Literature DB >> 7083481

Phasic coronary blood flow velocity in intramural and epicardial coronary arteries.

W M Chilian, M L Marcus.   

Abstract

Knowledge concerning phasic coronary blood flow is based primarily on measurements obtained from epicardial coronary arteries, which, in part, function as capacitors. If present, epicardial capacitance effects could obscure the dynamic nature of phasic intramyocardial perfusion. To analyze this effect of epicardial capacitance, we simultaneously measured coronary blood flow velocity in an epicardial artery (left anterior descending) and an intramural artery (septal) in open-chest, anesthetized dogs. During control conditions, the percentage of total coronary blood flow velocity occurring during diastole per cardiac cycle was significantly greater (P less than 0.05) in the septal artery (92%) than in the left anterior descending artery (75%). Furthermore, blood flow velocity during mid-systole in the septal artery was retrograde (-7.2%), whereas blood flow velocity at this time was antegrade in the left anterior descending artery (+3.5%). Blood flow velocity measurements from small epicardial arteries just before they penetrated into the myocardium revealed a phasic pattern similar to that of the septal artery. This suggests that the phasic blood velocity pattern in penetrating coronary arteries, in general, is different than that in large epicardial arteries. During vasodilation following nitroglycerin, dipyridamole, or a 20-second occlusion of the left main coronary artery, the retrograde component of mid-systolic blood velocity persisted in the septal artery, despite large increases (300-400%) in the mid-systolic antegrade component of blood flow velocity in the left anterior descending artery. These qualitative and quantitative differences in phasic blood flow velocity between intramural and large epicardial arteries are best reconciled by postulating the existence of a significant coronary capacitor.

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Year:  1982        PMID: 7083481     DOI: 10.1161/01.res.50.6.775

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  20 in total

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Review 4.  Theoretical models for coronary vascular biomechanics: progress & challenges.

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Journal:  Prog Biophys Mol Biol       Date:  2010-10-30       Impact factor: 3.667

5.  Phasic changes in arterial blood volume is influenced by collateral blood flow: implications for the quantification of coronary stenosis at rest.

Authors:  Marco Pascotto; Kevin Wei; Antonio Micari; Thanjavur Bragadeesh; Norman Craig Goodman; Sanjiv Kaul
Journal:  Heart       Date:  2006-09-27       Impact factor: 5.994

6.  Quantitative analysis of exercise-induced enhancement of early- and late-systolic retrograde coronary blood flow.

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8.  In vivo observations of the intramural arterioles and venules in beating canine hearts.

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Review 9.  Emerging, noninvasive surrogate markers of atherosclerosis.

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10.  Coronary flow patterns in normal and ischemic hearts: transmyocardial and artery to vein distribution.

Authors:  R Beyar; R Caminker; D Manor; S Sideman
Journal:  Ann Biomed Eng       Date:  1993 Jul-Aug       Impact factor: 3.934

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