2021 AAPM Virtual 63rd Annual Meeting - Session: Dose and Imaging Performance Assessment in CT and CBCT
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Accurate and Efficient Measurement of Channelized Hotelling Observer-Based Low-Contrast Detectability On the ACR Accreditation Phantom Mingdong Fan Mayo Clinic |
All videos in this session:
A Method to Estimate a Fan-Beam CT NPS Using Two Basis Functions with a Limited Number of Noise Realizations - Hanjoo Jang | |
An Assessment of Uncertainties in Pediatric CT Organ Dosimetry When Scan Parameters and Individual Body Morphometry Are Unknown - Cameron Kofler | |
Diagnostic Reference Levels (DRLs) and Achievable Doses (ADs) for the 11 Most Commonly Performed Pediatric CT Examinations in the United States (USA) as a Function of Patient Age and Size Using 1.5 Million Examinations in the American College of Radiology - Kalpana Kanal, PhD University of Washington | |
Fast Monte Carlo Simulation of Non-Isotropic X-Ray Source for CT Dose Calculation - Sen Wang Stanford University | |
Longitudinal QC Testing of CBCT and Helical MDCT Systems with a Unified Image Quality and Dose Phantom - Mahadevappa Mahesh, PhD Johns Hopkins University | |
A Scanner-Specific Simulation Platform for Virtual Imaging Trials in Deep Si-Based Photon-Counting CT - Shobhit Sharma Duke University | |
Q & A - |





















A Method to Estimate a Fan-Beam CT NPS Using Two Basis Functions with a Limited Number of Noise Realizations
An Assessment of Uncertainties in Pediatric CT Organ Dosimetry When Scan Parameters and Individual Body Morphometry Are Unknown
Diagnostic Reference Levels (DRLs) and Achievable Doses (ADs) for the 11 Most Commonly Performed Pediatric CT Examinations in the United States (USA) as a Function of Patient Age and Size Using 1.5 Million Examinations in the American College of Radiology
Fast Monte Carlo Simulation of Non-Isotropic X-Ray Source for CT Dose Calculation
Longitudinal QC Testing of CBCT and Helical MDCT Systems with a Unified Image Quality and Dose Phantom
A Scanner-Specific Simulation Platform for Virtual Imaging Trials in Deep Si-Based Photon-Counting CT
Q & A