaluating Size-Specific Dose Estimate (SSDE) as an Estimate of Organ Doses from Routine CT Exams Derived from Monte Carlo Simulations. Medical Physics. PMID 34309040 DOI: 10.1002/mp.15128  0.734
2019 Hardy AJ, Angel E, Bostani M, Cagnon C, McNitt-Gray M. Estimating Fetal Dose from Tube Current Modulated (TCM) and Fixed Tube Current (FTC) Abdominal/Pelvis CT Examinations. Medical Physics. PMID 30893477 DOI: 10.1002/Mp.13499  0.797
2018 Hardy AJ, Bostani M, Hernandez AM, Zankl M, McCollough C, Cagnon C, Boone JM, McNitt-Gray M. Estimating a Size-Specific Dose for Helical Head CT Examinations Using Monte Carlo Simulation Methods. Medical Physics. PMID 30565704 DOI: 10.1002/Mp.13301  0.742
2018 Hardy AJ, Bostani M, McMillan K, Zankl M, McCollough C, Cagnon C, McNitt-Gray M. Estimating Lung, Breast, and Effective Dose from Low-Dose Lung Cancer Screening CT Exams with Tube Current Modulation across a Range of Patient Sizes. Medical Physics. PMID 30118143 DOI: 10.1002/Mp.13131  0.696
2017 Bostani M, McMillan K, Lu P, Kim GHJ, Cody D, Arbique G, Bruce Greenberg S, DeMarco JJ, Cagnon CH, McNitt-Gray MF. Erratum: "Estimating organ doses from tube current modulated CT examinations using a generalized linear model" [Med. Phys. Vol 44 (4), 1500-1513 (2017)]. Medical Physics. 44: 3883. PMID 28685929 DOI: 10.1002/Mp.12324  0.746
2017 McMillan K, Bostani M, Cagnon CH, Yu L, Leng S, McCollough CH, McNitt-Gray MF. Estimating Patient Dose from CT Exams That Use Automatic Exposure Control: Development and Validation of Methods to Accurately Estimate Tube Current Values. Medical Physics. PMID 28477342 DOI: 10.1002/Mp.12314  0.739
2017 Demb J, Chu P, Nelson T, Hall D, Seibert A, Lamba R, Boone J, Krishnam M, Cagnon C, Bostani M, Gould R, Miglioretti D, Smith-Bindman R. Optimizing Radiation Doses for Computed Tomography Across Institutions: Dose Auditing and Best Practices. Jama Internal Medicine. PMID 28395000 DOI: 10.1001/Jamainternmed.2017.0445  0.585
2017 Bostani M, McMillan K, Lu P, Kim GH, Cody D, Arbique G, Bruce Greenberg S, DeMarco JJ, Cagnon CH, McNitt-Gray MF. Estimating Organ Doses from Tube Current Modulated CT Examinations using a Generalized Linear Model. Medical Physics. PMID 28112399 DOI: 10.1002/Mp.12119  0.777
2016 Fujii K, McMillan K, Bostani M, Cagnon C, McNitt-Gray M. Patient Size-Specific Analysis of Dose Indexes From CT Lung Cancer Screening. Ajr. American Journal of Roentgenology. 1-6. PMID 27726409 DOI: 10.2214/Ajr.16.16082  0.688
2016 Bostani M, Cagnon C, Sepahdari A, Beckett K, Oshiro T, McNitt-Gray M. TH‐AB‐207A‐04: Assessment of Patients’ Cumulative Effective Dose From CT Examinations Medical Physics. 43: 3860-3860. DOI: 10.1118/1.4958080  0.583
2016 Singhrao K, Bostani M, Hardy A, Cagnon C, McNitt-Gray M. TU-H-207A-06: The Effects of Various CT Tube Current Modulation (TCM) Schemes On Dose. Do You Really Know What Your TCM Scheme Is Doing? Medical Physics. 43: 3772-3773. DOI: 10.1118/1.4957642  0.472
2015 Seals KF, Lee EW, Cagnon CH, Al-Hakim RA, Kee ST. Radiation-Induced Cataractogenesis: A Critical Literature Review for the Interventional Radiologist. Cardiovascular and Interventional Radiology. PMID 26404628 DOI: 10.1007/S00270-015-1207-Z  0.46
2015 Smith-Bindman R, Moghadassi M, Wilson N, Nelson TR, Boone JM, Cagnon CH, Gould R, Hall DJ, Krishnam M, Lamba R, McNitt-Gray M, Seibert A, Miglioretti DL. Radiation Doses in Consecutive CT Examinations from Five University of California Medical Centers. Radiology. 142728. PMID 25988262 DOI: 10.1148/Radiol.2015142728  0.699
2015 Bostani M, Mueller JW, McMillan K, Cody DD, Cagnon CH, DeMarco JJ, McNitt-Gray MF. Accuracy of Monte Carlo simulations compared to in-vivo MDCT dosimetry. Medical Physics. 42: 1080-6. PMID 25652520 DOI: 10.1118/1.4906178  0.738
2015 Bostani M, McMillan K, Lu P, Kim HJ, Cagnon CH, DeMarco JJ, McNitt-Gray MF. Attenuation-based size metric for estimating organ dose to patients undergoing tube current modulated CT exams. Medical Physics. 42: 958-68. PMID 25652508 DOI: 10.1118/1.4906132  0.712
2015 Fujii K, McMillan K, Bostani M, Cagnon C, McNitt-Gray M. TH-EF-BRA-01: Patient-Size Specific Analysis of CT Doses From Lung Cancer Screening Medical Physics. 42: 3744-3745. DOI: 10.1118/1.4926308  0.549
2015 Fujii K, Bostani M, Cagnon C, McNitt-Gray M. SU-E-I-32: Benchmarking Head CT Doses: A Pooled Vs. Protocol Specific Analysis of Radiation Doses in Adult Head CT Examinations Medical Physics. 42: 3248-3248. DOI: 10.1118/1.4924029  0.531
2015 Fujii K, McMillan K, Bostani M, Cagnon C, McNitt-Gray M. SU‐E‐I‐31: Differences Observed in Radiation Doses Across 2 Similar CT Scanners From Adult Brain‐Neck CT Angiography Medical Physics. 42: 3248-3248. DOI: 10.1118/1.4924028  0.596
2014 McMillan K, Bostani M, Cagnon C, Zankl M, Sepahdari AR, McNitt-Gray M. Size-specific, scanner-independent organ dose estimates in contiguous axial and helical head CT examinations. Medical Physics. 41: 121909. PMID 25471969 DOI: 10.1118/1.4901517  0.771
2014 Bostani M, McMillan K, DeMarco JJ, Cagnon CH, McNitt-Gray MF. Validation of a Monte Carlo model used for simulating tube current modulation in computed tomography over a wide range of phantom conditions/challenges. Medical Physics. 41: 112101. PMID 25370652 DOI: 10.1118/1.4887807  0.688
2014 McMillan K, Bostani M, Zankl M, DeMarco J, Cagnon C, McNitt-Gray M. MO-E-17A-08: Attenuation-Based Size Adjusted, Scanner-Independent Organ Dose Estimates for Head CT Exams: TG 204 for Head CT Medical Physics. 41: 425-425. DOI: 10.1118/1.4889159  0.63
2013 Khatonabadi M, Mueller J, McMillan K, Flores C, Cody D, Cagnon C, DeMarco J, McNitt-Gray M. TU-G-103-04: The Accuracy of Monte Carlo Based Dose Estimates Compared to In-Vivo Dose Measurements. Medical Physics. 40: 459. PMID 28518778 DOI: 10.1118/1.4815473  0.816
2013 Khatonabadi M, Chu G, Oria D, Cagnon C, DeMarco J, McNitt-Gray M. MO-D-134-02: Estimating Organ Dose From CT Scans Performed with Tube Current Modulated Scans. Medical Physics. 40: 402. PMID 28518462 DOI: 10.1118/1.4815260  0.857
2013 Khatonabadi M, Oria D, Mok K, Cagnon C, DeMarco J, McNitt-Gray M. MO-D-134-04: Calculating Size Specific Dose Estimates (SSDE): The Effect of Using Water Equivalent Diameter (WED) Vs. Effective Diameter (ED) On Organ Dose Estimates When Applying the Conversion Coefficients of TG204. Medical Physics. 40: 402. PMID 28518434 DOI: 10.1118/1.4815262  0.823
2013 Zhang D, Cagnon CH, Villablanca JP, McCollough CH, Cody DD, Zankl M, Demarco JJ, McNitt-Gray MF. Estimating peak skin and eye lens dose from neuroperfusion examinations: use of Monte Carlo based simulations and comparisons to CTDIvol, AAPM Report No. 111, and ImPACT dosimetry tool values. Medical Physics. 40: 091901. PMID 24007152 DOI: 10.1118/1.4816652  0.771
2013 Kruger R, Flynn MJ, Judy PF, Cagnon CH, Seibert JA. Effective dose assessment for participants in the National Lung Screening Trial undergoing posteroanterior chest radiographic examinations. Ajr. American Journal of Roentgenology. 201: 142-6. PMID 23789668 DOI: 10.2214/Ajr.12.9181  0.417
2013 Mathieu KB, Turner AC, Khatonabadi M, McNitt-Gray MF, Cagnon CH, Cody DD. Varying kVp as a means of reducing CT breast dose to pediatric patients. Physics in Medicine and Biology. 58: 4455-69. PMID 23756499 DOI: 10.1088/0031-9155/58/13/4455  0.842
2013 Khatonabadi M, Kim HJ, Lu P, McMillan KL, Cagnon CH, DeMarco JJ, McNitt-Gray MF. The feasibility of a regional CTDIvol to estimate organ dose from tube current modulated CT exams. Medical Physics. 40: 051903. PMID 23635273 DOI: 10.1118/1.4798561  0.862
2012 Khatonabadi M, Zhang D, Mathieu K, Kim HJ, Lu P, Cody D, Demarco JJ, Cagnon CH, McNitt-Gray MF. A comparison of methods to estimate organ doses in CT when utilizing approximations to the tube current modulation function. Medical Physics. 39: 5212-28. PMID 22894446 DOI: 10.1118/1.4736807  0.855
2012 Zhang D, Cagnon CH, Villablanca JP, McCollough CH, Cody DD, Stevens DM, Zankl M, Demarco JJ, Turner AC, Khatonabadi M, McNitt-Gray MF. Peak skin and eye lens radiation dose from brain perfusion CT based on Monte Carlo simulation. Ajr. American Journal of Roentgenology. 198: 412-7. PMID 22268186 DOI: 10.2214/Ajr.11.7230  0.852
2012 Zhang D, Khatonabadi M, Jude C, Zaragoza E, Kim H, Lee M, Andrews-Tang D, Poon C, Douek M, Patel M, Doepke L, McNitt-Gray S, Cagnon C, DeMarco J, McNitt-Gray M. WE-A-218-10: The Tradeoff between Diagnostic Performance and Radiation Dose for CT Imaging in the Diagnosis of Appendicitis Across Observers with Various Levels of Experience Medical Physics. 39: 3940-3940. DOI: 10.1118/1.4736079  0.823
2012 Khatonabadi M, Zhang D, Cagnon C, DeMarco J, McNitt-Gray M. WE-A-218-04: Tube Current Modulation and Patient Size Adjustment for CT Dosimetry Software ImPACT in Thoracic CT Exams Medical Physics. 39: 3939-3939. DOI: 10.1118/1.4736073  0.852
2012 Zhang D, Khatonabadi M, Cagnon C, DeMarco J, McNitt-Gray M. TU-G-217BCD-08: The Relationship of Image Noise and Organ Dose as a Function of Patient Size for Abdominal CT Exams at 5 Different Dose Levels When Tube Current Modulation Is Used Medical Physics. 39: 3925-3925. DOI: 10.1118/1.4736022  0.81
2012 Khatonabadi M, Zhang D, Cagnon C, DeMarco J, McNitt-Gray M. TU-G-217BCD-07: Improving Size Specific Dose Estimates (TG 204): Extension to Tube Current Modulated CT Scans with Regional and Local CTDIvol Values Medical Physics. 39: 3925-3925. DOI: 10.1118/1.4736021  0.832
2012 Ramakrishna B, Brown M, Goldin J, Cagnon C, Enzmann D. An improved automatic computer aided tube detection and labeling system on chest radiographs Progress in Biomedical Optics and Imaging - Proceedings of Spie. 8315. DOI: 10.1117/12.911839  0.327
2012 Zhang D, Khatonabadi M, Kim H, Jude M, Zaragoza E, Lee M, Patel M, Poon C, Douek M, Andrews-Tang D, Doepke L, McNitt-Gray S, Cagnon C, DeMarco J, McNitt-Gray M. Diagnostic accuracy at several reduced radiation dose levels for CT imaging in the diagnosis of appendicitis Progress in Biomedical Optics and Imaging - Proceedings of Spie. 8313. DOI: 10.1117/12.911428  0.86
2011 Larke FJ, Kruger RL, Cagnon CH, Flynn MJ, McNitt-Gray MM, Wu X, Judy PF, Cody DD. Estimated radiation dose associated with low-dose chest CT of average-size participants in the National Lung Screening Trial. Ajr. American Journal of Roentgenology. 197: 1165-9. PMID 22021510 DOI: 10.2214/Ajr.11.6533  0.73
2011 Turner AC, Zhang D, Khatonabadi M, Zankl M, DeMarco JJ, Cagnon CH, Cody DD, Stevens DM, McCollough CH, McNitt-Gray MF. The feasibility of patient size-corrected, scanner-independent organ dose estimates for abdominal CT exams. Medical Physics. 38: 820-9. PMID 21452719 DOI: 10.1118/1.3533897  0.863
2011 Cagnon C, Boone J, Seibert J, Martin M, McNitt‐Gray M. TH‐E‐211‐10: Methods for Converting CT Scanner Reported Dose Values to Dose Threshold Values Specified in Legislation: A Practical Implementation of California Senate Bill (SB) 1237 Medical Physics. 38: 3878-3878. DOI: 10.1118/1.3613605  0.622
2011 Turner A, DeMarco J, Cagnon C, Stevens D, Zhang D, Khatonabadi M, McNitt-Gray M. TH-E-211-08: The Energy Dependence of Small Volume Ionization Chambers and Solid State Detectors at Diagnostic Energy Ranges for CT Dosimetry - Assessment in Air and In Phantom Medical Physics. 38: 3877-3877. DOI: 10.1118/1.3613603  0.811
2011 Khatonabadi M, Turner A, Zhang D, DeMarco J, Cagnon C, McNitt-Gray M. TH-E-211-01: The Ability of CTDIvol to Estimate Organ Doses from Typical Tube Current Modulated Abdomen/Pelvis CT Scans Medical Physics. 38: 3875-3876. DOI: 10.1118/1.3613596  0.862
2011 Zhang D, DeMarco J, Cagnon C, Turner A, Khatonabadi M, McNitt-Gray M. TH-A-214-08: Change in X-Ray CT Spectra inside of Dosimetry Phantoms: Beam Hardening or Beam Softening? Medical Physics. 38: 3844-3844. DOI: 10.1118/1.3613473  0.805
2011 Zhang D, Khatonabadi M, Turner A, Cagnon C, DeMarco J, McNitt-Gray M. WE-C-110-10: Reducing Dose to Breast Glandular Tissue by Adjusting the Tube Start Angle and Table Height in Helical CT Scans Medical Physics. 38: 3811-3811. DOI: 10.1118/1.3613349  0.854
2011 Ramakrishna B, Brown M, Goldin J, Cagnon C, Enzmann D. Catheter detection and classification on chest radiographs: An automated prototype computer-aided detection (CAD) system for radiologists Progress in Biomedical Optics and Imaging - Proceedings of Spie. 7963. DOI: 10.1117/12.878172  0.304
2010 Cody DD, Kim HJ, Cagnon CH, Larke FJ, McNitt-Gray MM, Kruger RL, Flynn MJ, Seibert JA, Judy PF, Wu X. Normalized CT dose index of the CT scanners used in the National Lung Screening Trial. Ajr. American Journal of Roentgenology. 194: 1539-46. PMID 20489094 DOI: 10.2214/Ajr.09.3268  0.655
2010 Turner AC, Zankl M, DeMarco JJ, Cagnon CH, Zhang D, Angel E, Cody DD, Stevens DM, McCollough CH, McNitt-Gray MF. The feasibility of a scanner-independent technique to estimate organ dose from MDCT scans: using CTDIvol to account for differences between scanners. Medical Physics. 37: 1816-25. PMID 20443504 DOI: 10.1118/1.3368596  0.856
2010 Zhang D, Cagnon C, DeMarco J, Zankl M, Turner A, Khatonabadi M, McNitt-Gray M. TU-A-201B-04: Estimating Dose to Eye Lens and Skin from Radiation Dose from CT Brain Perfusion Examinations: Comparison to CTDIvol Values Medical Physics. 37: 3373-3373. DOI: 10.1118/1.3469178  0.842
2010 Zhang D, Cagnon C, DeMarco J, Zankl M, Turner A, Khatonabadi M, McNitt-Gray M. SU-GG-I-37: Reducing Eye Lens Dose during Brain Perfusion CT Examinations by Moving the Scan Location or Tilting the Gantry Angle Medical Physics. 37: 3109-3110. DOI: 10.1118/1.3468070  0.828
2009 Zhang D, Zankl M, DeMarco JJ, Cagnon CH, Angel E, Turner AC, McNitt-Gray MF. Reducing radiation dose to selected organs by selecting the tube start angle in MDCT helical scans: a Monte Carlo based study. Medical Physics. 36: 5654-64. PMID 20095278 DOI: 10.1118/1.3259773  0.855
2009 Angel E, Yaghmai N, Jude CM, DeMarco JJ, Cagnon CH, Goldin JG, McCollough CH, Primak AN, Cody DD, Stevens DM, McNitt-Gray MF. Dose to radiosensitive organs during routine chest CT: effects of tube current modulation. Ajr. American Journal of Roentgenology. 193: 1340-5. PMID 19843751 DOI: 10.2214/Ajr.09.2886  0.804
2009 Turner AC, Zhang D, Kim HJ, DeMarco JJ, Cagnon CH, Angel E, Cody DD, Stevens DM, Primak AN, McCollough CH, McNitt-Gray MF. A method to generate equivalent energy spectra and filtration models based on measurement for multidetector CT Monte Carlo dosimetry simulations. Medical Physics. 36: 2154-64. PMID 19610304 DOI: 10.1118/1.3117683  0.796
2009 Zhang D, Savandi AS, Demarco JJ, Cagnon CH, Angel E, Turner AC, Cody DD, Stevens DM, Primak AN, McCollough CH, McNitt-Gray MF. Variability of surface and center position radiation dose in MDCT: Monte Carlo simulations using CTDI and anthropomorphic phantoms. Medical Physics. 36: 1025-38. PMID 19378763 DOI: 10.1118/1.3078053  0.822
2009 Angel E, Yaghmai N, Jude CM, Demarco JJ, Cagnon CH, Goldin JG, Primak AN, Stevens DM, Cody DD, McCollough CH, McNitt-Gray MF. Monte Carlo simulations to assess the effects of tube current modulation on breast dose for multidetector CT. Physics in Medicine and Biology. 54: 497-512. PMID 19124953 DOI: 10.1088/0031-9155/54/3/003  0.827
2009 Zhang D, DeMarco J, Cagnon C, Angel E, Turner A, Zankl M, McNitt-Gray M. TU-C-304A-06: Reducing Dose to a Small Organ by Varying the Tube Start Angle in a Helical CT Scan Medical Physics. 36: 2728-2728. DOI: 10.1118/1.3182354  0.852
2009 Boitnott K, Kim H, Mcnitt‐gray M, Cagnon C, Zhang D, Cody D. SU‐FF‐I‐37: Precision of Exposure Measurements Obtained On Current Multi‐Slice CT Scanners Medical Physics. 36: 2442-2443. DOI: 10.1118/1.3181156  0.43
2009 Angel E, DeMarco J, Cagnon C, McNitt‐Gray M. SU‐FF‐I‐30: Generating Attenuation‐Based Tube Current Modulation (TCM) Schema Based On Voxelized Patient Models to Be Used in Simulations Estimating Organ Dose From CT Medical Physics. 36: 2441-2441. DOI: 10.1118/1.3181149  0.723
2008 Angel E, Wellnitz CV, Goodsitt MM, Yaghmai N, DeMarco JJ, Cagnon CH, Sayre JW, Cody DD, Stevens DM, Primak AN, McCollough CH, McNitt-Gray MF. Radiation dose to the fetus for pregnant patients undergoing multidetector CT imaging: Monte Carlo simulations estimating fetal dose for a range of gestational age and patient size. Radiology. 249: 220-7. PMID 18796678 DOI: 10.1148/Radiol.2491071665  0.799
2008 Angel E, Yaghmai N, Kim H, DeMarco J, Cagnon C, Turner A, Zhang D, Goldin J, McNitt‐Gray M. WE‐D‐332‐03: How Well Does CTDI Estimate Organ Dose to Patients From Multidetector (MDCT) Imaging? Medical Physics. 35: 2948-2948. DOI: 10.1118/1.2962756  0.803
2008 DeMarco JJ, McNitt-Gray MF, Cagnon CH, Angel E, Agazaryan N, Zankl M. Evaluation of patient dose using a virtual CT scanner: Applications to 4DCT simulation and kilovoltage cone-beam imaging Journal of Physics: Conference Series. 102. DOI: 10.1088/1742-6596/102/1/012006  0.506
2007 DeMarco JJ, Cagnon CH, Cody DD, Stevens DM, McCollough CH, Zankl M, Angel E, McNitt-Gray MF. Estimating radiation doses from multidetector CT using Monte Carlo simulations: effects of different size voxelized patient models on magnitudes of organ and effective dose. Physics in Medicine and Biology. 52: 2583-97. PMID 17440254 DOI: 10.1088/0031-9155/52/9/017  0.843
2007 Mcdermott A, Mcnitt‐gray M, White R, Angel E, Cagnon C, Demarco J, Cody D. TU-C-L100J-06: Pediatric Organ Dose Measurements in Axial and Helical Multi-Slice CT Medical Physics. 34: 2543-2543. DOI: 10.1118/1.2761326  0.763
2007 Angel E, Yaghmai N, DeMarco J, Cagnon C, Cody D, Stevens D, McCollough C, Primak A, Goldin J, McNitt-Gray M. SU-FF-I-129: Monte Carlo Simulation to Assess Organ Dose From Coronary CT Angiography (CTA) Exams Using Patient-Based Voxelized Models Medical Physics. 34: 2367-2367. DOI: 10.1118/1.2760505  0.761
2006 Cagnon CH, Cody DD, McNitt-Gray MF, Seibert JA, Judy PF, Aberle DR. Description and implementation of a quality control program in an imaging-based clinical trial. Academic Radiology. 13: 1431-41. PMID 17111584 DOI: 10.1016/J.Acra.2006.08.015  0.479
2006 Angel E, Wellnitz C, Goodsitt M, DeMarco J, Cagnon C, Cody D, Stevens D, McCollough C, Primak A, McNitt-Gray M. TU-E-330D-02: Monte Carlo Simulation to Assess Fetal Dose From MDCT Imaging Using Patient Based Voxelized Models Medical Physics. 33: 2211-2211. DOI: 10.1118/1.2241613  0.766
2005 DeMarco JJ, Cagnon CH, Cody DD, Stevens DM, McCollough CH, O'Daniel J, McNitt-Gray MF. A Monte Carlo based method to estimate radiation dose from multidetector CT (MDCT): cylindrical and anthropomorphic phantoms. Physics in Medicine and Biology. 50: 3989-4004. PMID 16177525 DOI: 10.1088/0031-9155/50/17/005  0.764
2005 DeMarco JJ, Cagnon CH, Cody DD, Stevens DM, McCollough CH, O'Daniel J, McNitt-Gray MF. Estimating surface radiation dose from Multidetector CT: Cylindrical phantoms, Anthropomorphic phantoms and Monte Carlo Simulations Progress in Biomedical Optics and Imaging - Proceedings of Spie. 5745: 102-112. DOI: 10.1117/12.595933  0.722
2003 Jarry G, DeMarco JJ, Beifuss U, Cagnon CH, McNitt-Gray MF. A Monte Carlo-based method to estimate radiation dose from spiral CT: from phantom testing to patient-specific models. Physics in Medicine and Biology. 48: 2645-63. PMID 12974580 DOI: 10.1088/0031-9155/48/16/306  0.774
2001 Solberg TD, DeMarco JJ, Chetty IJ, Mesa AV, Cagnon CH, Li AN, Mather KK, Medin PM, Arellano AR, Smathers JB. A review of radiation dosimetry applications using the MCNP Monte Carlo code Radiochimica Acta. 89: 337-355. DOI: 10.1524/Ract.2001.89.4-5.337  0.346
2001 Cagnon CH, McNitt-Gray MF, DeMarco JJ. A Monte Carlo based simulation tool to model the physics & geometry of electron beam computed tomography Proceedings of Spie - the International Society For Optical Engineering. 4320: 636-644. DOI: 10.1117/12.430891  0.627
1999 McNitt-Gray MF, Cagnon CH, Solberg TD, Chetty I. Radiation dose in spiral CT: The relative effects of collimation and pitch Medical Physics. 26: 409-414. DOI: 10.1118/1.598532  0.747
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