Articles: anesthetics.
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Randomized Controlled Trial Multicenter Study Comparative Study Clinical Trial
Comparison of renal function following anesthesia with low-flow sevoflurane and isoflurane.
To evaluate postoperative renal function after patients were administered sevoflurane under conditions designed to generate high concentrations of compound A. ⋯ There were no statistically significant differences in the renal effects of sevoflurane or isoflurane in surgical patients undergoing low-flow anesthesia for up to 8 hours. Low-flow sevoflurane anesthesia under clinical conditions expected to produce high levels of compound A appears as safe as low-flow isoflurane anesthesia.
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Arch Pediat Adol Med · Apr 1999
Randomized Controlled Trial Multicenter Study Clinical TrialAnalgesia and sedation in preterm neonates who require ventilatory support: results from the NOPAIN trial. Neonatal Outcome and Prolonged Analgesia in Neonates.
Preterm neonates are exposed to multiple painful procedures after birth and exhibit acute physiological responses to pain. Occurrence of early intraventricular hemorrhage within 24 to 72 hours after birth suggests a role of pain and stress in the multifactorial causation of severe intraventricular hemorrhage and periventricular leukomalacia. We proposed that such neurologic outcomes in preterm neonates who require ventilatory support may be reduced by morphine analgesia or midazolam sedation compared with a placebo. ⋯ This pilot trial suggests that preemptive analgesia given by continuous low-dose morphine infusion may reduce the incidence of poor neurologic outcomes in preterm neonates who require ventilatory support. Limitations in the sample size of this pilot study suggest that these results should be confirmed in a large multicenter randomized trial.
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Randomized Controlled Trial Multicenter Study Comparative Study Clinical Trial
Transient neurological symptoms after spinal anaesthesia with hyperbaric 5% lidocaine or general anaesthesia.
Transient neurotoxicity of concentrated local anaesthetics has been thought to be the main reason for transient neurological symptoms after spinal anaesthesia. Profound musculoligamental relaxation by high doses of local anaesthetics may contribute to the development of postoperative musculoskeletal pain. ⋯ Transient neurological symptoms, consisting of pain in the buttocks or pain radiating symmetrically to the lower extremities, occurred in eight patients (27%) receiving spinal anaesthesia and in one patient (3%) receiving general anaesthesia (P < 0.05). We conclude that a transient neurotoxic effect of hyperbaric lidocaine 50 mg ml-1 is probably the main reason for transient neurological symptoms after spinal anaesthesia but musculoligamental relaxation may contribute to the development of low back or leg pain after both anaesthetic techniques.
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Randomized Controlled Trial Multicenter Study Clinical Trial
Ropivacaine or 2% mepivacaine for lower limb peripheral nerve blocks. Study Group on Orthopedic Anesthesia of the Italian Society of Anesthesia, Analgesia, and Intensive Care.
Intra- and postoperative clinical properties of sciatic-femoral nerve block performed with either ropivacaine at different concentrations or mepivacaine have been evaluated in a multicenter, randomized, blinded study. ⋯ This study suggests that 0.75% ropivacaine is the most suitable choice of local anesthetic for combined sciatic-femoral nerve block, providing an onset similar to mepivacaine and prolonged postoperative analgesia.
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Anesthesia and analgesia · Apr 1999
Multicenter Study Clinical TrialNerve stimulator and multiple injection technique for upper and lower limb blockade: failure rate, patient acceptance, and neurologic complications. Study Group on Regional Anesthesia.
To evaluate the failure rate, patient acceptance, effective volumes of local anesthetic solution, and incidence of neurologic complications after peripheral nerve block performed using the multiple injection technique with a nerve stimulator, we prospectively studied 3996 patients undergoing combined sciatic-femoral nerve block (n = 2175), axillary blocks (n = 1650), and interscalene blocks (n = 171). The success rate and mean injected volumes of local anesthetic were: 93% with 22.6 +/- 4.5 mL in the axillary, 94% with 24.5 +/- 5.4 mL in the interscalene, and 93% with 28.1 +/- 4.4 mL in the sciatic-femoral nerve blocks. Patients receiving combined sciatic-femoral nerve block showed more discomfort during block placement and worse acceptance of the anesthetic procedure than patients receiving brachial plexus anesthesia. During the first month after surgery, 69 patients (1.7%) developed neurologic dysfunction on the operated limb. Complete recovery required 4-12 wk in all patients but one, who required 25 wk. The only variable showing significant association with the development of postoperative neurologic dysfunction was the tourniquet inflation pressure (<400 mm Hg compared with >400 mm Hg, odds ratio 2.9, 95% confidence intervals 1.6-5.4; P < 0.001). We conclude that using the multiple injections technique with a nerve stimulator results in a success rate of >90% with a volume of <30 mL of local anesthetic solution and an incidence of transient neurologic complication of <2%. ⋯ Based on a prospective evaluation of 3996 consecutive peripheral nerve blocks, the multiple injection technique with nerve stimulator allows for up to 94% successful nerve block with <30 mL of local anesthetic solution. Although the data collection regarding neurologic dysfunction was limited, the withdrawal and redirection of the stimulating needle was not associated with an increased incidence of neurologic complications. Sedation/analgesia should be advocated during block placement to improve patient acceptance.