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Biomedical subjects

R Gauzit

Publications and source records attributed to R Gauzit.

22 records · Page 2Linked to original sources

[Effects of flunitrazepam on the baroreflex control of heart rate and on adrenergic activity].

The effects of intravenous flunitrazepam (25 micrograms . kg-1) on the baroreflex control of heart rate and plasma catecholamine levels were determined in ten ASA 1 unpremedicated patients. Plasma concentrations of flunitrazepam were also measured. The data was obtained before and 5, 10 and 15 min after flunitrazepam administration. The baroreflex gain was significantly decreased at 5 min, the time of the highest flunitrazepam plasma concentration. Catecholamine plasma levels were decreased at each study time. It was concluded that flunitrazepam induced a transient depression in baroreflex function and a sustained decrease in adrenergic activity.

Adult↗

Oral intubation v. nasal intubation in adult cardiac surgery.

Time for intubation, incidence of mechanical complications, occurrence of bacteraemia caused by intubation, and postoperative discomfort were assessed in relation to nasal and oral tracheal intubation in adult cardiac surgery. The time for placement of the tube was 2.5 times longer for nasal intubation. Nasal bleeding was observed in 45.3% of patients intubated through the nose. In patients in whom a naso-tracheal tube was passed, 9.4% (v. 2.3% of patients intubated via the mouth), exhibited positive blood cultures just after intubation; however, the difference was not significant. Postoperative discomfort was similar in both groups. It can be concluded that nasal tracheal intubation offers no advantage over oral tracheal intubation in adult cardiac surgery.

Cardiac Surgical Procedures↗

Effects of droperidol on sympathetic activity and baroreflex control of heart rate in humans.

The effects of intravenous droperidol, 0.2 mg . kg-1, on baroreflex control of heart rate and on plasma catecholamine levels were determined in 10 ASA physical status I unpremedicated patients. Baroreflex control of heart rate was assessed by a pressor test using phenylephrine. Plasma concentrations of norepinephrine and epinephrine were determined by high pressure liquid chromatography, and plasma droperidol concentrations were measured by radioimmunoassay, from blood samples withdrawn before baroreflex evaluation. All data were obtained before and 5, 10, and 15 min following droperidol administration. Baroreflex response was significantly decreased after droperidol at each time of the study with the maximal decrease (-47% from control) observed at 5 min. No resetting of baroreflex was present since the pulse interval at the reference pressure was unchanged. Plasma norepinephrine concentrations were moderately but significantly increased only at 5 min, while no significant change in epinephrine concentrations was observed. It is concluded that droperidol induces a moderate but sustained alteration of baroreflex function and a transient increase in plasma norepinephrine concentrations.

Adult↗

Effects of diazepam and midazolam on baroreflex control of heart rate and on sympathetic activity in humans.

The effects of induction of anesthesia with diazepam and midazolam on baroreflex control of heart rate and on plasma levels of catecholamines were investigated in this study. Group 1 subjects (n = 10) received diazepam, 0.4 mg/kg. Group 2 subjects (n = 10) received midazolam, 0.3 mg/kg. Baroreflex function was assessed using a pressor test (phenylephrine). In addition, samples for subsequent determination of plasma norepinephrine and epinephrine levels and plasma diazepam or midazolam concentrations were collected before and 5, 10, and 15 min after intravenous drug administration. The pressor baroreflex slope declined significantly after diazepam or midazolam administration with the maximal changes (-45 and -43%, respectively) observed when plasma diazepam or midazolam concentrations were the highest. Norepinephrine plasma concentrations decreased at each measurement with both drugs. In contrast, epinephrine concentration decreased only after midazolam. The authors conclude that diazepam or midazolam used for induction of anesthesia results in a transient depression of baroreflex function and a sustained decrease of sympathetic tone. This study also indicates that the depression of arterial baroreflex heart rate responses under diazepam or midazolam anesthesia are less pronounced than the depression of baroreflex responses reported by other investigators with potent inhalational anesthetics. However, this disruptive effect of diazepam and midazolam on sympathetic control of circulation might induce a limited ability to compensate for hemodynamic alterations related to hypovolemia.

Adult↗