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Journal of Nuclear Medicine

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Research ArticleLaboratory Studies

Active and Passive Mechanisms of [Fluorine-18] Fluorodeoxyglucose Uptake by Proliferating and Prenecrotic Cancer Cells In Vivo: A Microautoradiographic Study

Roko Kubota, Kazuo Kubota, Susumu Yamada, Masao Tada, Tatsuo Ido and Nobuaki Tamahashi
Journal of Nuclear Medicine June 1994, 35 (6) 1067-1075;
Roko Kubota
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Kazuo Kubota
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Susumu Yamada
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Masao Tada
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Tatsuo Ido
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Nobuaki Tamahashi
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Journal of Nuclear Medicine
Vol. 35, Issue 6
June 1, 1994
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Active and Passive Mechanisms of [Fluorine-18] Fluorodeoxyglucose Uptake by Proliferating and Prenecrotic Cancer Cells In Vivo: A Microautoradiographic Study
Roko Kubota, Kazuo Kubota, Susumu Yamada, Masao Tada, Tatsuo Ido, Nobuaki Tamahashi
Journal of Nuclear Medicine Jun 1994, 35 (6) 1067-1075;

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Active and Passive Mechanisms of [Fluorine-18] Fluorodeoxyglucose Uptake by Proliferating and Prenecrotic Cancer Cells In Vivo: A Microautoradiographic Study
Roko Kubota, Kazuo Kubota, Susumu Yamada, Masao Tada, Tatsuo Ido, Nobuaki Tamahashi
Journal of Nuclear Medicine Jun 1994, 35 (6) 1067-1075;
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  • A New PET Scanner with Semiconductor Detectors Enables Better Identification of Intratumoral Inhomogeneity
  • Biologic Correlates of Intratumoral Heterogeneity in 18F-FDG Distribution with Regional Expression of Glucose Transporters and Hexokinase-II in Experimental Tumor
  • Analysis of the Regional Uptake of Radiolabeled Deoxyglucose Analogs in Human Tumor Xenografts
  • 3'-Deoxy-3'-[18F]Fluorothymidine as a New Marker for Monitoring Tumor Response to Antiproliferative Therapy in Vivo with Positron Emission Tomography
  • Biologic Correlates of 18Fluorodeoxyglucose Uptake in Human Breast Cancer Measured by Positron Emission Tomography
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  • Imaging Brain Tumor Proliferative Activity with [124I]Iododeoxyuridine
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