Dual Isotope Scanning with Gallium-67 Citrate and Technetium-99m Radiopharmaceuticals
Robert D. Karl, Michael F. Hartshorne, Michael A. Cawthon, John M. Bauman, William H. Howard, Stephen R. Bunker
Abstract
Robert D. Karl, Michael F. Hartshorne, Michael A. Cawthon, John M. Bauman, William H. Howard, Stephen R. Bunker
Abstract
The interpretation of Ga-67 scans is limited by the complex anatomic and physiologic distribution of Ga-67 and by the low resolution possible with this isotope. The use of a second isotope Tc-99m, tagged to an appropriate pharmaceutical allows the identification of anatomic landmarks. Computer acquisition of both the Ga-67 and Tc-99m images allows for subtraction of the Tc-99m images from the Ga-67 images and leads to precise localization of abnormal Ga-67 accumulations. Only a small percentage of the counts in the Tc-99m window are due to Ga-67 scatter and do not degrade the Tc-99m images. Cases illustrating the value of the dual-isotope technique are presented.
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The interpretation of Ga-67 scans is limited by the complex anatomic and physiologic distribution of Ga-67 and by the low resolution possible with this isotope. The use of a second isotope Tc-99m, tagged to an appropriate pharmaceutical allows the identification of anatomic landmarks. Computer acquisition of both the Ga-67 and Tc-99m images allows for subtraction of the Tc-99m images from the Ga-67 images and leads to precise localization of abnormal Ga-67 accumulations. Only a small percentage of the counts in the Tc-99m window are due to Ga-67 scatter and do not degrade the Tc-99m images. Cases illustrating the value of the dual-isotope technique are presented.
Key concepts: Isotope, Nuclear medicine, Isotopes of gallium, Isotopes of technetium, Gallium, Technetium-99m, Medicine, Subtraction