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[Sufentanyl in balanced anesthesia for neurosurgery. Comparative study with fentanyl] .

BACKGROUND: The aim of this study was to evaluate the effects of sufentanil in comparison with those of fentanyl during balanced anesthesia in patients undergoing neurosurgery. METHODS EXPERIMENTAL DESIGN: prospective randomized study. SETTING: operating room in a neurosurgery University department. PATIENTS: 50 patients, ASA I and II with age ranging from 18 to 77 years were divided in two groups randomly. INTERVENTIONS: 25 patients received sufentanil as single bolus dose of 0.2 microgram/kg i.v. as premedication and supplemental bolus doses of 0.15 microgram/kg during the maintenance of anesthesia while the remainders received fentanyl 2.0 micrograms/kg as premedication and supplemental boluses of 1.5 micrograms/kg. All patients were induced with propofol 2.5 mg/kg, were intubated after cisatracurium 0.15 mg/kg for muscle relaxation, then were ventilated with sevoflurane and O2:N2O (1:1). MEASUREMENTS: heart rate, SAP, DAP and MAP were recorded at different times and ECG, ETCO2 and pulsoximetry were monitored continuously. Furthermore postoperative analgesia by VAS, recovery time and inspiratory concentrations of the volatile anesthetic were evaluated. Statistical analysis was carried out using ANOVA for repeated measures and Bonferroni "t"-test; a value of p < 0.05 was considered to be significant. RESULTS: Significant changes in MAP (at IOT and 1 and 2 min after IOT), in HR (at IOT) and in RPP (at IOT and 1, 2 and 3 min after IOT) were recorded in group F. Recovery time was shorter in group S than in group F and postoperative analgesia was more prolonged in group S. Inspiratory concentrations of volatile agent were lower in patients treated with sufentanil than in those treated with fentanyl. CONCLUSIONS: In patients treated with sufentanil a better cardiocirculatory stability was achieved with lower inspiratory concentrations of volatile agent and a well relaxed brain. Sufentanil can be considered a valid alternative to fentanyl as analgesic agent in balanced anesthesia for neurosurgery.

Adolescent↗

Changes in erythrocyte membrane ATPases and plasma lipid peroxides in upper abdominal surgery under intravenous procaine-balanced anesthesia.

AIM:To observe the changes in erythrocyte membrane ATPases and plasma lipid peroxides (LPO) patients with in abdominal surgery under intravenous procainebalanced anesthesia.METHODS:By determining the ATPase activities of erythrocyte membrane, effects of upper abdominal surgery under intravenous procaine-balanced anesthesia on the function of erythrocytes were observed in 15 patients undergoing cholecystectomy and gastrectomy (5 males and 10 females, aged 45.9 ± 10.20 years and weighed 60.60kg ± 11.93kg). All patients were free from severe renal,hepatic, pulmonary, cardiac, metabolic and endocrinological diseases and acute infection for at least 2 weeks before surgery. Patients receiving any drug known to affect carbohydrate metabolism prior to anesthesia were excluded from the study.RESULTS:Erythrocyte membrane Na(+), K(+)-ATPase, Mg(2+)-ATPase, Ca(2+), Mg(2+)-ATPase activities were not significantly changed 60min-90min after incision as compared with 30min before anesthesia, but were decreased markedly 10min and 24 hours after completion of operation (P < 0.01). Plasma lipid peroxides (LPO) were increased significantly 24 hours after surgery (P < 0.01) following an initially marked but transient reduction. Plasma LPO changes were not correlated with erythrocyte membrane ATPase activities, r =-0.0396, -0.0097 and 0.4383, respectively (P > 0.05).CONCLUSION:Abdominal surgical trauma under intravenous procaine-balanced anesthesia may be associated with the decreased ATPase activities of erythrocyte membrane and increased LPO in plasma.

Journal Article↗

[Effect of balanced anesthesia on lung histamine release in patients operated on for mitral heart defects with varying degrees of pulmonary hypertension].

The histamine concentration was estimated in the mixed venous and arterial blood in 28 patients with mitral defects subjected to closed mitral commissurotomy under balanced anesthesia. The oxygen content was determined simultaneously and the amount of blood shunting in the lungs was calculated by the oxygen method. It was established that the amount of histamine in the mixed venous blood coming to lungs was increased in patients with high degree lung hypertension. The balanced anesthesia itself did not influence the histamine concentration in the blood. The cessation of anesthesia, however, is followed by increased histamine concentration in the blood of patients with high lung hypertension. The process of blood shunting in the lungs is not controlled by histamine.

Anesthesia, Intravenous↗

A dose-response evaluation of pipecuronium bromide in elderly patients under balanced anesthesia.

Pipecuronium bromide is a new steroidal non-depolarizing muscle relaxant currently under investigation. It is similar to pancuronium with respect to the duration of action, but lacking its cardiovascular side effects. We examined the dose-response relation of pipecuronium in 27 patients, ages 66-79 years, utilizing the incremental dose method under balanced anesthesia. The ED50, ED90 and ED95 were 22.42 (5.2) mcg/kg, 31.81 (6.9) mcg/kg and 35.12 (7.8) mcg/kg, respectively (log probit method). Our recovery data also demonstrate that residual neuromuscular blockade due to pipecuronium can easily be antagonized with neostigmine as long as spontaneous recovery of T1- at the time of reversal administration is greater than 13%. The authors conclude that under balanced anesthesia the cumulative dose-response of pipecuronium in the elderly patients is consistent with those previously described for younger population. Therefore, no dose adjustment appears necessary for the elderly. However, as with all medications, careful administration is appropriate.

Aged↗

Cerebral electrical activity as a tool in evaluating anesthetic effect during balanced anesthesia with sevoflurane.

OBJECTIVES: The present study was undertaken to provide basic information about bilateral frontal cerebral electrical activity after induction, before and after skin incision, and at a steady state during sevoflurane anesthesia at the end tidal concentration 1, 1.2, 1.4 and 1.6 MAC and determine the association between the electrical cerebral activity with other clinical end points, i.e. motor responses and post-operative recall. MATERIAL AND METHOD: the Dual Channel Brain Activity, ABM2 (DATEX) was used to continuously monitor frontal EMG and electrical cerebral activities (i.e. frequency and amplitude) of both hemispheres in 20 adult female patients undergoing balanced anesthesia in Maharaj Chiang Mai Hospital. The eligible patients were randomly assigned to receive 1.0 MAC, 1.2MAC, 1.4MAC or 1.6MAC of a mixture of sevoflurane and 66.67% nitrous oxide in oxygen during anesthesia. The anesthesia was induced with 5 mg/kg thiopental and supplemented with 1-1.5 microgram per kilogram of fentanyl. The standard dose of pancuronium or atracurium was given during maintenance. RESULTS: After induction with 5 mg/kg thiopental, the mean (95% confidence interval) of frontal EMG significantly decreased from 2.66 (1.63,4.29) to 1.41 (0.2,1.61). When eyelash reflex was absent, the mean (95%CI) frequency and amplitude of the right frontal EEG was 3.89 (3.29, 4.497) Hz, 39.58 (32.11, 47.05) microvolt and left frontal EEG was 3.84 (3.43, 4.25) Hz, 33.55 (28.59, 38.61) microvolt. The findings were consistent with the raw EEG shown on the monitor, i.e. a progressive decrease in the frequency and an increase in the amplitude. During maintenance with the inhaled anesthetics, there was a statistically significant decrease in frequency of right frontal in those who had received the inhaled anesthetic concentration to reach 1.4 and 1.65 MAC (p < 0.05) (repeated measure ANOVA). At the steady state of end tidal concentration of the sevoflurane there was consistency in decreasing frequencies and increasing amplitudes of both hemispheres of the groups with higher MAC values (p < 0.05) (Table 3). However, the authors failed to demonstrate the relationships between EEG changes and other clinical responses. CONCLUSION: The present study has provided basic information about cerebral electrical activity during the balanced anesthesia with sevoflurane. As anesthesia deepened by increased MAC, the frequency decreased and the amplitude increased.

Adult↗

[Does propofol have advantages over midazolam and isoflurane? Comparative study of 2 total intravenous anesthesia techniques using midazolam and propofol, versus balanced anesthesia with isoflurane].

OBJECTIVES: To compare two techniques for total intravenous anesthesia (TIVA): midazolam-alfentanil-flumazenil and propofol-alfentanil, contrasting them with combined anesthesia (thiopental-isoflurane-alfentanil) and assessing the efficacy of flumazenil in continuous perfusion for preventing resedation in TIVA with midazolam. PATIENTS AND METHODS: The efficacy and clinical tolerance of the 3 anesthetic techniques with propofol, midazolam or isoflurane were studied in 63 patients undergoing elective breast, lumbar or gynecological surgery. Anesthetic induction was achieved with midazolam 0.3 mg/kg-1 (group M), propofol 2.5 mg/kg-1 (group P) or thiopental 3 mg/kg-1 (group I); all patients also received 50 micrograms/kg-1 alfentanil and vecuronium bromide 0.12 mg/kg-1/h-1. Maintenance was achieved with midazolam in perfusion at 0.12 mg/kg-1/h-1 (group M); propofol in perfusion at 7 mg/kg-1/h-1 and a pre-incision dose of 1.5 mg/kg-1 (group P); and isoflurane at 1.15% (group I). The 3 groups also received one pre-incision dose of alfentanil 25 micrograms/kg-1 and post-incision perfusion at 60 micrograms/kg-1/h-1. The infusion of alfentanil was changed by amounts of 20 micrograms/kg-1/h-1 in accordance with the patient's response to surgery. After surgery patients in group M received flumazenil 0.5 mg i.v. over 30 sec and a perfusion of flumazenil 0.5 mg over 60 min. Parameters indicating efficacy were: 1) total dose and timing of alfentanil; 2) number of instances of inadequate anesthesia; 3) peri-operative amnesia; 4) times of awakening and extubation after surgery, and 5) the number of patients in each group who required naloxone. Parameters indicating tolerance were: 1) hemodynamic variables; 2) the number of postoperative desaturations; 3) level of sedation, comprehension and motor coordination and orientation; 4) the "G/g detection" test and the memory recall test; 5) adverse side effects; 6) need for postoperative analgesia, and 7) evaluation of the anesthetic technique. RESULTS: The 3 techniques afforded effective control of hemodynamic response to intubation and surgical incision. Anesthetic maintenance was easy and safe with isoflurane and propofol. Higher doses of alfentanil, however, were needed with midazolam and we found a higher incidence of signs of superficial anesthesia. Reversion of midazolam with flumazenil 0.5 mg i.v. produced earlier awakening, although this was followed later by relapse into hypno-sedation that could not be prevented with a perfusion of flumazenil. Although recovery from anesthesia was slower with propofol than with isoflurane, we observed no differences in level of sedation, motor coordination and postoperative comprehension. Maintenance with isoflurane produced a higher incidence of adverse side effects such as tremors and nausea after surgery. CONCLUSIONS: None of the TIVA techniques proved superior in all the parameters studied during anesthetic maintenance when compared with balanced isoflurane-alfentanil, although the propofol-alfentanil combination was found to be superior to that of midazolam-alfentanil. After anesthesia, however, recovery was better with the association of propofol-alfentanil and adverse side effects were fewer. Flumazenil at the doses used was ineffective for preventing resedation due to midazolam.

Adolescent↗

The effect of isoflurane versus balanced anesthesia on rocuronium's pharmacokinetics and infusion requirement.

STUDY OBJECTIVE: To compare the effects of two anesthetic techniques, balanced and isoflurane anesthesia, on the response to an intubating dose and an infusion of rocuronium, and on rocuronium's pharmacokinetics. DESIGN: Randomized, open-label study. SETTING: A university-affiliated hospital. PATIENTS: Twenty-two healthy adults undergoing elective surgery. INTERVENTIONS: The patients were anesthetized with a balanced technique (nitrous oxide, fentanyl, midazolam) or isoflurane (nitrous oxide, isoflurane 0.5-1.0%). Rocuronium was administered initially as a 500-micrograms/kg bolus, then by infusion to maintain approximately 86-94% depression of twitch tension. Plasma samples to determine rocuronium concentrations were obtained before, during, and after the infusion. Pharmacokinetics were determined using a population-based approach. MEASUREMENTS AND MAIN RESULTS: Onset time and initial recovery after the bolus dose were similar for the two groups. Infusion requirements also were similar. Plasma clearance was greater during isoflurane than during balanced anesthesia (4.48 vs 3.49 ml/kg/min). Distribution clearances and volumes of distribution were similar for the two groups. CONCLUSIONS: The similarity of response to an intubating dose and an infusion of rocuronium suggests that clinicians need not alter the dose or rate of rocuronium administration during isoflurane anesthesia with a of duration less than 1 hour. However, the greater clearance of rocuronium, in light of the similarity of infusion requirements, suggests that isoflurane potentiates rocuronium compared with balanced anesthesia.

Adult↗

Retrospective evaluation of cardiopulmonary and acid-base variables during long-term balanced anesthesia for experimental surgery in dogs.

Cardiopulmonary and acid-base variables recorded during long-term balanced anesthesia lasting between 12.5 and 16.9 h were evaluated retrospectively in 15 healthy foxhounds that underwent experimental bulla osteotomy with implantation of hearing aids. After premedication with propionylpromazine (0.11 +/- 0.02 mg/kg of body weight) and L-methadone (0.71 +/- 0.06 mg/kg) intravenously (i.v.) and induction with pentobarbital sodium (6.02 +/- 0.83 mg/kg i.v.), anesthesia was maintained with halothane (end-tidal concentration; ETHAL: 0.4 to 1.5%) in nitrous oxide (2 L/min) and oxygen (1 L/min). Because of positional changes from sternal to right lateral recumbency after presurgical brain stem electric response audiometry and differences in duration of surgery, data obtained between 4 (baseline) and 14 h after induction of anesthesia were analyzed. Arterial (PaO2) and alveolar (PAO2) O2 tensions, arterial-to-alveolar O2 tension ratio (PaO2/PAO2), and arterial O2 content (CaO2) remained relatively stable throughout anesthesia. Arterial carbon dioxide tension (PaCO2) was significantly increased above baseline (39, 33 to 46 mm Hg [median, range]) between 7 (39.8, 36.5 to 48.9 mm Hg) and 9 (42, 37.5 to 49.5 mm Hg) h after induction. Because changes in PaCO2 were accompanied by significant increases in body temperature from baseline (36.3, 34.6 to 37.4 degrees C) between 8 (37.1, 35 to 38 degrees C) and 11 (37.6, 35.3 to 38.1 degrees C) h after anesthesia induction as well as by slight increases in arterial blood pressure, the PaCO2 increase may have been caused by increase in metabolic CO2 production and enhanced drainage of CO2 from the tissues into systemic circulation. Furthermore, mild metabolic acidosis (pHa: 7.31, 7.26 to 7.38; HCO3-: 18.9, 16.7 to 21.8 mEq/L; base deficit [BD]: -6.3, -8.5 to -3.4 mEq/L) already existed at 4 h after induction and was related in part to tissue hypoperfusion. Small increases in pHa during the course of anesthesia were accompanied by significant increases in HCO3- concentration and significant decreases in BD between 5 and 10 h after induction. Minor circumscribed swelling of the dependent triceps or masseter muscle was noticed on the first postoperative day in two dogs, and marked tissue swelling with hematoma formation at the medial side of one hind limb was noticed in a third dog. All dogs recovered completely and were submitted to follow-up studies. The anesthetic protocol and extent of monitoring used were adequate to provide safe long-term anesthesia for an experimental surgical procedure with a 100% survival rate and uneventful recovery in most of the dogs.

Acid-Base Equilibrium↗

Pharmacokinetics of intravenous morphine in balanced anesthesia: studies in children.

Intravenous morphine in combination with muscle relaxants, nitrous oxide, and oxygen in so-called balanced anesthesia is commonly used in children between the ages of 0 and 5 yr during surgery. We define dosing rules for a loading dose followed by a continuous intravenous infusion of morphine sulfate to achieve a serum morphine concentration of 75 micrograms/L. This concentration is well above the minimum serum morphine concentration of 50 micrograms/L for moderate analgesic effects in adults. It also exceeds the concentration of 65 micrograms/L claimed to provide adequate analgesia in children during surgery. The clearance of morphine in 8 children between 0 and 5 yr of age was 20.5 +/- 2.8 mL/kg/min (means +/- SD). This result is threefold larger than the clearance value obtained after a single intravenous dose and 1.5 times greater than clearance values found after multiple intravenous doses of morphine, previously reported by others in children between the ages of 1 and 15 yr. Having established a dosing regimen that achieves a steady-state serum morphine concentration of approximately 75 micrograms/L, we plan to investigate the relationship between morphine serum concentration and pharmacologic effect. Intraoperatively the action of morphine at its receptor site will be assessed according to a scoring system including EEG changes, heart rate, blood pressure, response to sensory stimuli, and maintenance of vital functions. The effect of intravenous morphine will further be estimated according to the postanesthetic scoring system described in this report. Using intraoperative and postanesthetic scores to evaluate the pharmacodynamics of morphine for anesthesia in relation to morphine serum concentration will lead to a better understanding and improvement in use of intravenous morphine in young children.

Anesthesia, Intravenous↗

[Total intravenous anesthesia using propofol and alfentanil in comparison with balanced anesthesia in neurosurgery].

Anaesthesia for neurosurgical patients should provide haemodynamic stability, reduce cerebral metabolism, preserve cerebral autoregulation, avoid increases of intracranial pressure and guarantee rapid recovery without respiratory depression. A commonly used Balanced Anaesthesia (BA, n = 20) (thiopental and fentanyl bolus induction and maintenance with repetition boluses of fentanyl and droperidol, thiopental infusion, and isoflurane in N2O/O2) was compared to Total Intravenous Anaesthesia (TIVA, n = 20) with propofol and alfentanil infusion. Pancuronium was employed for muscle relaxation in both groups. The TIVA evinced more haemodynamic stability during induction; notably, there was no increase in blood pressure after intubation, as seen in the BA group. Another advantage of TIVA is that it obviates the use of N2O. Quality of recovery after the procedure was determined by standardised psychometric tests. The time span between awakening of patients to orientation and concentration was significantly shorter in the TIVA group compared to the BA group. There was also a smaller deviation of these parameters in the TIVA group indicating a more predictable recovery.

Adult↗