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M Munger

Publications and source records attributed to M Munger.

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Hemodynamic effects of the class III antiarrhythmic drug, d-sotalol, in patients with congestive heart failure.

In contrast to Vaughan Williams class I drugs, class III drugs, such as d-sotalol, may not be negative inotropic. These drugs block potassium ion channels and prolong repolarization, theoretically leading to improved contractility. We investigated the hemodynamic actions of acute intravenous administration of 1.5 mg/kg of d-sotalol in 28 patients with congestive heart failure randomized to receive placebo (n = 10) or active drug (n = 18) in a double-blind study. A Swan-Ganz catheter was placed in all patients > or = 16 hours before drug administration. All hemodynamic variables were assessed at baseline and 30 minutes and 1, 2, 4, 8, and 12 hours after administration of the drug. Electrocardiograms were obtained before and 1, 2, 4, and 12 hours after drug administration. The QT interval increased from 370 +/- 9 to 426 +/- 14 ms at 1 hour, whereas the QTc increased from 433 +/- 5 to 470 +/- 12 ms (both p < 0.001). The increase was still statistically significant at 12 hours. There was no change in the placebo group. Although heart rate decreased in the d-sotalol group (84 +/- 2 to 76 +/- 2 at 1 hour, p < 0.001), there were no changes in blood pressure or right atrial pressure. Cardiac index decreased slightly (2.0 +/- 0.2 to 1.9 +/- 0.1 mm Hg), consistent with the lower heart rate. Pulmonary capillary wedge pressure decreased from 18.9 +/- 2.4 to 17.9 +/- 1.9 mm Hg at 1 hour despite reduced cardiac index. We conclude that in contrast to class I, II, and IV antiarrhythmic drugs, d-sotalol exerts no clinically important acute hemodynamic actions at doses that produce electrophysiologic effects.

Adult

Prediction of changing cerebral blood flow by use of the conjunctival oxygen tension/arterial oxygen tension index.

Current methods of assessing cerebral blood flow (CBF) are limited in their ability to provide data at the bedside in a timely, inexpensive, and continuous fashion. Since the palpebral conjunctiva is perfused by branches of the internal carotid artery, perfusion of this tissue may reflect global CBF. Conjunctival oxygen tension (PcjO2), PaO2, PaCO2, and pH were measured in ten healthy subjects during normal ventilation and active hyperventilation. CBF was measured simultaneously using positron emission tomography. CBF decreased from an average of 64.3 +/- 15.1 ml x 100 g-1 x min-1 during baseline measurements to 33.2 +/- 8.4 ml x 100 g-1 x min-1 during hyperventilation. The ratio of PcjO2 to PaO2 (the PcjO2/PaO2 index) decreased from 0.53 +/- 0.07 to 0.35 +/- 0.09 in the same time period. The PcjO2/PaO2 index was significantly correlated with CBF (r = .78, p less than .001). We conclude that the PcjO2/PaO2 index may reflect the reduction in CBF induced by hyperventilation in normal humans, and should be investigated further as a method of assessing CBF in other settings which can result in globally reduced cerebral perfusion.

Adult

Conflict - resolution.

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American Nurses' Association