The coronary microcirculation in health and disease.
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[1] J. Weiss,et al. Comparison of usefulness of dipyridamole stress myocardial contrast echocardiography to technetium-99m sestamibi single-photon emission computed tomography for detection of coronary artery disease (PB127 Multicenter Phase 2 Trial results). , 2003, The American journal of cardiology.
[2] S. Kaul,et al. Relation between myocardial oxygen consumption and myocardial blood volume: a study using myocardial contrast echocardiography. , 2002, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.
[3] S. Dymarkowski,et al. Hypercholesterolemia in Minipigs Impairs Left Ventricular Response to Stress: Association With Decreased Coronary Flow Reserve and Reduced Capillary Density , 2002, Circulation.
[4] S. Kaul,et al. Mechanism of Inducible Regional Dysfunction During Dipyridamole Stress , 2002, Circulation.
[5] S. Kaul,et al. Decrease in Coronary Blood Flow Reserve During Hyperlipidemia Is Secondary to an Increase in Blood Viscosity , 2001, Circulation.
[6] N. Wiernsperger. Defects in microvascular haemodynamics during prediabetes: contributor or epiphenomenon? , 2000, Diabetologia.
[7] B. Strauer,et al. Assessing the coronary circulation in hypertension. , 1998, Journal of hypertension.
[8] A R Jayaweera,et al. Basis for detection of stenosis using venous administration of microbubbles during myocardial contrast echocardiography: bolus or continuous infusion? , 1998, Journal of the American College of Cardiology.
[9] A R Jayaweera,et al. Quantification of myocardial blood flow with ultrasound-induced destruction of microbubbles administered as a constant venous infusion. , 1998, Circulation.
[10] A R Jayaweera,et al. Coronary and myocardial blood volumes: noninvasive tools to assess the coronary microcirculation? , 1997, Circulation.
[11] M. Feldman,et al. Myocardial contrast echocardiography can be used to quantify intramyocardial blood volume: new insights into structural mechanisms of coronary autoregulation. , 1997, Circulation.
[12] J. Yoshikawa,et al. Improvement of erythrocyte deformability by cholesterol-lowering therapy with pravastatin in hypercholesterolemic patients. , 1997, Metabolism: clinical and experimental.
[13] B. Friedman,et al. Myocardial oxygen tension and relative capillary density in isolated perfused rat hearts. , 1995, Journal of molecular and cellular cardiology.
[14] G S Kassab,et al. Morphometry of pig coronary venous system. , 1994, The American journal of physiology.
[15] A. Pries,et al. Resistance to blood flow in microvessels in vivo. , 1994, Circulation research.
[16] Sanjiv Kaul,et al. Quantification of Myocardial Perfusion With Myocardial Contrast Echocardiography During Left Atrial Injection of Contrast: Implications for Venous Injection , 1994, Circulation.
[17] G S Kassab,et al. Topology and dimensions of pig coronary capillary network. , 1994, The American journal of physiology.
[18] K. Peter,et al. Heterogeneous microvascular coronary vasodilation by adenosine and nitroglycerin in dogs. , 1994, Journal of applied physiology.
[19] G S Kassab,et al. Morphometry of pig coronary arterial trees. , 1993, The American journal of physiology.
[20] M. J. Davis,et al. Coronary venular responses to flow and pressure. , 1993, Circulation research.
[21] P C Elwood,et al. Fibrinogen, Viscosity, and White Blood Cell Count Are Major Risk Factors for Ischemic Heart Disease: The Caerphilly and Speedwell Collaborative Heart Disease Studies , 1991, Circulation.
[22] C. Honig,et al. Intracellular PO2 in individual cardiac myocytes in dogs, cats, rabbits, ferrets, and rats. , 1991, The American journal of physiology.
[23] W. Chilian,et al. Coronary microvascular responses to reductions in perfusion pressure. Evidence for persistent arteriolar vasomotor tone during coronary hypoperfusion. , 1990, Circulation research.
[24] M. Marcus,et al. Heterogeneous changes in epimyocardial microvascular size during graded coronary stenosis. Evidence of the microvascular site for autoregulation. , 1990, Circulation research.
[25] S S Segal,et al. The behavior of sonicated albumin microbubbles within the microcirculation: a basis for their use during myocardial contrast echocardiography. , 1989, Circulation research.
[26] C. R. Taylor,et al. Adaptive variation in the mammalian respiratory system in relation to energetic demand: IV. Capillaries and their relationship to oxidative capacity , 1987 .
[27] M. Marcus,et al. Microvascular distribution of coronary vascular resistance in beating left ventricle. , 1986, The American journal of physiology.
[28] S. D. House,et al. Microvascular pressure in venules of skeletal muscle during arterial pressure reduction. , 1986, The American journal of physiology.
[29] J. Drury. THE CORONARY SINUS: PROCEEDINGS OF THE 1ST INTERNATIONAL SYMPOSIUM ON MYOCARDIAL PROTECTION VIA THE CORONARY SINUS , 1985 .
[30] Melvin L.Marcus. The Coronary Circulation in Health and Disease , 1983 .
[31] C. Forbes,et al. INCREASED BLOOD VISCOSITY AND FIBRINOLYTIC INHIBITOR IN TYPE II HYPERLIPOPROTEINAEMIA , 1982, The Lancet.
[32] G. J. Crystal,et al. Small vessel and total coronary blood volume during intracoronary adenosine. , 1981, The American journal of physiology.
[33] J. Hoffman,et al. The Role of Autoregulation and Tissue Diastolic Pressures in the Transmural Distribution of Left Ventricular Blood Flow in Anesthetized Dogs , 1979, Circulation research.
[34] C. Honig,et al. Intercapillary distances and capillary reserve in right and left ventricles: significance for control of tissue po2. , 1976, Microvascular research.
[35] R. Berne,et al. Regulation of coronary blood flow. , 1975, Progress in cardiovascular diseases.
[36] K. Lipscomb,et al. Effects of coronary stenoses on coronary flow reserve and resistance. , 1974, The American journal of cardiology.
[37] S. Mellander,et al. Autoregulation of capillary hydrostatic pressure in skeletal muscle during regional arterial hypo- and hypertension. , 1974, Acta physiologica Scandinavica.
[38] J B Bassingthwaighte,et al. Microvasculature of the dog left ventricular myocardium. , 1974, Microvascular research.
[39] M. Lagarde,et al. Hyperglycaemia modifies the reaction of microvessels to insulin in rat skeletal muscle , 1998, Diabetologia.
[40] K. Amann,et al. Hypertrophy and hyperplasia of smooth muscle cells of small intramyocardial arteries in spontaneously hypertensive rats. , 1995, Hypertension.
[41] B. G. Anderson,et al. Microvasculature of the bear heart demonstrated by scanning electron microscopy. , 1988, Acta anatomica.
[42] F. Neumann,et al. Myocardial Microcirculation in the Beating Heart — In Vivo Microscopic Studies , 1987 .
[43] M. Tschabitscher. Anatomy of Coronary Veins , 1984 .
[44] O. Amtorp,et al. Effect of intracoronary adenosine upon regional blood flow, microvascular blood volume and hematocrit in canine myocardium. , 1984, International journal of microcirculation, clinical and experimental.
[45] F. R. Smith,et al. Effects of lipoproteins on plasma viscosity. , 1981, Atherosclerosis.