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Journal of Nuclear Medicine

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Research ArticleNuclear Oncology

Kinetic Analysis of 2-[Carbon-11]Thymidine PET Imaging Studies: Compartmental Model and Mathematical Analysis

David A. Mankoff, Anthony F. Shields, Michael M. Graham, Jeanne M. Link, Janet F. Eary and Kenneth A. Krohn
Journal of Nuclear Medicine June 1998, 39 (6) 1043-1055;
David A. Mankoff
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Anthony F. Shields
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Michael M. Graham
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Jeanne M. Link
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Janet F. Eary
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Kenneth A. Krohn
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Journal of Nuclear Medicine
Vol. 39, Issue 6
June 1, 1998
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Kinetic Analysis of 2-[Carbon-11]Thymidine PET Imaging Studies: Compartmental Model and Mathematical Analysis
David A. Mankoff, Anthony F. Shields, Michael M. Graham, Jeanne M. Link, Janet F. Eary, Kenneth A. Krohn
Journal of Nuclear Medicine Jun 1998, 39 (6) 1043-1055;

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Kinetic Analysis of 2-[Carbon-11]Thymidine PET Imaging Studies: Compartmental Model and Mathematical Analysis
David A. Mankoff, Anthony F. Shields, Michael M. Graham, Jeanne M. Link, Janet F. Eary, Kenneth A. Krohn
Journal of Nuclear Medicine Jun 1998, 39 (6) 1043-1055;
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  • Principles of Tracer Kinetic Analysis in Oncology, Part II: Examples and Future Directions
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  • The Use of Novel PET Tracers to Image Breast Cancer Biologic Processes Such as Proliferation, DNA Damage and Repair, and Angiogenesis
  • Interrogating Tumor Metabolism and Tumor Microenvironments Using Molecular Positron Emission Tomography Imaging. Theranostic Approaches to Improve Therapeutics
  • Whole-Body Distribution and Brain Tumor Imaging with 11C-4DST: A Pilot Study
  • Kinetic Analysis of 18F-Fluoride PET Images of Breast Cancer Bone Metastases
  • Imaging of Cyclosporine Inhibition of P-Glycoprotein Activity Using 11C-Verapamil in the Brain: Studies of Healthy Humans
  • Imaging of Cell Proliferation: Status and Prospects
  • Glioma Proliferation as Assessed by 3'-Fluoro-3'-Deoxy-L-Thymidine Positron Emission Tomography in Patients with Newly Diagnosed High-Grade Glioma
  • Kinetic Analysis of 3'-Deoxy-3'-18F-Fluorothymidine in Patients with Gliomas
  • 2-[11C]Thymidine Positron Emission Tomography Reproducibility in Humans
  • Kinetic Modeling of 3'-Deoxy-3'-Fluorothymidine in Somatic Tumors: Mathematical Studies
  • Kinetic Analysis of 3'-Deoxy-3'-Fluorothymidine PET Studies: Validation Studies in Patients with Lung Cancer
  • Selectivity of 18F-FLT and 18F-FDG for Differentiating Tumor from Inflammation in a Rodent Model
  • Kinetic Modeling of 5-Fluorouracil Anabolism in Colorectal Adenocarcinoma: A Positron Emission Tomography Study in Rats
  • Rat Studies Comparing 11C-FMAU, 18F-FLT, and 76Br-BFU as Proliferation Markers
  • In Vivo Validation of 3'deoxy-3'-[18F]fluorothymidine ([18F]FLT) as a Proliferation Imaging Tracer in Humans: Correlation of [18F]FLT Uptake by Positron Emission Tomography with Ki-67 Immunohistochemistry and Flow Cytometry in Human Lung Tumors
  • Assessment of Proliferation in Vivo Using 2-[11C]Thymidine Positron Emission Tomography in Advanced Intra-abdominal Malignancies
  • Imaging Brain Tumor Proliferative Activity with [124I]Iododeoxyuridine
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