1.Guideline of nitrous oxide-oxygen inhalation sedation technique in dental outpatient.
Chinese Journal of Stomatology 2022;57(4):319-325
The use of nitrous oxide-oxygen inhalation sedation to relieve anxiety and pain in dental outpatient treatment has been a very mature and safe technique in the world. This technology has been introduced into China for nearly 20 years, and many clinical cases have proved its safety, practicability and effectiveness, which can meet the clinical needs of patients. To further standardize and popularize this technique, the Society of Sedation and Analgesia, Chinese Stomatological Association formed the recommended application guidelines after many discussions and revisions on the basis of widely soliciting opinions and referring to relevant literatures. It covers indications, contraindications, standardized operation procedures, occupational protection, identification and treatment of adverse reactions, training and other aspects. This guideline can be used as a reference for the use of nitrous oxide-oxygen inhalation sedation techniques in the outpatient setting of dentistry.
Anesthesia, Dental
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Anesthetics, Inhalation/adverse effects*
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Conscious Sedation/methods*
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Dental Anxiety/prevention & control*
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Humans
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Nitrous Oxide/adverse effects*
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Outpatients
;
Oxygen
2.Research Progress of Pharmacological Intervention of Sevoflurane-induced Nerve Injury in the Developing Brain.
Acta Academiae Medicinae Sinicae 2021;43(3):462-468
Sevoflurane is one of the most commonly used inhaled anesthetics in obstetric and pediatric general anesthesia.According to related literature,this article reviews major possible mechanisms including myelin formation damage,nerve inflammation,cell apoptosis,oxidative stress,inhibition of histone acetylation,synapsis and receptor changes of sevoflurane-induced neurotoxicity in animal experiments.Furthermore,we summarize the neuroprotection effects and functioning mechanisms of anti-anemia medicine,plant-based drugs,alpha 2 adrenoceptor agonists and others,aiming to provide a basis for the brain protection of fetuses and infants during the perioperative period.
Anesthetics, Inhalation/adverse effects*
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Animals
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Apoptosis
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Brain
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Child
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Female
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Humans
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Methyl Ethers
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Neuroprotective Agents/therapeutic use*
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Oxidative Stress
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Pregnancy
;
Sevoflurane
3.Sequential method for determining the maximum dose of mivacurium continuously infused for intraoperative neuromonitoring in thyroid surgery.
Yongjie CHEN ; Lianjun HUANG ; Yang LI ; Li TONG ; Xiaochen WANG ; Keshi HU ; Zeguo FENG
Journal of Southern Medical University 2018;38(12):1472-1475
OBJECTIVE:
To determine the maximum dose of continuously infused mivacurium for intraoperative neuromonitoring and observe its adverse effects in thyroid surgery.
METHODS:
Twenty-eight patients undergoing thyroid surgery with intraoperative neuromonitoring received continuous infusion of mivacurium at the initial rate of 5.43 μg?kg?min, and the infusion rate for the next patient was adjusted based on the response of the previous patient according to the results of neurological monitoring. The depth of anesthesia was maintained with sevoflurane and remifentanil during the surgery. The LD50 and 95% of mivacurium were calculated using Brownlee's up-and-down sequential method.
RESULTS:
The LD50 of continuously infused mivacurium was 8.94 μg?kg?min (95% : 8.89- 8.99 μg?kg?min) during thyroid surgery, which did not affect neurological function monitoring. Transient chest skin redness occurred after induction in 9 patients (32.1%). None of the patients experienced intubation difficulties or showed intraoperative body motions during the surgery.
CONCLUSIONS
In patients undergoing thyroid surgery under anesthesia maintained by inhalation and intravenous infusion, the LD50 of mivacurium was 8.94 μg?kg?min (95% : 8.89-8.99 μg?kg?min) for continuous infusion, which does not cause serious adverse effects during the operation.
Anesthesia
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Anesthetics, Inhalation
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Anesthetics, Intravenous
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Humans
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Intraoperative Neurophysiological Monitoring
;
methods
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Lethal Dose 50
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Mivacurium
;
administration & dosage
;
adverse effects
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Neuromuscular Nondepolarizing Agents
;
administration & dosage
;
adverse effects
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Remifentanil
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Sevoflurane
;
Thyroid Gland
;
surgery
4.Ginsenoside Rb1 Attenuates Isoflurane/surgery-induced Cognitive Dysfunction via Inhibiting Neuroinflammation and Oxidative Stress.
Hui Hui MIAO ; Ye ZHANG ; Guan Nan DING ; Fang Xiao HONG ; Peng DONG ; Ming TIAN
Biomedical and Environmental Sciences 2017;30(5):363-372
OBJECTIVEAnesthetic isoflurane plus surgery has been reported to induce cognitive impairment. The underlying mechanism and targeted intervention remain largely to be determined. Ginsenoside Rb1 was reported to be neuroprotective. We therefore set out to determine whether ginsenoside Rb1 can attenuate isoflurane/surgery-induced cognitive dysfunction via inhibiting neuroinflammation and oxidative stress.
METHODSFive-months-old C57BL/6J female mice were treated with 1.4% isoflurane plus abdominal surgery for two hours. Sixty mg/kg ginsenoside Rb1 were given intraperitoneally from 7 days before surgery. Cognition of the mice were assessed by Barnes Maze. Levels of postsynaptic density-95 and synaptophysin in mice hippocampus were measured by Western blot. Levels of reactive oxygen species, tumor necrosis factor-α and interleukin-6 in mice hippocampus were measured by ELISA.
RESULTSHere we show for the first time that the ginsenoside Rb1 treatment attenuated the isoflurane/surgery-induced cognitive impairment. Moreover, ginsenoside Rb1 attenuated the isoflurane/surgery-induced synapse dysfunction. Finally, ginsenoside Rb1 mitigated the isoflurane/surgery-induced elevation levels of reactive oxygen species, tumor necrosis factor-α and interleukin-6 in the mice hippocampus.
CONCLUSIONThese results suggest that ginsenoside Rb1 may attenuate the isoflurane/surgery-induced cognitive impairment by inhibiting neuroinflammation and oxidative stress pending future studies.
Anesthetics, Inhalation ; adverse effects ; Animals ; Cognition ; Cognitive Dysfunction ; etiology ; prevention & control ; Female ; Ginsenosides ; pharmacology ; Hippocampus ; drug effects ; Inflammation ; etiology ; prevention & control ; Isoflurane ; adverse effects ; Medicine, Chinese Traditional ; Mice ; Mice, Inbred C57BL ; Oxidative Stress ; Postoperative Complications ; etiology ; prevention & control ; Random Allocation ; Surgical Procedures, Operative ; adverse effects ; Synapses ; metabolism
5.Effect of Propofol and Desflurane on Immune Cell Populations in Breast Cancer Patients: A Randomized Trial.
Jae Hee WOO ; Hee Jung BAIK ; Chi Hyo KIM ; Rack Kyung CHUNG ; Dong Yeon KIM ; Guie Yong LEE ; Eun Hee CHUN
Journal of Korean Medical Science 2015;30(10):1503-1508
Several factors can affect the perioperative immune function. We evaluated the effect of propofol and desflurane anesthesia on the surgery-induced immune perturbation in patients undergoing breast cancer surgery. The patients were randomly assigned to receive propofol (n = 20) or desflurane (n = 20) anesthesia. The total and differential white blood cell counts were determined with lymphocyte subpopulations before and 1 hr after anesthesia induction and at 24 hr postoperatively. Plasma concentrations of interleukin (IL)-2 and IL-4 were also measured. Both propofol and desflurane anesthesia preserved the IL-2/IL-4 and CD4+/CD8+ T cell ratio. Leukocytes were lower in the propofol group than in the desflurane group at 1 hr after induction (median [quartiles], 4.98 [3.87-6.31] vs. 5.84 [5.18-7.94] 10(3)/microL) and 24 hr postoperatively (6.92 [5.54-6.86] vs. 7.62 [6.22-9.21] 10(3)/microL). NK cells significantly decreased 1 hr after induction in the propofol group (0.41 [0.34-0.53] to 0.25 [0.21-0.33] 10(3)/microL), but not in the desflurane group (0.33 [0.29-0.48] to 0.38 [0.30-0.56] 10(3)/microL). Our findings indicate that both propofol and desflurane anesthesia for breast cancer surgery induce a favorable immune response in terms of preservation of IL-2/IL-4 and CD4+/CD8+ T cell ratio in the perioperative period. With respect to leukocytes and NK cells, desflurane anesthesia is associated with less adverse immune responses than propofol anesthesia during surgery for breast cancer. (Clinical trial registration at https://cris.nih.go.kr/cris number: KCT0000939)
Adolescent
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Adult
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Aged
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Aged, 80 and over
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Anesthesia/adverse effects
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Anesthetics, Inhalation/*therapeutic use
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Anesthetics, Intravenous/*therapeutic use
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Breast Neoplasms/immunology/*surgery
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*CD4-CD8 Ratio
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Female
;
Humans
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Interleukin-2/blood
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Interleukin-4/blood
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Isoflurane/*analogs & derivatives/therapeutic use
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Middle Aged
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Postoperative Period
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Propofol/*therapeutic use
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Young Adult
6.Kidney Function in Living Donors Undergoing Nephrectomy by Sevoflurane or Desflurane Anesthesia.
Min Soo KIM ; Jeong Rim LEE ; Myoung Soo KIM ; Sung Yeon HAM ; Seung Ho CHOI
Yonsei Medical Journal 2013;54(5):1266-1272
PURPOSE: Although there is no clinical evidence of nephrotoxicity with the volatile anesthetics currently used in general anesthesia, a better agent should be needed in terms of preserving postoperative renal function in living kidney donors who have only single remaining kidney. The purpose of the current retrospective, single-center study was to evaluate and compare renal function of living kidney donors after nephrectomy under either sevoflurane or desflurane anesthesia. MATERIALS AND METHODS: From January 2006 through December 2011, a total of 228 donors undergoing video assisted minilaparotomy surgery nephrectomy for kidney donation were retrospectively enrolled in the current study. The donors were categorized into a sevoflurane group or desflurane group based on the type of volatile anesthetic used. We collected laboratory data from the patients preoperatively, immediately after the operation, on the first postoperative day and on the third postoperative day. We also compared renal function of the kidney donors after donor nephrectomy by comparing creatinine level and estimated glomerular filtration rate (eGFR). RESULTS: The decrease in renal function after surgery in both groups was the most prominent on the first postoperative day. There were no significant differences between the two groups in postoperative changes of creatinine or eGFR. CONCLUSION: Sevoflurane and desflurane can be used safely as volatile anesthetics in donors undergoing nephrectomy.
Adult
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Anesthesia, General/methods
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Anesthetics, Inhalation/adverse effects/*therapeutic use
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Female
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Humans
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Isoflurane/adverse effects/*analogs & derivatives/therapeutic use
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Kidney/*physiology
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Kidney Function Tests
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*Kidney Transplantation
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*Living Donors
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Male
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Methyl Ethers/adverse effects/*therapeutic use
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*Nephrectomy
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Postoperative Complications
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Retrospective Studies
7.Effect-Site Concentration of Remifentanil for Minimizing Cardiovascular Changes by Inhalation of Desflurane.
Hee Jin JEONG ; Hee Jung BAIK ; Jong Hak KIM ; Youn Jin KIM ; Jae Hyon BAHK
Yonsei Medical Journal 2013;54(3):739-746
PURPOSE: This study aims to investigate the most appropriate effect-site concentration of remifentanil to minimize cardiovascular changes during inhalation of high concentration desflurane. MATERIALS AND METHODS: Sixty-nine American Society of Anesthesiologists physical status class I patients aged 20-65 years were randomly allocated into one of three groups. Anesthesia was induced with etomidate and rocuronium. Remifentanil was infused at effect-site concentrations of 2, 4 and 6 ng/mL in groups R2, R4 and R6, respectively. After target concentrations of remifentanil were reached, desflurane was inhaled to maintain the end-tidal concentration of 1.7 minimum alveolar concentrations for 5 minutes (over-pressure paradigm). The systolic blood pressure (SBP), diastolic blood pressure (DBP), mean arterial pressure (MAP), heart rate (HR) and end-tidal concentration of desflurane were measured for 5 minutes. RESULTS: The end-tidal concentration of desflurane increased similarly in all groups. The SBP, DBP, MAP and HR within group R4 were not significantly different as compared with baseline values. However, measured parameters within group R2 increased significantly 1-3 minutes after desflurane inhalation. The MAP within group R6 decreased significantly at 1, 2, 4, and 5 minutes (p<0.05). There were significant differences in SBP, DBP, MAP and HR among the three groups 1-3 minutes after inhalation (p<0.05). The incidence of side effects such as hyper- or hypo-tension, and tachy- or brady-cardia in group R4 was 4.8% compared with 21.8% in group R2 and 15.0% in group R6. CONCLUSION: The most appropriate effect-site concentration of remifentanil for blunting hemodynamic responses by inhalation of high concentration desflurane is 4 ng/mL.
Adult
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Aged
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Androstanols/adverse effects/pharmacology
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Anesthetics/adverse effects/pharmacology
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Anesthetics, Inhalation/adverse effects/*pharmacology
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Blood Pressure/drug effects
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Etomidate/adverse effects/pharmacology
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Female
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Heart/*drug effects
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Heart Rate/drug effects
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Humans
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Isoflurane/adverse effects/*analogs & derivatives/pharmacology
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Male
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Middle Aged
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Piperidines/adverse effects/*therapeutic use
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Protective Agents/adverse effects/*therapeutic use
8.The Effects of a Single Bolus of Remifentanil on Corrected QT Interval Change during Sevoflurane Induction.
Yonsei Medical Journal 2011;52(2):333-338
PURPOSE: Opioids may affect changes in the corrected QT interval (QTc) during anesthetic induction. This study examine whether a single bolus of remifentanil would prolong QTc after laryngeal mask airway (LMA) insertion during sevoflurane induction. MATERIALS AND METHODS: Forty women of American Society of Anesthesiologists physical status 1 (ASA PS1) undergoing gynecological surgery were studied. All patients were induced using three vital capacity inhalation inductions with 5% sevoflurane. Two minutes after induction, the inspiratory concentration of sevoflurane was reduced to 2%. Using double-blinded randomization, patients were allocated into one of two groups, receiving either saline (placebo group, n = 20) or 0.25 microg.kg-1 remifentanil (remifentanil group, n = 20) over a period of thirty seconds. Sixty seconds later, LMA insertion was performed. Recordings were taken with a 12-lead electrocardiogram at baseline, 2 min after induction and 1 and 3 min after LMA insertion. QTc was calculated by Bazett's formula. The mean arterial pressure (MAP) and heart rate (HR) were also measured at each time point. RESULTS: The QTc interval was significantly prolonged in the placebo group as compared to the remifentanil group at 1 min after LMA insertion (467.8 +/- 16.5 vs. 442.7 +/- 21.3 ms, p < 0.001). However, there was no significant difference in QTc at 3 min after LMA insertion between the two groups. MAP and HR were significantly higher in the placebo group (p < 0.001). CONCLUSION: A single bolus of remifentanil is safe method to attenuate prolonged QTc associated with insertion of LMA.
Adult
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Anesthetics, Inhalation/adverse effects/*pharmacology
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Anesthetics, Intravenous/administration & dosage/*pharmacology
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Electrocardiography/drug effects
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Female
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Gynecologic Surgical Procedures/adverse effects
;
Heart Rate/*drug effects
;
Humans
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Methyl Ethers/adverse effects/*pharmacology
;
Middle Aged
;
Piperidines/*pharmacology
9.Effect of propofol and isoflurane on surgical stress response and postoperative cognitive function in elderly patients.
Journal of Southern Medical University 2009;29(6):1247-1248
OBJECTIVETo investigate the effect of propofol and isoflurane on surgical stress response and postoperative cognitive function in elderly patients.
METHODSSixty elderly patients scheduled for elective upper abdominal surgery with general anesthesia were randomized equally into propofol group and isoflurane group. The surgical stress response, postoperative Mini-mental State Examination (MMSE) and the rate of postoperative cognitive dysfunction (POCD) were compared between the two groups.
RESULTSThe surgical stress response in propofol group was relatively stable. Compared with isoflurane group, the patients in propofol group showed significantly faster recovery of the MMSE scores with also lower rate of POCD.
CONCLUSIONCompared with isoflurane, propofol intravenous anesthesia is associated with rapid recovery of the cognitive function, stable surgical stress response and reduced adverse effects in elderly patients.
Abdomen ; surgery ; Aged ; Aged, 80 and over ; Anesthesia Recovery Period ; Anesthetics, Inhalation ; adverse effects ; Anesthetics, Intravenous ; adverse effects ; Cognition ; drug effects ; Cognition Disorders ; chemically induced ; Female ; Humans ; Isoflurane ; adverse effects ; Male ; Middle Aged ; Postoperative Complications ; etiology ; Propofol ; adverse effects ; Stress, Physiological
10.Inductions and intubating conditions with sevoflurane and different doses of remifentanil without muscle relaxant in children.
Ling-Xin WEI ; Xiao-Ming DENG ; Ju-Hui LIU ; Mao-Ping LUO ; Shi-Yi TONG ; Yan-Ming ZHANG ; Xu LIAO ; Kun-Lin XU
Acta Academiae Medicinae Sinicae 2008;30(6):723-727
OBJECTIVETo observe the clinical effectiveness of inductions and tracheal intubating conditions with 3% sevoflurane and different doses of remifentanil without muscle relaxant in children.
METHODSTotally 120 peadiatric patients (aged 4-10 years, American Society of Anesthesiologists grade I for inhalational induction) were randomly allocated into group I (remifentanil 1 microg/kg), group II (remifentanil 2 microg/kg), group III (remifentanil 3 microg/kg), and control group (vecuronium bromide 0.1 mg/kg). After inhalational induction with 3% sevoflurane and 60% nitrous oxide in 40% oxygen for 2 minutes, remifentanil 1 microg/kg, 2 microg/ kg, and 3 microg/kg were intravenously injected over 1 minute into patients in group I , group II, and group III, respectively. After remifentanil administration and manual ventilation for 1 minute, the trachea was intubated. In the control group, 2 minutes after intravenous administration of vecuronium bromide 0.1 mg/kg, tracheal intubation was attempted. Agitation, intubating satisfactoriness, and the circulation changes after tracheal intubation and anesthesia induction were observed.
RESULTSIn these four groups, agitation occurred in 37.5% of patients during sevoflurane induction. Satisfactory intubation rate was 70.0% in group I, 86.7% in group II, 90.0% in group III, and 93.3% in the control group. Compared with the control group, the impact of tracheal intubation on the circulatory system was smaller in group I , II , and III.
CONCLUSIONSInduction with 3% sevoflurane combined with remifentanil can be smoothly performed, followed by the successful tracheal intubation. The intubating conditions are more satisfactory with 3% sevoflurane combined with remifentanil 2 microg/kg or 3 microg/kg.
Anesthesia, Inhalation ; Anesthetics, Inhalation ; administration & dosage ; Child ; Child, Preschool ; Dose-Response Relationship, Drug ; Female ; Humans ; Intubation, Intratracheal ; adverse effects ; Male ; Methyl Ethers ; administration & dosage ; Piperidines ; administration & dosage

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