Improved precision of SPECT myocardial blood flow using a net tracer retention model
Author:
Affiliation:
1. Division of Cardiology University of Ottawa Heart Institute Ottawa Ontario Canada
2. Division of Cardiology University of Ottawa Ottawa Ontario Canada
Publisher
Wiley
Subject
General Medicine
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/mp.16186
Reference28 articles.
1. Optimization of SPECT Measurement of Myocardial Blood Flow with Corrections for Attenuation, Motion, and Blood Binding Compared with PET
2. First validation of myocardial flow reserve assessed by dynamic 99mTc-sestamibi CZT-SPECT camera: head to head comparison with 15O-water PET and fractional flow reserve in patients with suspected coronary artery disease. The WATERDAY study
3. Test-Retest Precision of Myocardial Blood Flow Measurements With 99m Tc-Tetrofosmin and Solid-State Detector Single Photon Emission Computed Tomography
4. Automated dynamic motion correction using normalized gradient fields for 82rubidium PET myocardial blood flow quantification
5. Absolute Myocardial Blood Flow and Flow Reserve Assessed by Gated SPECT with Cadmium–Zinc–Telluride Detectors Using 99mTc-Tetrofosmin: Head-to-Head Comparison with 13N-Ammonia PET
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1. Validation of advanced hybrid SPECT/CT system using dynamic anthropomorphic cardiac phantom;Annals of Nuclear Medicine;2024-08-30
2. Higher processing repeatability of myocardial flow reserve calculated using net retention model compared to one compartment model in SPECT studies;Scientific Reports;2024-07-19
3. Myocardial blood flow quantification with SPECT;Journal of Medical Imaging and Radiation Sciences;2024-06
4. Multicenter Evaluation of the Feasibility of Clinical Implementation of SPECT Myocardial Blood Flow Measurement: Intersite Variability and Imaging Time;Circulation: Cardiovascular Imaging;2023-10
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