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Mean transit time for the assessment of myocardial perfusion by videodensitometry

N H Pijls1, G J Uijen, A Hoevelaken

  • 1Department of Cardiology, St. Radboud Hospital, University of Nijmegen, The Netherlands.

Circulation
|April 1, 1990
PubMed

Insights

This study demonstrates that mean transit time (Tmn) accurately assesses myocardial perfusion changes. Videodensitometry provides a reliable method for evaluating coronary stenosis significance, improving upon traditional coronary arteriography limitations.

Area of Science:

  • Cardiovascular Imaging
  • Physiology
  • Medical Diagnostics

Background:

  • Coronary arteriography has intrinsic limitations in predicting the physiological impact of coronary obstructions.
  • Accurate assessment of coronary stenosis functional significance is crucial for patient management.
  • Previous methods using contrast passage via digital radiography faced challenges with image acquisition, vascular volume changes, and contrast agent-induced flow alterations.

Purpose of the Study:

  • To evaluate videodensitometry-derived parameters for assessing myocardial perfusion.
  • To determine the reliability of mean transit time (Tmn) and other parameters in reflecting coronary blood flow.
  • To overcome limitations of prior contrast passage studies in coronary stenosis assessment.

Main Methods:

  • Intact dogs underwent electrocardiogram-triggered digital radiography during 20-25 motionless, paced heart beats.
  • Constant vascular volume was maintained using dipyridamole infusion, ensuring coronary flow was uninfluenced by contrast injections.
  • Coronary flow in the circumflex artery was precisely measured using a calibrated Doppler probe and varied with a balloon occluder.

Main Results:

  • Mean transit time (Tmn) demonstrated the highest reliability (r = 0.97 +/- 0.02) in correlating with measured coronary flow.
  • Maximal intensity time (Tmax) also showed strong correlation (r = 0.93 +/- 0.04).
  • Maximal contrast intensity (Dmax) and appearance time (Tapp) showed moderate correlations with flow, while Dmax/Tapp improved correlation.

Conclusions:

  • Mean transit time (Tmn) calculated by videodensitometry accurately assesses myocardial perfusion changes.
  • This method adheres to the principles of indicator dilution theory, offering a reliable alternative to coronary arteriography.
  • Videodensitometry provides a robust tool for evaluating the functional significance of coronary stenoses.

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