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Research ArticleMethodology

A Quantitative Assessment of Patient Motion and Its Effect on Myocardial Perfusion SPECT Images

Elias H. Botvinick, YuYing Zhu, William J. O'Connell and Michael W. Dae
Journal of Nuclear Medicine February 1993, 34 (2) 303-310;
Elias H. Botvinick
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YuYing Zhu
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William J. O'Connell
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Michael W. Dae
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Article Information

vol. 34 no. 2 303-310
PubMed 
8429354

Published By 
Society of Nuclear Medicine
Print ISSN 
0161-5505
Online ISSN 
2159-662X

Copyright & Usage 
COPYRIGHT © 1993 by The Society of Nuclear Medicine, Inc.

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Journal of Nuclear Medicine
Vol. 34, Issue 2
February 1, 1993
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A Quantitative Assessment of Patient Motion and Its Effect on Myocardial Perfusion SPECT Images
Elias H. Botvinick, YuYing Zhu, William J. O'Connell, Michael W. Dae
Journal of Nuclear Medicine Feb 1993, 34 (2) 303-310;

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A Quantitative Assessment of Patient Motion and Its Effect on Myocardial Perfusion SPECT Images
Elias H. Botvinick, YuYing Zhu, William J. O'Connell, Michael W. Dae
Journal of Nuclear Medicine Feb 1993, 34 (2) 303-310;
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Cited By...

  • Introduction to the D-SPECT for Technologists: Workflow Using a Dedicated Digital Cardiac Camera
  • Image Reconstruction Using Filtered Backprojection and Iterative Method: Effect on Motion Artifacts in Myocardial Perfusion SPECT
  • A Physiologic Approach to Decreasing Upward Creep of the Heart During Myocardial Perfusion Imaging
  • Impact of Patient Motion on Myocardial Perfusion SPECT Diagnostic Integrity: Part 2
  • Incidence and Characterization of Patient Motion in Myocardial Perfusion SPECT: Part 1
  • Quantitative Assessment of Motion Artifacts and Validation of a New Motion-Correction Program for Myocardial Perfusion SPECT
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More in this TOC Section

  • Quantitative Blood Flow Measurement of Skeletal Muscle Using Oxygen-15-Water and PET
  • Clinical Fusion of Three-Dimensional Images Using Bremsstrahlung SPECT and CT
  • A “Hybrid” Method for Measuring Myocardial Wall Thickening from Gated PET/SPECT Images
Show more Methodology

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