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Biomedical subjects

O Erkola

Publications and source records attributed to O Erkola.

14 recordsLinked to original sources

Intramuscularly administered dexmedetomidine attenuates hemodynamic and stress hormone responses to gynecologic laparoscopy.

The hemodynamic and endocrine effects of three different doses of dexmedetomidine (0.6, 1.2, and 2.4 micrograms/kg), oxycodone (0.13 mg/kg), and saline solution, injected intramuscularly 45-60 min before induction of general anesthesia, were compared in a double-blind, randomized study involving 100 women undergoing gynecologic diagnostic laparoscopy. Anesthesia was induced with thiopental (4.5 mg/kg) and maintained with 0.3% end-tidal isoflurane and 70% nitrous oxide in oxygen. Arterial blood pressure and heart rate increased after endotracheal intubation and during laparoscopy in all groups, but the maximal mean arterial pressure after tracheal intubation was lower in the dexmedetomidine 2.4-micrograms/kg group (104 mm Hg [SD 19]) than in the saline solution group (130 mm Hg [SD 12]). Dexmedetomidine (2.4 and 1.2 micrograms/kg) attenuated the maximal heart rate after intubation (84 [SD 11] and 101 beats/min [SD 15], respectively) compared with saline solution (116 beats/min [SD 19]). On the other hand, 40% of the patients in the dexmedetomidine 2.4-micrograms/kg group received atropine in the postanesthesia care unit for bradycardia (heart rate < or = 40 beats/min). Preoperative anxiety and sedation before and after preanesthetic medication were evaluated by the patients with the aid of a profile of mood-state questionnaire; only dexmedetomidine 2.4 micrograms/kg produced significant anxiolysis and sedation. Plasma concentrations of norepinephrine, epinephrine, 3,4-dihydroxyphenylglycol, cortisol, and beta-endorphin increased less in the dexmedetomidine 2.4-micrograms/kg group in response to tracheal intubation and surgery than in the saline solution group.

Adrenergic alpha-Agonists

Dexmedetomidine infusion for maintenance of anesthesia in patients undergoing abdominal hysterectomy.

The usefulness of intravenous dexmedetomidine infusion for maintenance of anesthesia was studied in patients anesthetized with thiopental, fentanyl, nitrous oxide, and oxygen. Isoflurane was added as needed. The study was conducted in two parts, the first of which was an open dose-response study that comprised 14 women undergoing abdominal hysterectomy. After a suitable infusion regimen of dexmedetomidine was determined according to hemodynamic criteria, 20 patients were included in a double-blind, randomized placebo-controlled trial (10 receiving dexmedetomidine, 10 saline solution). Dexmedetomidine was administered as a two-step infusion to rapidly achieve a steady-state plasma concentration. The infusion was started with an initial dose given over 10 min before the induction of anesthesia; at induction the maintenance rate was begun and continued until closure of the abdominal fascia. The infusion regimens of dexmedetomidine tested in the dose-response study ranged from 120 ng.kg-1 x min-1, followed by 6 ng.kg-1 x min-1, to 270 + 13.5 ng.kg-1 x min-1. In the second part of the study, an initial infusion of 170 ng.kg-1 x min-1 was chosen, followed by 10 ng.kg-1 x min-1 for maintenance. Anesthesia was induced with thiopental (4.0 mg/kg) and maintained with isoflurane in 70% nitrous oxide and oxygen. Isoflurane was administered according to predetermined hemodynamic criteria. Dexmedetomidine infusion did not completely abolish the need for isoflurane but diminished its requirement by > 90% (P = 0.02). The heart rate response to endotracheal intubation was significantly blunted.

Adrenergic alpha-Agonists

The effect of intravenously administered dexmedetomidine on perioperative hemodynamics and isoflurane requirements in patients undergoing abdominal hysterectomy.

The effects of two doses of dexmedetomidine (0.3 or 0.6 micrograms.kg-1), fentanyl 2.0 micrograms.kg-1, or saline as a single intravenous bolus administered 10 min prior to the induction of anesthesia were assessed in double-blind, randomized study in 96 women undergoing abdominal hysterectomy. In each patient, anesthesia was induced with thiopental 4.0 mg.kg-1, and after the effect of succinylcholine had dissipated, isoflurane 0.3% end-tidal concentration in 70% nitrous oxide was begun to maintain anesthesia. The isoflurane concentration was adjusted to maintain blood pressure and heart rate within 20% of preoperative values, and fentanyl was given if the end-tidal isoflurane concentration exceeded 1.5%. In all groups, blood pressure and heart rate increased after tracheal intubation. However, the increase in blood pressure and heart rate was significantly less in the higher dexmedetomidine (0.6 micrograms.kg-1) group than in the saline group (P less than 0.01). Also, the postintubation increase in heart rate was significantly less (P less than 0.05) in the dexmedetomidine 0.6 micrograms.kg-1 group (increase of 18 +/- 3 beats per min) compared to the fentanyl group (increase of 26 +/- 3 beats per min). In patients receiving dexmedetomidine 0.3 micrograms.kg-1, the increase in blood pressure or heart rate did not differ from that of the saline group. The mean end-tidal isoflurane concentration was significantly less in the women receiving the higher dose of dexmedetomidine (0.35%) than in those receiving saline (0.47%) or fentanyl (0.48%), although the reduction was not clinically important.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists

Effects of precurarisation on suxamethonium-induced postoperative myalgia during the first trimester of pregnancy.

Two hundred and fifty women undergoing termination of pregnancy during the first trimester under general anaesthesia were studied to determine the effects of precurarisation on suxamethonium-induced postoperative myalgia and on the need for postoperative analgesics after suxamethonium. Either alcuronium (0.03 mg/kg), atracurium (0.04 mg/kg), tubocurarine (0.05 mg/kg), vecuronium (0.01 mg/kg) or saline was administered in a double-blind manner 4 min before giving suxamethonium. An additional 50 patients were studied who received isoflurane rather than precurarisation and suxamethonium. Every pretreatment prevented fasciculations better than did saline (P less than 0.001). In the saline group, 92% of patients had fasciculations and in the other groups this ranged from 8 to 32%, respectively. On the first postoperative day, 76% of the patients in the saline group had myalgia while myalgia was manifested in 28, 54 and 34% of patients given alcuronium, tubocurarine or vecuronium, respectively (P less than 0.05). Atracurium failed in this effect with 62% having myalgia. In the isoflurane group, none of the patients complained of myalgia on the first postoperative morning. The need for analgesics was less (P less than 0.005) in the isoflurane group (8%) and in the pretreatment groups (18-27%) than in the saline group (42%). It is concluded that precurarisation with tubocurarine, vecuronium or, most effectively, with alcuronium but not with atracurium decreases suxamethonium-induced postoperative myalgia and seems to be necessary also during the first trimester of pregnancy.

Abortion, Induced

The experience of the person ventilating the lungs does influence postoperative nausea and vomiting.

One hundred and ninety-eight patients undergoing elective abdominal hysterectomy were anaesthetized with isoflurane in nitrous oxide and oxygen. Ventilation before endotracheal intubation was carried out either by an experienced senior or by an inexperienced junior member of the anaesthetic team. The incidence and severity of emesis (none, nausea, retching or vomiting) were assessed five times during the first 24 h after operation. Patients whose lungs had been ventilated by experienced members of staff had significantly less (P less than 0.05 to 0.01) postoperative emesis in the recovery room (incidence of emesis 35%) and 2-6 h after operation (incidence 27%) when compared to patients whose lungs had been ventilated by inexperienced members of staff (incidence of emesis 54% and 40% in the recovery room and after 2 to 6 h, respectively). The results suggest that the experience of the person ventilating the lungs is associated with postoperative nausea and vomiting.

Adult

Gastric aspiration at the end of anaesthesia does not decrease postoperative nausea and vomiting.

Two hundred and one women undergoing elective abdominal hysterectomy were anaesthetised with isoflurane in nitrous oxide and oxygen. At the end of anaesthesia the stomach was aspirated in half of the patients, selected in random order. In the other half no aspiration was performed. Incidence and severity of emesis (none, nausea, retching or vomiting) was assessed during the first 24 hours after operation. Emesis was similar after the operation regardless of aspiration of the stomach (overall emesis, 79% and 70% for those whose stomach had and had not been aspirated, respectively). The incidence at all times during the 24 hours was similar in both groups. The results suggest that gastric aspiration at the end of anaesthesia has no major effect on the incidence or severity of postoperative emesis in patients undergoing abdominal hysterectomy.

Adult

Nitrous oxide does not increase nausea and vomiting following gynaecological laparoscopy.

The effect of three different anaesthetic techniques on the incidence and severity of postoperative emesis (nausea, retching and vomiting) was studied in 150 patients undergoing gynaecological laparoscopy. Patients were anaesthetized with isoflurane in nitrous oxide and oxygen (Group A), enflurane in nitrous oxide and oxygen (Group B) or with isoflurane in air and oxygen (Group C). Groups had been predetermined by date of birth. During the first 24 hours after the operation no difference was found at any time in the incidence or severity of emesis among the groups. The overall incidence of emesis during the first 24 hours postoperatively was 54, 48 and 52 per cent, in groups A, B and C, respectively. It is concluded that nitrous oxide does not increase the incidence of emesis after isoflurane anaesthesia and that isoflurane and enflurane anaesthesia are associated with similar incidences of nausea and vomiting after gynaecological laparoscopy.

Adult

A clinical study into the possible intrinsic bradycardic activity of vecuronium.

Forty female patients received a standardised anaesthetic technique with thiopentone sodium and enflurane. Half of the patients received, under double-blind conditions, either physiological saline or glycopyrronium before induction of anaesthesia; 10 minutes after induction of anaesthesia, all patients received vecuronium 0.1 mg/kg. A further 10 patients received neither glycopyrronium nor vecuronium. The results show that vecuronium per se does not produce a decrease in heart rate.

Adult

Spontaneous recovery of residual neuromuscular blockade after atracurium or vecuronium during isoflurane anaesthesia.

With atracurium and vecuronium, spontaneous recovery of residual neuromuscular blockade monitored electromyographically during 0.5% isoflurane anaesthesia was studied in 60 patients undergoing plastic surgery. After thiopentone, in random order, either atracurium 0.5 mg kg-1 or vecuronium 0.1 mg kg-1 was administered and isoflurane added to N2O and O2 mixture. Following spontaneous recovery of both the single twitch amplitude (T1) to 75% of the control value and the train-of-four ratio (TOF ratio) to 75%, incremental doses of the relaxant were given to maintain the T1 at less than 10%. Before the end of surgery, the blockade was again permitted to recover spontaneously. During the initial spontaneous recovery, the mean recovery time of T1 from 25% to 75% (the recovery index) with atracurium was longer (P less than 0.001) than that with vecuronium (13.2 min and 10.1 min, respectively) but, during the second recovery, the mean recovery index was shorter (P less than 0.05) with atracurium than with vecuronium (16.1 min and 19.8 min, respectively). The recovery time from T1 75% to TOF ratio 75%, indicating the recovery rate of residual neuromuscular blockade, with atracurium was about 15 min after both the initial and the second recoveries. With vecuronium, the respective recovery times were significantly (P less than 0.001) longer (25.6 min and 38.5 min, respectively). It is concluded that with vecuronium there is slower spontaneous recovery of residual neuromuscular blockade than with atracurium.

Adult

Train-of-four fade of non depolarizing muscle relaxants: an insight into the mechanism of precurarization.

This study was carried out to assess the prejunctional effect of non depolarizing muscle relaxants during the onset of neuromuscular blockade using the train-of-four ratio (TR). The prejunctional effect was compared with previous results concerning the ability of the relaxants to prevent suxamethonium-induced fasciculations. Fifty-three adult patients were relaxed with small incremental doses of either alcuronium (0.03 mg.kg-1), atracurium (0.04 mg.kg-1), pancuronium (0.01 mg.kg-1), d-tubocurarine (0.05 mg.kg-1) or vecuronium (0.01 mg.kg-1) during anaesthesia with thiopentone, fentanyl and nitrous oxide in oxygen. The muscle relaxant was given after recovery from an initial suxamethonium blockade needed for tracheal intubation. The evoked integrated EMG response to supramaximal train-of-four (2 Hz) stimulation was recorded every 20 s. TR % was calculated at different first twitch (T1) levels during the onset of neuromuscular blockade. Significant changes occurred at the 100% and 90% T1 levels, alcuronium having the lowest mean TR values. Atracurium, pancuronium and vecuronium gave similar TR values. Results with d-tubocurarine placed it between alcuronium and the others. These train-of-four ratio results were compared with the ability of non depolarizing muscle relaxants to prevent fasciculations. In conclusion, the stronger the train-of-four fade, the greater was the ability of the relaxant to prevent suxamethonium-induced fasciculations. This supports the theory that the blockade of prejunctional cholinergic receptors is the mechanism of action of precurarization.

Adolescent

Nausea and vomiting after general anaesthesia with isoflurane, enflurane or fentanyl in combination with nitrous oxide and oxygen.

One-hundred and eighty patients undergoing elective abdominal hysterectomy were anaesthetized in random order with isoflurane, enflurane or fentanyl in combination with nitrous oxide and oxygen. Incidence and severity of emetic sequelae (none, nausea, retching or vomiting) were studied during the first 24 h after the operation. Patients who received isoflurane had significantly (P less than 0.01) less emetic sequelae (27%) during the first 2 h in the recovery room compared with patients who received enflurane (45%) or fentanyl (48%). There was no difference between the groups in the overall incidence of emetic sequelae during the time period of 2-24 h post-operatively (isoflurane 65%, enflurane 77% and fentanyl 77%). Significantly (P less than 0.02) more patients had emetic sequelae if they had experienced nausea or had vomited after previous anaesthetics.

Adult

Precurarisation in infants and children less than three years of age.

Sixty patients less than three years of age about to undergo adenoidectomy or endoscopy were divided into three groups of 20 each according to age (0-11 months, 12-23 months, 24-35 months). Before the induction of anaesthesia with thiopentone, either tubocurarine 0.05 mg X kg-1 or normal saline was given at random in a double-blind fashion. Three minutes later, the children received succinylcholine 1.5 or 1.0 mg X kg-1, respectively. Muscle movements were graded according to a four-point scale. Blood was sampled for creatine kinase (CK) activity before anaesthesia and on the following morning. When all age groups were combined, there was a significant reduction of muscle movements in patients who had received tubocurarine pretreatment. Serum CK activity rose significantly when saline pretreatment was used in children over the age of one year but not in the infants, despite the presence of muscle movements following succinylcholine administration.

Child, Preschool

Nitrous oxide does not increase the incidence of nausea and vomiting after isoflurane anesthesia.

A total of 110 patients undergoing elective abdominal hysterectomy were anesthetized in random order with either isoflurane in nitrous oxide and oxygen or isoflurane in air and oxygen. Fentanyl was used as an adjunct to isoflurane in all patients, 0.05 mg every 45 min. No difference was found between the two anesthetic techniques in the incidence of nausea, vomiting, or both during the first 24 hr after operation. The overall incidence was 62 and 67% for air-O2 and N2O-O2 groups, respectively. Patients who had had nausea or vomiting after previous anesthetics had nausea or vomiting significantly more frequently than patients who did not. It is concluded that nitrous oxide does not contribute to the occurrence of nausea or vomiting after isoflurane anesthesia for gynecologic laparotomies.

Adult