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SUMMARY To investigate how autoregulation affects transmural myocardial blood flow, we studied 21 open-chest dogs and varied coronary arterial pressure independently of left ventricular pressure. Total left ventricular myocardial blood flow (FLV) and subendocardiaksubepicardial blood flow ratio (I:O) were measured with microspheres, 9 /an in diameter, injected during autoregulation or maximal coronary vasodilation. With autoregulation, changing coronary perfusing pressures over a wide range with constant left ventricular work at steady state resulted in constant coronary flow; flows decreased below and increased above this range. When coronary flow was raised or lowered from the autoregu-lated flow, coronary pressures rose or fell, respectively, to reach values on the pressure-flow curve determined when coronary pressures were varied deliberately. When coronary pressure was changed in autoregulating hearts, FLv and 1:0 ratios were independent of the ratio of diastolic coronary pressure time index (DPTU) to left ventricular systolic pressure time index (SPTI) over the range, 0.45-1.0, but I:O fell with pressure ratios below 0.45 and increased with pressure ratios above one. During vasodi-lation, FLV and I:O ratios varied linearly with DPTL:SPT1. Thus, coronary autoregulation is necessary to maintain FLV and I:O distribution over a wide range of coronary:ventricular pressure relationships. With maximal vasodilation, flow at low coronary pressures increased from subendocardial to subepi-
Rouleau et al. (Sat,) studied this question.
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