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pro vyhledávání: '"Danielle Marder"'
Publikováno v:
Pfl�gers Archiv European Journal of Physiology. 435:402-406
Thermoregulatory defenses are characterized by thresholds, the core temperatures triggering each response. Core body temperature is normally maintained within the interthreshold range, temperatures between the sweating and vasoconstriction thresholds
Autor:
Danielle Marder, Charles A. Lawson, Farzin Tayefeh, Daniel I. Sessler, Takehiko Ikeda, Andrea Kurz
Publikováno v:
Anesthesia & Analgesia. 85:657-662
Thermoregulatory arteriovenous shunt vasoconstriction may facilitate deep-vein thrombosis by producing relative venous stasis and hypoxia. Accordingly, we evaluated the effect of vasomotion on leg blood flow and venous oxygen tension. We studied five
Publikováno v:
Anesthesiology. 86:603-612
Background Recently, liquid crystal skin-surface thermometers have become popular for intraoperative temperature monitoring. Three situations during which cutaneous liquid-crystal thermometry may poorly estimate core temperature were monitored: (1) a
Autor:
Farzin Tayefeh, Andrew R. Bjorksten, Daniel I. Sessler, Danielle Marder, Takehiko Ikeda, Minang Turakhia, Merlin D. Larson, Chiharu Negishi
Publikováno v:
Anesthesiology. 88(4)
Background Thermoregulatory shivering can be characterized by its threshold (triggering core temperature), gain (incremental intensity increase with further core temperature deviation), and maximum intensity. Meperidine (a combined mu- and kappa-agon
Autor:
Olga Plattner, Danielle Marder, Andrea Kurz, Daniel I. Sessler, Takehiko Ikeda, David Clough, Richard Christensen
Publikováno v:
Anesthesiology. 87(5)
Background Patients may require perioperative cooling for a variety of reasons including treatment of a malignant hyperthermia crisis and induction of therapeutic hypothermia for neurosurgery. The authors compared heat transfer and core cooling rates
Autor:
Danielle Marder, Olga Plattner, Andrea Kurz, David Clough, Daniel I. Sessler, Takehiko Ikeda, Richard Christensen
Publikováno v:
Anesthesiology. 87:487A