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Featured researches published by Mark V. Jordan.


Circulation | 2005

Effects of Intravenous Levosimendan on Human Coronary Vasomotor Regulation, Left Ventricular Wall Stress, and Myocardial Oxygen Uptake

Andrew D. Michaels; Barry H. McKeown; Michael Kostal; Kalpesh T. Vakharia; Mark V. Jordan; Ivor L. Gerber; Elyse Foster; Kanu Chatterjee

Background—Levosimendan is a calcium-sensitizing agent and an inodilator under current investigation in the treatment of decompensated heart failure. The effects of intravenous levosimendan on the human coronary vasculature, together with myocardial wall stress and oxygen uptake, have not been adequately studied. Methods and Results—Ten adult patients underwent right- and left-heart catheterization. Baseline coronary blood flow was determined with quantitative coronary angiography and an intracoronary Doppler-tipped guidewire. Myocardial oxygen uptake was measured with a coronary sinus catheter. Echocardiography was performed before and 30 minutes after an intravenous infusion of levosimendan (24-&mgr;g/kg bolus over 10 minutes) was begun. Pulmonary capillary wedge decreased 37% (P=0.009), cardiac output increased 9% (P=0.04), and systemic vascular resistance decreased 18% (P<0.001). Left ventricular ejection fraction increased 20% (P=0.009), and meridional systolic wall stress decreased 48% (P=0.009). Coronary artery diameter increased 10% at 15 minutes (P=0.001) and 11% at 30 minutes (P=0.01). Coronary artery velocity increased 10% over baseline (P=0.04). Coronary blood flow increased 45% (P=0.02), whereas coronary resistance decreased 36% at 30 minutes (P=0.03). Myocardial oxygen extraction decreased 9% at 30 minutes (P=0.04). Conclusions—Levosimendan given intravenously exerts vasodilator effects on human coronary conductance and resistance arteries. Despite a decrease in coronary perfusion pressure, coronary blood flow is increased. A reduction in coronary vascular resistance and a decrease in coronary venous oxygen content indicate primary coronary vasodilation by levosimendan. Improved left ventricular systolic function and decreased myocardial oxygen extraction suggest improved myocardial efficiency.


JAMA | 2005

Association between phonocardiographic third and fourth heart sounds and objective measures of left ventricular function.

Gregory M. Marcus; Ivor L. Gerber; Barry H. McKeown; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Charles E. McCulloch; Elyse Foster; Kanu Chatterjee; Andrew D. Michaels


JAMA Internal Medicine | 2006

Relationship Between Accurate Auscultation of a Clinically Useful Third Heart Sound and Level of Experience

Gregory M. Marcus; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Barry H. McKeown; Ivor L. Gerber; Elyse Foster; Kanu Chatterjee; Charles E. McCulloch; Andrew D. Michaels


Journal of Cardiac Failure | 2006

High-sensitivity C-reactive protein and parameters of left ventricular dysfunction.

Sanjiv J. Shah; Gregory M. Marcus; Ivor L. Gerber; Barry H. McKeown; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Elyse Foster; Kanu Chatterjee; Andrew D. Michaels


Journal of Cardiac Failure | 2007

Diagnostic characteristics of combining phonocardiographic third heart sound and systolic time intervals for the prediction of left ventricular dysfunction.

Mia Shapiro; Brian Moyers; Gregory M. Marcus; Ivor L. Gerber; Barry H. McKeown; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Elyse Foster; Kanu Chatterjee; Andrew D. Michaels


Journal of Cardiac Failure | 2008

Association of the Fourth Heart Sound With Increased Left Ventricular End-Diastolic Stiffness

Sanjiv J. Shah; Kenta Nakamura; Gregory M. Marcus; Ivor L. Gerber; Barry H. McKeown; Mark V. Jordan; Michele Huddleston; Elyse Foster; Andrew D. Michaels


Journal of The American Society of Echocardiography | 2008

Physiology of the Third Heart Sound: Novel Insights from Tissue Doppler Imaging

Sanjiv J. Shah; Gregory M. Marcus; Ivor L. Gerber; Barry H. McKeown; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Elyse Foster; Kanu Chatterjee; Andrew D. Michaels


Journal of Cardiac Failure | 2004

Third and fourth heart sounds are highly specific markers for elevated left ventricular filling pressure and reduced ejection fraction

Ivor L. Gerber; Barry H. McKeown; Greg Marcus; Joshua C. Vessey; Mark V. Jordan; Michele Huddleston; Elyse Foster; Kanu Chatterjee; Andrew D. Michaels


Clinical Cardiology | 2007

Computerized acoustic cardiographic insights into the pericardial knock in constrictive pericarditis.

Andrew D. Michaels; Mohan N. Viswanathan; Mark V. Jordan; Kanu Chatterjee


Annals of Emergency Medicine | 2004

Third and fourth heart sounds detected by correlated audioelectric cardiography are highly specific markers for elevated left ventricular filling pressure and reduced ejection fraction

Mark V. Jordan; Greg Marcus; Joshua C. Vessey; Ivor L. Gerber; Barry H. McKeown; Michele Huddleston; Elyse Foster; Kanu Chatterjee; Charles E. McCulloch; Andrew D. Michaels

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Elyse Foster

University of California

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Sanjiv J. Shah

University of California

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