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Research ArticleMethodology

Parametric Images of Myocardial Metabolic Rate of Glucose Generated from Dynamic Cardiac PET and 2-[18F]Fluoro-2-deoxy-d-glucose Studies

Yong Choi, Randall A. Hawkins, Sung-Cheng Huang, Sanjiv S. Gambhir, Richard C. Brunken, Michael E. Phelps and Heinrich R. Schelbert
Journal of Nuclear Medicine April 1991, 32 (4) 733-738;
Yong Choi
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Randall A. Hawkins
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Sung-Cheng Huang
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Sanjiv S. Gambhir
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Richard C. Brunken
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Michael E. Phelps
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Heinrich R. Schelbert
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Journal of Nuclear Medicine
Vol. 32, Issue 4
April 1, 1991
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Parametric Images of Myocardial Metabolic Rate of Glucose Generated from Dynamic Cardiac PET and 2-[18F]Fluoro-2-deoxy-d-glucose Studies
Yong Choi, Randall A. Hawkins, Sung-Cheng Huang, Sanjiv S. Gambhir, Richard C. Brunken, Michael E. Phelps, Heinrich R. Schelbert
Journal of Nuclear Medicine Apr 1991, 32 (4) 733-738;

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Parametric Images of Myocardial Metabolic Rate of Glucose Generated from Dynamic Cardiac PET and 2-[18F]Fluoro-2-deoxy-d-glucose Studies
Yong Choi, Randall A. Hawkins, Sung-Cheng Huang, Sanjiv S. Gambhir, Richard C. Brunken, Michael E. Phelps, Heinrich R. Schelbert
Journal of Nuclear Medicine Apr 1991, 32 (4) 733-738;
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  • Myocardial Structural, Perfusion, and Metabolic Correlates of Left Bundle Branch Block Mechanical Derangement in Patients With Dilated Cardiomyopathy: A Tagged Cardiac Magnetic Resonance and Positron Emission Tomography Study
  • In Vivo Quantitation of Glucose Metabolism in Mice Using Small-Animal PET and a Microfluidic Device
  • Quantitative Comparison of Analytic and Iterative Reconstruction Methods in 2- and 3-Dimensional Dynamic Cardiac 18F-FDG PET
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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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