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M D Kenner

Publications and source records attributed to M D Kenner.

3 recordsLinked to original sources

Contrast echocardiography displays increased subendocardial perfusion after nitroglycerin administration.

A mechanism proposed to contribute to the antianginal effect of nitroglycerin is a redistribution of coronary blood flow to the subendocardium. Contrast echocardiography combines ultrasound with echogenic contrast agents to assess regional myocardial perfusion. This study aims to assess the effect of nitroglycerin on myocardial transmural perfusion with contrast echocardiography in humans. Nine patients scheduled for coronary angiography received 300 microg intracoronary nitroglycerin. Contrast echocardiographic studies were performed before and immediately after the administration of intracoronary nitroglycerin. Videodensitometric analysis was performed off-line to measure subendocardial and subepicardial opacification. Subendocardial opacification greater than subepicardial opacification increased from six of 13 patients before nitroglycerin administration to 11 of 13 after nitroglycerin administration (p <0.05). Similarly, these observations increased from nine of 13 patients to 13 of 13 after nitroglycerin administration during diastole (p <0.05). Contrast echocardiography demonstrates increased subendocardial perfusion after the administration of nitroglycerin in these patients.

Angina Pectoris↗

Ability of the no-reflow phenomenon during an acute myocardial infarction to predict left ventricular dysfunction at one-month follow-up.

Despite angiographically successful opening of an infarct-related vessel within a 6-hour time frame, some patients do not recover left ventricular regional wall function in the infarct zone after an acute myocardial infarction (AMI). Recent evidence suggests that this finding is due to the no-reflow phenomenon, or failure to recover tissue perfusion despite patient epicardial arteries. We performed myocardial contrast echocardiography to assess tissue perfusion before and after opening of an infarct-related artery. Coronary angiograms, regional wall motion scoring, and myocardial contrast enhancement were graded by 3 observers. Of 24 patients with AMI, 7 (29%) failed to recover tissue perfusion in > or = 1 region of myocardium. Of 106 regions subtended by the infarct-related artery, 16 (15%), 43 (41%), and 47 (44%) regions had no-reflow, partial, or normal flow, respectively, after arterial patency was established. There was a spectrum of reperfusion patterns ranging from no-reflow to normal perfusion. One-month follow-up angiographic and myocardial contrast echocardiographic studies were performed in 12 of the 24 patients. At 1 month, all segments of myocardium that had immediate normal perfusion had regained normal wall motion. In contrast, 17 segments that had partial or no-reflow were identified. Of these 17, 3 regained normal function, 10 segments were hypokinetic, and 4 segments were akinetic. We conclude that myocardial contrast echocardiography can be used to identify the no-reflow phenomenon in up to 29% of patients with AMI. Additionally, we found that the immediate-reflow pattern can predict degree of left ventricular dysfunction at 1-month follow-up.

Adult↗

Contrast echocardiography.

Myocardial contrast echocardiography (MCE) is an ultrasound imaging technique which promises to provide a safe, noninvasive means of assessing myocardial perfusion. A contrast agent, consisting of a suspension of air-filled microspheres, serves as an ultrasound tracer. When these microspheres are injected intravascularly, the acoustic interface created between the blood and the microspheres enhances the reflected ultrasound signals. Thus, the flow pattern of the microspheres represent the actual blood flow patterns. This paper will review the field of contrast echocardiography, its background and history, the development of ultrasound contrast agents, and a variety of experimental as well as clinical uses. Contrast echocardiography has been utilized in the cardiac catheterization laboratory for the assessment of "risk area," assessment of collateral blood flow and assessment of coronary blood reserve. In the operating room, contrast echo is utilized for the determination of cardioplegic perfusion, assessment of graft patency and evaluation of valvular regurgitation. In the future, with the technical advancement in ultrasound imaging and the active interest and growth in the field of myocardial perfusion imaging using contrast echocardiography, the ability to provide routine real-time perfusion imaging may become a reality.

Albumins↗