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C Melot

Publications and source records attributed to C Melot.

At least 19 recordsLinked to original sources

Cyclooxygenase inhibition aggravates pulmonary hypertension and deteriorates gas exchange in canine pulmonary embolism.

We examined the effects of cyclooxygenase inhibitors on pulmonary hemodynamics and gas exchange after experimental acute pulmonary embolism in 12 intact anesthetized dogs. Pulmonary hemodynamics were evaluated by pulmonary arterial pressure (Ppa)/cardiac output (Q) plots before and 60 min after autologous blood clot embolization and again 30 min after cyclooxygenase inhibition, either by acetylsalicylic acid (ASA, n = 6) or by indomethacin (INDO, n = 6). Gas exchange was assessed using the multiple inert gas elimination technique, at a constant intermediate Q, under each of these experimental conditions. Embolization increased Ppa at all levels of Q studied (p less than 0.001), increased true shunt (p less than 0.05), and shifted perfusion (Q) and ventilation (VA) distributions to lower and higher VA/Q (p less than 0.05), respectively. ASA and INDO further shifted Ppa/Q plots toward higher pressures (p less than 0.05). Concomitantly, the physiologic dead space increased after INDO (p less than 0.001), and the proportion of lung units with a high VA/Q increased and the inert gas dead space decreased after both ASA (p less than 0.05) and INDO (p less than 0.05). We conclude that, in experimental pulmonary embolism, structurally different cyclooxygenase inhibitors aggravate pulmonary hypertension and deteriorate gas exchange by an altered distribution of VA/Q essentially to lung units with a higher than normal VA/Q. These findings may be explained by changes in the distributions of both VA and of Q as a consequence of cyclooxygenase inhibition-associated increases in both bronchial and vascular tone in embolized lung regions.

Animals

Hemodynamic evaluation of bisoprolol after coronary artery surgery in patients with altered left ventricular function.

Bisoprolol is a new cardioselective beta1 adrenergic blocking agent without intrinsic sympathomimetic activity but with minimal effects on myocardial contractility. Bisoprolol was compared to propranolol in 24 patients after cardiac surgery for coronary artery bypass graft (CABG). Each patient had been treated preoperatively with beta-blocking agents and had a cineangiographic left ventricular ejection fraction between 35% and 55%. Patients were randomized to receive orally either 10 mg of propranolol three times a day or 5 mg of bisoprolol once a day. Both drugs resulted in a significant and similar decrease in heart rate. This was associated with significant decreases in cardiac index, stroke index, and thermodilution right ventricular ejection fraction 6 hours after administration of propranolol, but not after bisoprolol. Systolic function measured by Doppler techniques significantly increased in the 10 postoperative days in patients under bisoprolol but not significantly after propranolol. Each drug was well tolerated during the 10 postoperative days, and the recovery was uneventful in each patient. These results indicate that in patients with altered systolic function after CABG, bisoprolol is susceptible to reduce heart rate with less cardiovascular alteration than propranolol.

Adrenergic beta-Antagonists

Effects of residual concentrations of isoflurane on the reversal of vecuronium-induced neuromuscular blockade.

Thirty-six anesthetized patients (ASA physical status 1 or 2) undergoing elective surgery were monitored (isometric adductor pollicis mechanical activity) to detect the effects of discontinuing isoflurane anesthesia upon the reversal of vecuronium-induced neuromuscular blockade. Neuromuscular blockade was produced by vecuronium 100 micrograms/kg and additional doses of 20 micrograms/kg until completion of surgery. The patients were randomly divided into three groups: in the control group (n = 12), only fentanyl/N2O was given; in the "isostable" group (n = 12), isoflurane at an end-tidal concentration of 1.25% was maintained throughout anesthesia; in the "isostop" group (n = 12), isoflurane 1.25% was discontinued before neostigmine administration. In all groups, paralysis was antagonized with 15 micrograms/kg intravenous (iv) atropine and 40 micrograms/kg iv neostigmine when the twitch height (0.1 Hz) had regained 25% of its control value. The measured parameters were twitch height, train-of-four, and 50--100-Hz tetanic fade. No significant differences were found among the three groups with respect to the final twitch heights and tetanic fades at 50 Hz. In the isostable group, final mean train-of-four was significantly less (75%) than in the other patients (88%) (P less than 0.01). Mean tetanic fade at 100 Hz was significantly less in the isostable group (31%) than in the isostop group (57%) (P less than 0.01) and control group (84%) (P less than 0.01). We conclude that discontinuing isoflurane anesthesia for 15 min improves the reversal of a vecuronium paralysis.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Acid-base status affects gas exchange in canine oleic acid pulmonary edema.

The effects of acidosis and alkalosis on pulmonary gas exchange were studied in 32 pentobarbital sodium-anesthetized intact dogs after induction of oleic acid (0.06 ml/kg) pulmonary edema. Gas exchange was assessed at constant ventilation and constant cardiac output, by venous admixture calculations and by intrapulmonary shunt measurements using the sulfur hexafluoride (SF6) method. Metabolic acidosis (pH 7.20) and alkalosis (pH 7.60) were induced with HCl and Carbicarb (isosmolar Na2CO3 and NaHCO3), respectively. Hypercapnia was induced by adding inspiratory CO2, whereas pH was allowed to change (respiratory acidosis, pH 7.20) or maintained constant (isolated hypercapnia). Mean intrapulmonary shunt and pulmonary arterial minus wedge pressure difference, respectively, changed from 44 to 33% (P less than 0.05) and from 9 to 10 mmHg (P greater than 0.05) in metabolic acidosis, from 44 to 62% (P less than 0.001) and from 12 to 8 mmHg (P less than 0.01) in metabolic alkalosis, from 40 to 42% (P greater than 0.05) and from 13 to 16 mmHg (P less than 0.05) in respiratory acidosis, from 42 to 52% (P less than 0.05) and from 8 to 12 mmHg (P less than 0.01) in isolated hypercapnia. These results indicate that acidosis, alkalosis, and hypercapnia markedly influence pulmonary gas exchange and/or pulmonary hemodynamics in dogs with oleic acid pulmonary edema.

Acidosis

PEEP inhibits hypoxic pulmonary vasoconstriction in dogs.

The effects of an increase in alveolar pressure on hypoxic pulmonary vasoconstriction (HPV) have been reported variably. We therefore studied the effects of positive end-expiratory pressure (PEEP) on pulmonary hemodynamics in 13 pentobarbital-anesthetized dogs ventilated alternately in hyperoxia [inspired O2 fraction (FIO2) 0.4] and in hypoxia (FIO2 0.1). In this intact animal model, HPV was defined as the gradient between hypoxic and hyperoxic transmural (tm) mean pulmonary arterial pressure [Ppa(tm)] at any level of cardiac index (Q). Ppa(tm)/Q plots were constructed with mean transmural left atrial pressure [Pla(tm)] kept constant at approximately 6 mmHg (n = 5 dogs), and Ppa(tm)/PEEP plots were constructed with Q kept constant approximately 2.8 l.min-1.m-2 and Pla(tm) kept constant approximately 8 mmHg (n = 8 dogs). Q was manipulated using a femoral arteriovenous bypass and a balloon catheter in the inferior vena cava. Pla(tm) was held constant by a balloon catheter placed by left thoracotomy in the left atrium. Increasing PEEP, from 0 to 12 Torr by 2-Torr increments, at constant Q and Pla(tm), increased Ppa(tm) from 14 +/- 1 (SE) to 19 +/- 1 mmHg in hyperoxia but did not affect Ppa(tm) (from 22 +/- 2 to 23 +/- 1 mmHg) in hypoxia. Both hypoxia and PEEP, at constant Pla(tm), increased Ppa(tm) over the whole range of Q studied, from 1 to 5 l/min, but more at the highest than at the lowest Q and without change in extrapolated pressure intercepts. Adding PEEP to hypoxia did not affect Ppa(tm) at all levels of Q.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Enhancement of hypoxic pulmonary vasoconstriction by metabolic acidosis in dogs.

The effects of HCl infusion on multipoint mean pulmonary arterial pressure (PAP)/cardiac index (CI) plots in pentobarbital-anesthetized dogs whose lungs were ventilated alternately in hyperoxia (fraction of inspired O2 [FIO2], 0.4) and hypoxia (FIO2, 0.1) were investigated. Over the range of CI studied (1 to 5 l.min-1.m-2), hypoxia increased PAP in 22 dogs (responders) and did not affect PAP in 16 other dogs (nonresponders). In eight nonresponders, two repetitions of alternated 0.4 and 0.1 FIO2 exposures did not restore hypoxic pulmonary vasoconstriction (HPV), defined as a hypoxia-induced increase in PAP at a given flow. Intravenous infusion of 2 M HCl (2 mmol.kg-1.h-1) decreased arterial pH from normal to around 7.20 in eight responders and eight nonresponders. This metabolic acidosis increased PAP at all levels of CI in hyperoxia and in hypoxia in all the dogs, enhanced HPV in the responders, and restored HPV in the nonresponders. In eight responders, 2 M HCl infusion (2 mmol.kg-1.h-1) together with a 7% sodium bicarbonate infusion (adjusted to maintain arterial pH unchanged) did not affect hyperoxic or hypoxic PAP/CI plots. Pretreatment with 1 g acetylsalicylic acid iv (6 dogs) did not affect the pulmonary vasoreactivity to HCl-induced (2 M HCl, 2 mmol.kg-1.h-1) metabolic acidosis. It was concluded that in intact dogs: 1) metabolic acidosis enhances HPV; 2) at the given dose, HCl does not produce pulmonary vascular effects unrelated to the circulating blood pH; and 3) it is unlikely that the pulmonary vasoreactivity to metabolic acidosis is mediated by products of the cyclooxygenase pathway.

Acidosis

Effects of acidosis and alkalosis on hypoxic pulmonary vasoconstriction in dogs.

We studied the effects of metabolic and respiratory acidosis (pH 7.20) and alkalosis (pH 7.60) on pulmonary vascular tone in 32 pentobarbital-anesthetized dogs ventilated with hyperoxia (inspired oxygen fraction, FIO2 0.40) and with hypoxia (FIO2 0.10). Ventilation, pulmonary capillary wedge pressure (Ppw), and cardiac output (3 l.min-1.m-2) were maintained constant to prevent passive changes in pulmonary arterial pressure (Ppa). Metabolic acidosis and alkalosis were induced with HCl (2 mmol.kg-1.h-1) and NaHCO3-Na2CO3 (5 mmol.kg-1.h-1) infusions, respectively, and respiratory acidosis and alkalosis by modifying the inspiratory CO2 fraction. The hypoxia-induced rise in Ppa-Ppw gradient increased from 5 to 9 mmHg in metabolic acidosis (P less than 0.001), decreased from 6 to 1 mmHg in metabolic alkalosis (P less than 0.001), remained unchanged in respiratory acidosis, and decreased from 5 to 2 mmHg in respiratory alkalosis (P less than 0.001). Linear relationships were found between pH and Ppa-Ppw gradients. These data indicate that in intact anesthetized dogs, metabolic acidosis and alkalosis, respectively, enhance and reverse hypoxic pulmonary vasoconstriction (HPV). Respiratory acidosis did not affect HPV and respiratory alkalosis blunted HPV, which suggests an pH-independent vasodilating effect of CO2.

Acidosis

Inhibition of hypoxic pulmonary vasoconstriction by increased left atrial pressure in dogs.

To further explore the mechanism of hypoxic pulmonary vasoconstriction, we studied the mean pulmonary arterial pressure (Ppa)/left atrial pressure (Pla) relationship at fixed cardiac index (Q) and the Ppa/Q relationship at several levels of fixed Pla in pentobarbital sodium-anesthetized dogs ventilated alternately in hyperoxia [fraction of inspired O2 (FIO2) 0.4 or 1.0] and in hypoxia (FIO2 0.1). In all experimental conditions, Ppa/Q plots were linear with extrapolated pressure intercepts (Pi) not significantly different from Pla. Hypoxia increased the slope of Ppa/Q plots and did not affect Pi. In hyperoxia, increasing Pla (3 to 26 mmHg) induced approximately equal increases in Ppa at fixed Q and shifted Ppa/Q plots toward higher pressures in a parallel manner. In hypoxia, increasing Pla (4 to 25 mmHg) did not affect Ppa at fixed Q until Pla exceeded 16 mmHg and shifted Ppa/Q plots toward higher pressures with a decrease in slope. Consequently, the hypoxia-induced increases in Ppa at constant Q and constant Pla were attenuated at higher Pla. Thus, in anesthetized dogs, hypoxia increases the slope of Ppa/Q plots without affecting Pi at fixed Pla, and an increase in Pla inhibits hypoxic pulmonary vasoconstriction. These results can be explained without invoking a hypoxia-induced Starling resistor mechanism in the pulmonary circulation.

Animals

Absence of parasympathetic control of pulmonary vascular pressure-flow plots in hyperoxic and hypoxic dogs.

Hypoxic stimulation of the peripheral chemoreceptors has been reported to inhibit hypoxic pulmonary vasoconstriction (HPV). This has been explained by a reflex vagal (Chapleau et al., 1988) or sympathetic (Naeije et al., 1989) pulmonary vasodilation. We therefore investigated the effects of bilateral cervical vagotomy and of muscarinic block (atropine sulfate 0.1 mg.kg-1 i.v.) on multipoint pulmonary arterial pressure (Ppa)-cardiac index (Q) plots in 16 sodium pentobarbital-anesthetized dogs ventilated alternately in hyperoxia (fraction of inspired O2, FIO2, 0.4) and in hypoxia (FIO2 0.1). Over the range of Q studied, 2 to 5 L.min-1.m-2, hypoxia increased Ppa and did not change pulmonary capillary wedge pressure (Ppw). After bilateral cervical vagotomy or after atropine, Ppa and Ppw at all levels of Q were not modified either during hyperoxia or during hypoxia. These results show that the parasympathetic system does not affect the global hypoxia-induced pulmonary vasopressor response and thus suggest that the depressor effect of chemoreceptor stimulation on HPV is not vagally mediated.

Animals

Systemic and regional hemodynamic effects of isosorbide dinitrate in patients with liver cirrhosis and portal hypertension.

In a group of 17 cirrhotic patients with portal hypertension, we have investigated the effects of 5 mg sublingual administration of isosorbide dinitrate (IDN) on central hemodynamics, on regional (hepatic and renal) hemodynamics and on blood gases. Fifteen min after drug administration, we observed a decrease in the right atrial mean pressure from 4 +/- 1 to 3 +/- 1 mmHg (mean +/- S.E.M., P less than 0.02) and of pulmonary arterial wedge pressure from 7 +/- 1 to 4 +/- 1 mmHg (P less than 0.001) with decreases of the cardiac index from 4.2 +/- 0.2 to 3.7 +/- 0.2 l/min/m2 (P less than 0.001) and the mean arterial pressure from 89 +/- 4 to 72 +/- 3 mmHg (P less than 0.001) and an increase in heart rate from 86 +/- 4 to 94 +/- 5 beats/min (P less than 0.001). Arterial PO2 decreased from 73 +/- 2 to 66 +/- 2 mmHg (P less than 0.001). As a consequence of both cardiac index and arterial PO2 reductions, O2 transport to the tissues was reduced from 602 +/- 32 to 518 +/- 26 ml/min.m2 (P less than 0.001). The hepatic venous pressure gradient decreased from 17 +/- 1 to 14 +/- 1 mmHg (P less than 0.001) and hepatic vein PO2 did not change. The hepatic blood flow (HBF) determined in 7 patients remained unchanged. Renal blood flow (RBF) determined in 5 patients decreased from 0.76 +/- 0.11 to 0.68 +/- 0.11 l/min (P less than 0.001). In conclusion, isosorbide dinitrate reduces portal hypertension in patients with liver cirrhosis without compromising hepatic perfusion.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Effects of propofol on pulmonary and systemic arterial pressure-flow relationships in hyperoxic and hypoxic dogs.

We have investigated the effects of a continuous infusion (18 mg kg-1 h-1) of the aqueous emulsion formulation of propofol on mean pulmonary arterial (PAP)/cardiac output (O) and mean systemic arterial pressure (SAP)/Q relationships in 15 intact pentobarbitone-anaesthetized dogs subjected to hyperoxia (F/O2 0.4) and hypoxia (F/O2 0.1). Five-point PAP/Q and SAP/Q plots were obtained by opening an arterio-venous femoral fistula or by stepwise inflations of an inferior vena cava balloon. Over the range of Q studied (2-5 litre min-1), hypoxia increased PAP in eight dogs ("responders") and did not affect PAP in seven others ("non-responders"). Hypoxic pulmonary vasoconstriction (HPV) was restored in non-responders by the administration of acetylsalicylic acid (ASA) 1 g i.v. Hypoxia did not affect SAP over the range of Q studied in the responders or in the non-responders treated with ASA. Propofol had no effect on hyperoxic or on hypoxic PAP at all values of Q either in responders or in non-responders with HPV restored by ASA. Propofol did not change Q at uncontrolled flow, but decreased SAP at the lowest Q (2 and 3 litre min-1) during hyperoxia and at all values of Q during hypoxia. The systemic vascular effects were the same in animals of both groups, treated with ASA or not. We conclude that propofol does not influence pulmonary vascular tone and does not inhibit HPV, but reduces systemic vascular tone when venous return or oxygenation is decreased. The haemodynamic response to propofol was not affected by cyclo-oxygenase inhibition.

Anesthetics

Pulmonary vascular responses to surgical chemodenervation and chemical sympathectomy in dogs.

We investigated the effects of surgical peripheral chemoreceptor denervation, chemical sympathectomy with 6-hydroxydopamine (6-OHDA), and the peripheral chemoreceptor stimulant almitrine on multipoint pulmonary arterial pressure-cardiac index (PAP/Q) plots in 30 pentobarbital sodium-anesthetized dogs ventilated alternatively in hyperoxia [fraction of inspired O2, (FIO2) = 0.4] and hypoxia (FIO2 = 0.1). A hypoxic pulmonary vasoconstriction (HPV), i.e., a hypoxia-induced increase in PAP over the entire range of Q studied, from 2 to 5 l.min-1.m-2, was elicited in all the animals. Surgical denervation of the carotid and aortic chemoreceptors in a first group of nine dogs increased PAP at the lowest Q of 2 and 3 l.min-1.min-2 in hyperoxia and increased PAP at all levels of Q in hypoxia, so that HPV was enhanced. Chemical sympathectomy in a second group of eight dogs increased PAP at all levels of Q to a comparable extent in hyperoxia and hypoxia so that HPV remained unchanged. Almitrine (8 micrograms.kg-1.min-1 iv) in a third group of eight dogs increased PAP at all levels of Q in hyperoxia but had no effect on PAP/Q plots in hypoxia, so that HPV was inhibited. Almitrine had these same pulmonary vascular effects when administered to the chemodenervated and the sympathectomized dogs. Sham operation and a 2-h delay in a final group of five dogs had no effect on hyperoxic or hypoxic PAP/Q plots. We conclude that in intact dogs 1) the sympathetic nervous system reduces both hyperoxic and hypoxic pulmonary vascular tone, 2) stimulation of the peripheral chemoreceptors inhibits HPV, and 3) almitrine has direct pulmonary vasoconstricting effects in hyperoxia but not hypoxia.

Almitrine

Influence of cyclo-oxygenase inhibition and of leukotriene receptor blockade on pulmonary vascular pressure/cardiac index relationships in hyperoxic and in hypoxic dogs.

Overall mean pulmonary arterial pressure (MPAP)/cardiac index (CI) relationships were investigated in 13 pentobarbital anaesthetized dogs ventilated consecutively with a fraction of inspired O2 (F1O2) of 0.4 and with a F1O2 of 0.1. This sequence of alternated F1O2 0.4 and F1O2 0.1 was repeated in the dogs with a strong pulmonary pressor response to hypoxia (more than 20% increase in pulmonary vascular resistance) (n = 6) under a continuous infusion of the leukotriene receptor blocker FPL 57231 (2 mg min-1 kg-1), and in the dogs with a weak pressor response to hypoxia (n = 7) after cyclo-oxygenase inhibition by acetylsalicylic acid (1 g intravenously). Five-point MPAP/CI plots were constructed by opening a femoral arteriovenous fistula or by stepwise inflations of an inferior vena cava balloon catheter. The MPAP/CI plots were rectilinear in all experimental conditions. In responders, hypoxia was associated with an increase in MPAP over the entire range of CI studied (1-5 litres min-1 m-2). Infusion of FLP 57231 abolished the vasoconstricting effect of hypoxia. In non-responders, MPAP was not affected by hypoxia over the entire range of CI. After acetylsalicylic acid administration, hypoxia resulted in a significant rise in MPAP from 2 to 5 litres min-1 m-2. Infusion of FLP 57231 decreased mean systemic arterial pressure at both F1O2 0.4 and F1O2 0.1, while acetylsalicylic acid had no effect on systemic haemodynamics.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effects of dopamine and dobutamine on hyperoxic and hypoxic pulmonary vascular tone in dogs.

The pulmonary vascular effects of dopamine and of dobutamine have been reported variably in the literature. We investigated the effects of dopamine and of dobutamine, at doses of 10 and 20 micrograms/kg/min, on the relationships of overall mean pulmonary arterial pressure (Ppa) to cardiac index (Cl) in 14 dogs ventilated alternatively in hyperoxic (FIO2, 0.4) and in hypoxic (FIO2, 0.1) conditions. Five-point Ppa/Cl plots were constructed by opening an arteriovenous femoral fistula or by stepwise inflations of a balloon in the inferior vena cava. These Ppa/Cl plots were rectilinear in all experimental conditions. Hypoxia was associated with an increase in Ppa over the entire range of Cl studied (2 to 5 L/min/m2). A deterioration in arterial oxygenation and an increase in O2 consumption constantly occurred after dopamine as well as after dobutamine administration. At 10 micrograms/kg/min (n = 6 dogs) neither drug affected Ppa over the entire range of Cl at both 0.4 and 0.1 FIO2. At 20 micrograms/kg/min (n = 8 dogs), dopamine and dobutamine increased Ppa at the lowest Cl (2 to 4 and 2 to 3 L/min/m2, respectively) at 0.4 FIO2, and attenuated hypoxia-induced increases in Ppa over the entire range of Cl. Two repetitions of alternated 0.4 and 0.1 FIO2 exposures had no effect on Ppa/Cl plots in 6 additional dogs given no drug. We concluded that at dosages as great as 20 micrograms/kg/min, as generally given in clinical practice, dopamine and dobutamine exerted similar effects upon the pulmonary circulation of intact dogs; either no change or an increase in hyperoxic pulmonary vascular tone and either no change or an attenuation of hypoxic pulmonary vasoconstriction.

Animals

Pulmonary vascular tone improves pulmonary gas exchange in the adult respiratory distress syndrome.

Hemodynamics, blood gases, lung mechanics, and the distributions of ventilation-perfusion ratios (VA/Q) were studied before and after iv diltiazem, 0.5 mg/kg over 30 min, in 6 patients with pulmonary hypertension secondary to the adult respiratory distress syndrome (ARDS) ventilated with 7 to 20 cm H2O positive end-expiratory pressure (PEEP). Diltiazem decreased systemic and pulmonary arterial pressures without changes in cardiac output and in filling pressures of the heart, and with a slowing of heart rate. Pulmonary vascular resistances decreased from 401 +/- 59 to 329 +/- 58 dyne.s.cm-5.m2 (mean +/- SEM), p less than 0.01. Arterial Po2 decreased from 87 +/- 10 to 80 +/- 11 mm Hg (p less than 0.02) without changes in arterial PCO2, mixed venous PO2, and O2 consumption. Lung compliance and airway resistances did not change. Diltiazem increased true shunt from 23 +/- 5 to 30 +/- 7% of total blood flow (p less than 0.02) without other modification in the pattern of VA/Q distribution as measured by the multiple inert gas elimination technique. These results suggest that pulmonary vascular tone contributes to the maintenance of VA/Q matching in patients with ARDS.

Adult

Reduction in pulmonary hypertension and in airway resistances by enoximone (MDL 17,043) in decompensated COPD.

Hemodynamics, blood gas values, and lung mechanics were investigated in 19 patients with decompensated COPD before and 30 and 60 minutes after a slow (15 minute) intravenous administration of 3 mg/kg enoximone (MDL 17,043). In the first 11 patients who were spontaneously breathing, enoximone significantly decreased pulmonary arterial wedge pressure, right atrial pressure, mean systemic arterial pressure, and mean pulmonary arterial pressure. Cardiac output remained unchanged, while heart rate increased slightly. Lung resistance decreased and dynamic lung compliance increased. Blood gas values remained unchanged. Similar effects were observed in the next eight patients who were artificially ventilated, except for an increase in cardiac output. These results show that enoximone has bronchodilating and pulmonary vasodilating properties.

Aged

Discrepancy between thermodilution and radionuclide right ventricular ejection fraction measurements: the importance of tricuspid regurgitation.

Measurement of right ventricular ejection fraction (RVEF) by the thermodilution technique has become routinely available at the bedside of the critically ill. We describe 2 patients with tricuspid regurgitation in whom RVEF values were considerably lower by thermodilution than by radionuclide techniques. Discrepancies could be due to the regurgitation of the thermodilution signal and possibly to the different nature of the two measurements (forward stroke volume with the thermodilution technique and total stroke volume with the radionuclide technique). We suggest that lower RVEF measurement by the thermodilution technique could be related to unrecognized tricuspid regurgitation. Measurement of an unexpectedly low RVEF by the thermodilution technique should suggest the presence of tricuspid regurgitation.

Heart