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April 1, 1975Circulation539 citationsOpen Access

Thallium-201 for myocardial imaging. Relation of thallium-201 to regional myocardial perfusion.

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HSH. William StrausśKHKimberly R. HarrisonJLJames Langan

Key Points

  • Evaluate the concentration and distribution of thallium-201 in myocardial imaging compared to other tracers.
  • Administered thallium-201, potassium-43, and rubidium-81 intravenously in mice; assessed myocardial concentration.
  • Analyzed regional distribution of thallium-201 and potassium-43 in dogs under varied flow conditions.
  • Conducted phantom scans to evaluate thallium-201's imaging suitability with low energy X-rays.
  • Thallium-201 concentration in myocardium was 2.08%, higher than potassium-43 (1.25%) and rubidium-81 (1.15%) at 10 minutes.
  • Regional distribution of thallium-201 correlated strongly with potassium-43 (r=0.97) under different flow conditions.
  • Phantom scans indicated that thallium's low energy X-ray is effective for myocardial imaging.

Abstract

Following intravenous administration, the myocardial concentration of tracer thallium-201, potassium-43, and rubidium-81 were determined in mice; thallium was present in the greatest concentration in the myocardium (2.08% compared 1.25% for potassium and 1.15% for rubidium at 10 minutes). The regional myocardial distribution of thallium-201 was determined in dogs under conditions of normal flow, and total occlusion, and compared with potassium-43 (r=0.97). The regional distribution of thallium-201 was compared to microspheres under conditions of partial occlusion and reactive hyperemia (r=0.97). Thallium-201 was evaluated in a series of phantom scans, which demonstrated that the low energy X-ray of thallium was suitable for imaging. These results suggest that thallium-201 can be used for the evaluation of the distribution of regional myocardial perfusion.

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Cite This Study

Strausś et al. (1975) studied this question.

synapsesocial.com/papers/6a076965e0d1b213ed842cb3https://doi.org/10.1161/01.cir.51.4.641
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