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August 1, 1978Journal of Clinical Investigation167 citationsOpen Access

Myocardial Blood Flow Distribution in Concentric Left Ventricular Hypertrophy

JRJudith C. RembertLKLeonard H. KleinmanJFJohn M. Fedor

Key Points

  • This research aims to analyze how myocardial blood flow is distributed in left ventricular hypertrophy and under ischemic conditions.
  • Studied blood flow in eight chronically instrumented awake dogs with left ventricular hypertrophy.

Structured PICO

Does concentric left ventricular hypertrophy alter transmural myocardial blood flow distribution during rest and ischemia-induced vasodilatation in dogs?

P
Population
8 chronically instrumented awake dogs (7 with coarctation-banding of the ascending aorta performed at 6 weeks of age, 1 with congenital subvalvular aortic stenosis) with marked concentric left ventricular hypertrophy.
I
Intervention
Ischemia-induced vasodilatation via 20-s or 45-s complete occlusion of the left circumflex coronary artery, and adenosine infusion.
C
Comparator
Resting control conditions and a historical control group of 32 normal dogs.
O
Outcome
Transmural myocardial blood flow and endocardial to epicardial flow ratio (endo/epi).surrogate

In marked concentric left ventricular hypertrophy, the endocardial layer may be inadequately perfused during situations requiring high flow due to an abnormal transmural blood flow distribution.

Limitations

  • A sham-operated control group was not prepared for comparison.

Abstract

Regional myocardial blood flow during both control conditions and ischemia-induced vasodilatation was studied in eight chronically instrumented awake dogs. Seven of these animals had coarctation-banding of the ascending aorta performed at 6 wk of age, and the other dog had congenital subvalvular aortic stenosis. The mean left ventricular weight for the group was 157+/-7.6 g, and the left ventricular body weight ratio was 8.76+/-0.47 g/kg. None of the animals exhibited signs of congestive heart failure. During the control state, the mean left ventricular systolic pressure was 249+/-12 mm Hg and the left ventricular end-diastolic pressure was 11.5+/-0.5 mm Hg. The aortic diastolic pressure was 74+/-6 mm Hg. Mean left circumflex coronary artery blood flow was 71+/-6 cm(3)/min. In the animals with coarctation-banding, 52+/-6% of the flow occurred during systole. In the dog with congenital subvalvular aortic stenosis, 5% of the coronary flow was systolic. Mean transmural blood flow during resting conditions was 0.97+/-0.08 cm(3)/min per g, and the ratio of endocardial to epicardial flow (endo/epi) was 0.88+/-0.07. During reactive hyperemia, the mean transmural blood flow increased to 3.5+/-0.30 cm(3)/min per g; however, the endo/epi decreased to 0.52+/-0.06.THESE STUDIES DOCUMENT A DIFFERENCE IN TRANSMURAL BLOOD FLOW DISTRIBUTION BETWEEN THE NORMAL AND THE HYPERTROPHIED LEFT VENTRICLE: during resting conditions, in the normal ventricle, the highest flow occurs in the endocardial layer, whereas in the hypertrophied ventricle, the highest flow is in the middle layers with the endocardial flow less than the epicardial flow. During ischemia-induced vasodilatation, the abnormal endo/epi becomes accentuated markedly. These data demonstrate that, in situations requiring high flow, the endocardial layer of a heart with marked concentric left ventricular hypertrophy may not be perfused adequately.

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Cite This Study

Rembert et al. (1978) studied this question.

synapsesocial.com/papers/6a1757bf3510de12de8d7ccfhttps://doi.org/10.1172/jci109139
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