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Anesthesia and Analgesia|September 1, 1978
Epinephrine-induced arrhythmias during enflurane anesthesia in man: a nonlinear dose-response relationship and dose-dependent protection from lidocaineR W Horrigan, E I Eger, C WilsonAnesthesia and Analgesia|August 1, 1989
Solubility of I-653, sevoflurane, isoflurane, and halothane in plastics and rubber composing a conventional anesthetic circuitA G Targ, N Yasuda, E I EgerAnesthesia and Analgesia|May 1, 1977
Some characteristics of an exceptionally potent inhaled anesthetic: thiomethoxyfluraneY Tanifuji, E I Eger, R C TerrellAnesthesia and Analgesia|July 14, 1998
Desflurane and the nonimmobilizer 1,2-dichlorohexafluorocyclobutane suppress learning by a mechanism independent of the level of unconditioned stimulationJ M Sonner, J Li, E I EgerAnesthesia and Analgesia|October 1, 1982
Hypoxia may be more important than reductive metabolism in halothane-induced hepatic injuryK Shingu, E I Eger, B H JohnsonAnesthesia and Analgesia|September 1, 1975
Comparative effects of dextroamphetamine and reserpine on halothane and cyclopropane anesthetic requirementsR R Johnston, P F White, E I EgerPharmacoeconomics|August 18, 2000
Clinical and economic factors important to anaesthetic choice for day-case surgeryE I Eger, P F White, M S BogetzAnesthesiology|January 1, 1980
Nitrous oxide intensifies the pulmonary arterial pressure response to venous injection of carbon dioxide in the dogE P Steffey, B H Johnson, E I EgerAnesthesia and Analgesia|January 1, 1977
The effect of spontaneous versus controlled ventilation on the rate of rise of alveolar halothane concentration in dogsR T Gibbons, E P Steffey, E I EgerAnesthesiology|May 1, 1983
Age-dependent alterations in nitrous oxide requirement of miceD D Koblin, F W Lurz, E I EgerPageof 29