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Анестезия и педиатрия - Джордж А.Г.

Джордж А.Г. Анестезия и педиатрия — М.: Медицина, 2003. — 1192 c.
ISBN 5-225-03821-2
Скачать (прямая ссылка): anesteziyavpedeatrii2003.djvu
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190. Fletcher JE, Rosenberg H: in vitro interaction between halothane and succinylcholine in human skeletal muscle: implications for malignant hyperthermia and masseter muscle rigidity. Anesthesiology 63:190, 1985
191. Ellis FR, Halsall PJ, Hopkins PM: Is the "К-type" caf> feine-halothane responder susceptible to malignant hyperthermia? Br J Anaesth 69:468, 1992
192. Berkowitz A, Rosenbeig H: Femoral block with mepi-vacaine for muscle biopsy in malignant hyperthermia patients. Anesthesiology 62:651, 1985
193. Allen G, Rosenberg H, Fletcher JE: Safety of general anesthesia in patients previously tested negative for malignant hyperthermia susceptibility. Anesthesiology 72:619,
1990
194. Wood DS: Human skeletal muscle: analysis of Ca2* regulation in skinned fibers using caffeine. Exp Neurol 58:218, 1978
195. Britt BA, Frodis W, Scott E et al: Comparison of the caffeine skinned fibre tension (CSFT) test with the caffeine-halothane contracture (CHC) test in the diagnosis of malignant hyperthermia. Can Anaesth Soc J 29:550, 1982
1%. Ording H, Glahn K. Gardi T, et al: 4-Chloro-m-cresol test — a possible supplementary test for diagnosis of malignant hyperthermia susceptibility (see comments). Acta Anaesthesiol Scand 41:967, 1977
Нарушения температуры 105
197. Mabucht К, 5r6ter FA: Use of cryostat secretions for measurement of CaJ* uptake by sarcoplasmic reticulum. Anal Biochem 86:733, 1978
198. Ohnishi ST, Waring AJ, Fang S-R et al: Abnormal membrane properties of the sarcoplasmic reticulum of pigs susceptible to malignant hyperthermia: modes of action of halothane, caffeine, dantrolene, and two other drugs. Arch Biochem Biophys 247:294, 1986
199. Olgin J, Rosenberg H, Allen G et al: A blinded comparison of non invasive, in vivo phosphorus nuclear magnetic resonance spectroscopy and the in vitro halothane/caffeine contracture test in the evaluation of malignant hyperthermia susceptibility. Anesth Analg 72:36, 1991
200. Olgin J, Argov Z, Rosenberg H. Tuchler M, Chance B: Non* invasive evaluation of malignant hyperthermia susceptibility with phosphorus nuclear magnetic resonance spectroscopy. Anesthesiology 68:507, 1988
201. Dominguez EA, Bar-Seta A, Musher DM: Adoption of thermometry into clinical practice in the United States. Rev Infect Dis 9:1193, 1987
202. Atkins E: Fever: the old and the new. J Infect Dis 149:339, 1984
203. Ikeda T, Sessler Dl, Marder D. Xiong J: The influence of thermoregulatory vasomotion and ambient temperature variation on the accuracy of core-temperature estimates by cutaneous liquid-crystal thermometers. Anesthesiology 86:603. 1997
204. laizzo P, Zink R, Kehler C, et al: Skin and central temperature during malignant hyperthermia in swine (abstract). Anesthesiology 77:A569, 1992
205. Мита BK, Treloar DL, Wurmlinger K, et al: Comparison of rectal, axillary, and tympanic membrane temperatures in infants and young children. Ann Emerg Med 20:41, 1991
206. Yaron M, Lowenstein SK, Koziol-McLain J: Measuring the accuracy of the infrared tympanic thermometer: correlation does not signify agreement. J Emerg Med 13:617, 1995
207. Imamura M, Matsukawa T, Ozaki M, et al: The accuracy and precision of four infrared aural canal thermometers during cardiac surgery. Acta Anaesthesiol Scand 42:1222, 1998
208. Colin J, Timbal J, Houdas Y et al: Computation of mean body temperature from rectal and skin temperatures. J Ap-pl Physiol 31:484, 1971
209. Webb GE: Comparison of esophageal and tympanic temperature monitoring during cardiopulmonary bypass. Analg Anesth 52:729, 1973
210. Stone JG, Yound WL, Smith CR et al: Do temperature recorded at standard monitoring sites reflect brain temperature during deep hypothermia? Anesthesiology 75:A483,
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211. Cork RC, Vaughan RW, Humphrey LS: Precision and accuracy of intraoperative temperature monitoring. Anesth Analg 62:211, 1983
212. Glosten B, Sessler Dl, Faure EAM, el al: Central temperature changes are not perceived during epidural anesthesia. Anesthesiology 77:10, 1992
213. Bissonnette B, Sessler Dl, LaFlamme P: Intraoperative temperature monitoring sites in infants and children and the effect of inspired gas warming on esophegeal temperature. Anesth Analg 69:192, 1989
214. Wyss CR, Brengelmann GL, Johnson JM et al: Altered control of skin blood flow at high skin and core temperatures. J Appl Physiol 38:839, 1975
215. Benziager TH, Pratt AW, KitzingerC: The thermostatic control of human metabolic heat production. Proc Natl Aced Sci USA 47:730, 1961
216. Rubinstein EH, Sessler Dl: Skin-surface temperature gradients correlate with fingertip blood flow in humans. Anesthesiology 73:541, 1990
217. Ramanathan NL: A new weighting system for mean stir-
106 Анестезии н педиатрии
lace іс пірс ratine of die human body. J Appl Physiol 19:531. 1964
21 S. Shanks CA: Menu skin temperature during anaesthesia: an assessment of formulae in ihc supine surgical patient. Br J Anaesih 47:871. 1975
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