When using technetium and gallium together for nuclear medicine imaging, which is true?

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Multiple Choice

When using technetium and gallium together for nuclear medicine imaging, which is true?

Explanation:
When planning dual radiopharmaceutical imaging, use the one with the shorter half-life first. Technetium-99m decays quickly (about 6 hours) and gives rapid, high-quality images, while gallium-67 has a long half-life (around 78 hours) and is imaged over longer intervals. If gallium were given first, its activity would linger and create persistent background that can complicate or contaminate the subsequent technetium study. Administering technetium first allows a strong Tc image to be obtained while its activity is highest, and then gallium can be given for later imaging with minimal residual Tc signal interfering. Simultaneous administration isn’t practical due to differing kinetics and energy windows, and giving gallium first would compromise the quality and interpretation of the technetium image.

When planning dual radiopharmaceutical imaging, use the one with the shorter half-life first. Technetium-99m decays quickly (about 6 hours) and gives rapid, high-quality images, while gallium-67 has a long half-life (around 78 hours) and is imaged over longer intervals. If gallium were given first, its activity would linger and create persistent background that can complicate or contaminate the subsequent technetium study. Administering technetium first allows a strong Tc image to be obtained while its activity is highest, and then gallium can be given for later imaging with minimal residual Tc signal interfering. Simultaneous administration isn’t practical due to differing kinetics and energy windows, and giving gallium first would compromise the quality and interpretation of the technetium image.

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