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PujolA, FusciardiJ, IngrandP, BaudouinD, Le GuenAF, MenuP. Afterdrop after hypothermic cardiopulmonary bypass: the value of tympanic membrane temperature monitoring.J Cardiothorac Vasc Anesth1996; 10: 336–341.Google Scholar
DeakinCD, PetleyGW, SmithD. Pharmacological vasodilation improves efficiency of rewarming from hypothermic cardiopulmonary bypass.Br J Anaesth1998; 81: 147–151.Google Scholar
RajekA, LenhardtR, SesslerDI, et al. Tissue heat content and distribution during and after cardiopulmonary bypass at 31°C and 27°C.Anesthesiology1998; 88: 1511–1518.Google Scholar
TuğrulM, PembeciK, ÇamcıE, ÖzkanT, TelciL. Comparison of the effects of sodium nitroprusside and isoflurane during cardiopulmonary bypass.J Cardiothorac Vasc Anesth1997; 11: 712–717.Google Scholar
RödigG, KeylC, WiesnerG, PhilippA, HobbhahnJ. Effects of sevoflurane and isoflurane on systemic vascular resistance: use of cardiopulmonary bypass as a study model.Br J Anesth1996; 76: 9–12.Google Scholar
RödigG, WildK, BehrR, HobbahnJ. Effects of desflurane and isoflurane on systemic vascular resistance during hypothermic cardiopulmonary bypass.J Cardiothorac Vasc Anesth1997; 11: 54–57.Google Scholar