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Journal of Nuclear Medicine

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Research ArticleComputer Simulation

A Monte Carlo Simulation Model for Radiation Dose to Metastatic Skeletal Tumor from Rhenium-186(Sn)-HEDP

R. Chandrasiri Samaratunga, Stephen R. Thomas, Jerry D. Hinnefeld, Larry C. Von Kuster, David M. Hyams, Jonathan S. Moulton, Matthew I. Sperling and Harry R. Maxon
Journal of Nuclear Medicine February 1995, 36 (2) 336-350;
R. Chandrasiri Samaratunga
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Stephen R. Thomas
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Jerry D. Hinnefeld
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Larry C. Von Kuster
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David M. Hyams
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Jonathan S. Moulton
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Matthew I. Sperling
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Harry R. Maxon III
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Journal of Nuclear Medicine
Vol. 36, Issue 2
February 1, 1995
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A Monte Carlo Simulation Model for Radiation Dose to Metastatic Skeletal Tumor from Rhenium-186(Sn)-HEDP
R. Chandrasiri Samaratunga, Stephen R. Thomas, Jerry D. Hinnefeld, Larry C. Von Kuster, David M. Hyams, Jonathan S. Moulton, Matthew I. Sperling, Harry R. Maxon
Journal of Nuclear Medicine Feb 1995, 36 (2) 336-350;

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A Monte Carlo Simulation Model for Radiation Dose to Metastatic Skeletal Tumor from Rhenium-186(Sn)-HEDP
R. Chandrasiri Samaratunga, Stephen R. Thomas, Jerry D. Hinnefeld, Larry C. Von Kuster, David M. Hyams, Jonathan S. Moulton, Matthew I. Sperling, Harry R. Maxon
Journal of Nuclear Medicine Feb 1995, 36 (2) 336-350;
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  • 186Re-HEDP in the Treatment of Patients with Inoperable Osteosarcoma
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  • Marrow-Sparing Effects of 117mSn(4+)Diethylenetriaminepentaacetic Acid for Radionuclide Therapy of Bone Cancer
  • Quantitative Bone Single-Photon Emission Computed Tomography for Prediction of Pain Relief in Metastatic Bone Disease Treated With Rhenium-186 Etidronate
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