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Journal of Nuclear Medicine

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Research ArticleMethodology

Misalignment Between PET Transmission and Emission Scans: Its Effect on Myocardial Imaging

Miles E. McCord, Stephen L. Bacharach, Robert O. Bonow, Vaskin Dilsizian, Alberto Cuocolo and Nanette Freedman
Journal of Nuclear Medicine June 1992, 33 (6) 1209-1214;
Miles E. McCord
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Stephen L. Bacharach
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Robert O. Bonow
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Vaskin Dilsizian
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Alberto Cuocolo
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Nanette Freedman
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Journal of Nuclear Medicine
Vol. 33, Issue 6
June 1, 1992
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Misalignment Between PET Transmission and Emission Scans: Its Effect on Myocardial Imaging
Miles E. McCord, Stephen L. Bacharach, Robert O. Bonow, Vaskin Dilsizian, Alberto Cuocolo, Nanette Freedman
Journal of Nuclear Medicine Jun 1992, 33 (6) 1209-1214;

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Misalignment Between PET Transmission and Emission Scans: Its Effect on Myocardial Imaging
Miles E. McCord, Stephen L. Bacharach, Robert O. Bonow, Vaskin Dilsizian, Alberto Cuocolo, Nanette Freedman
Journal of Nuclear Medicine Jun 1992, 33 (6) 1209-1214;
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  • Cardiac Displacement During 13N-Ammonia Myocardial Perfusion PET/CT: Comparison Between Adenosine- and Regadenoson-Induced Stress
  • Low-Dose Quantitative Myocardial Blood Flow Imaging Using 15O-Water and PET Without Attenuation Correction
  • Reducing Radiation Dose in Rest-Stress Cardiac PET/CT by Single Poststress Cine CT for Attenuation Correction: Quantitative Validation
  • Frequent Diagnostic Errors in Cardiac PET/CT Due to Misregistration of CT Attenuation and Emission PET Images: A Definitive Analysis of Causes, Consequences, and Corrections
  • Cine CT for Attenuation Correction in Cardiac PET/CT
  • PET/CT Attenuation Correction: Breathing Lessons
  • Clinical Myocardial Perfusion PET/CT
  • Artifacts from Misaligned CT in Cardiac Perfusion PET/CT Studies: Frequency, Effects, and Potential Solutions
  • Common Artifacts in PET Myocardial Perfusion Images Due to Attenuation-Emission Misregistration: Clinical Significance, Causes, and Solutions
  • Multicenter Clinical Trial to Evaluate the Efficacy of Correction for Photon Attenuation and Scatter in SPECT Myocardial Perfusion Imaging
  • Noninvasive Quantification of Myocardial Blood Flow in Humans : A Direct Comparison of the [13N]Ammonia and the [15O]Water Techniques
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More in this TOC Section

  • Implementation and Evaluation of Patient-Specific Three-Dimensional Internal Dosimetry
  • Patient-Specific Dosimetry Using Quantitative SPECT Imaging and Three-Dimensional Discrete Fourier Transform Convolution
  • Quantitative Blood Flow Measurement of Skeletal Muscle Using Oxygen-15-Water and PET
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