Extracardiac pressure changes do not alter contractile function of the isolated left ventricle. 1987

M G Midei, and W L Maughan, and R Y Oikawa, and D A Kass, and K Sagawa
Department of Medicine, Johns Hopkins School of Medicine, Baltimore, MD 21205.

To determine whether or not extracardiac pressure has an effect on left ventricular contractile function, we analyzed pressure-volume relationships of six isolated, perfused canine hearts in an air-tight chamber. The chamber pressure was set at -60, -30, 0, 30 and 60 mm Hg and left ventricular pressure-volume relationships studied. The slope (Ees) and volume axis intercept (Vo) of the transmural pressure-volume relationship were used to compare the pump functions of an individual heart at the different extracardiac pressures applied. No significant difference in either Ees or Vo was seen with different extracardiac pressures. During isovolumic ventricular contraction, developed left ventricular pressure did not change over the range of extracardiac pressures applied. The same was true during ejecting contraction; when the downstream pressure of the computer simulated afterload circuit and the venous filling pressure of the preload circuit were changed in parallel with the extracardiac pressure, pressure-volume loops remained identical throughout their course for all of the extracardiac pressures applied. We conclude that transmural pressure is the overwhelmingly dominant loading factor governing LV contraction, and myocardial contractile function is unaffected by the absolute value of extracardiac pressure.

UI MeSH Term Description Entries
D009200 Myocardial Contraction Contractile activity of the MYOCARDIUM. Heart Contractility,Inotropism, Cardiac,Cardiac Inotropism,Cardiac Inotropisms,Contractilities, Heart,Contractility, Heart,Contraction, Myocardial,Contractions, Myocardial,Heart Contractilities,Inotropisms, Cardiac,Myocardial Contractions
D010827 Physiology The biological science concerned with the life-supporting properties, functions, and processes of living organisms or their parts.
D011312 Pressure A type of stress exerted uniformly in all directions. Its measure is the force exerted per unit area. (McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Pressures
D004285 Dogs The domestic dog, Canis familiaris, comprising about 400 breeds, of the carnivore family CANIDAE. They are worldwide in distribution and live in association with people. (Walker's Mammals of the World, 5th ed, p1065) Canis familiaris,Dog
D006352 Heart Ventricles The lower right and left chambers of the heart. The right ventricle pumps venous BLOOD into the LUNGS and the left ventricle pumps oxygenated blood into the systemic arterial circulation. Cardiac Ventricle,Cardiac Ventricles,Heart Ventricle,Left Ventricle,Right Ventricle,Left Ventricles,Right Ventricles,Ventricle, Cardiac,Ventricle, Heart,Ventricle, Left,Ventricle, Right,Ventricles, Cardiac,Ventricles, Heart,Ventricles, Left,Ventricles, Right
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013909 Thorax The upper part of the trunk between the NECK and the ABDOMEN. It contains the chief organs of the circulatory and respiratory systems. (From Stedman, 25th ed) Chest,Thoraces,Chests,Thorace
D066298 In Vitro Techniques Methods to study reactions or processes taking place in an artificial environment outside the living organism. In Vitro Test,In Vitro Testing,In Vitro Tests,In Vitro as Topic,In Vitro,In Vitro Technique,In Vitro Testings,Technique, In Vitro,Techniques, In Vitro,Test, In Vitro,Testing, In Vitro,Testings, In Vitro,Tests, In Vitro,Vitro Testing, In

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