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Cardiopulmonary effect

Eichacker, P. Q., Waisman, Y Natanson, C., Farese, A., Hoffman, W. D., Banks, S. M., and MacVittie, T. J. (1994) Cardiopulmonary effects of granulocyte colony-stimulating factor in a canine model of bacterial sepsis../. Appl. Physiol. 77,1-8. [Pg.329]

Mutoh et al. (1997) compared the cardiopulmonary effects of sevoflurane with those of halothane, enflurane, and isoflurane, in dogs. [Pg.214]

Cardiopulmonary effects in cats were studied for desflurane by McMurphy and Hodgson (1996), for sevoflurane by Hisaka et al. (1997). [Pg.214]

Antognini Eisele (1993) determined anesthetic potency and cardiopulmonary effects of enfluorane, halothane, and isofluorane in goats. [Pg.214]

Hirano M, Fujigaki T, Shibata O, Sumikawa K (1995) A comparison of coronary hemodynamics during isoflurane and sevoflurane anesthesia in dogs. Anesth Analg 80 651-656 Hisaka Y, Ohe N, Takase K, Ogasawara S (1997) Cardiopulmonary effects of sevoflurane in cats Comparison with isoflurane, halothane, and enflurane. Res Vet Sci 63 205-210... [Pg.215]

McMurphy RM, Hodgson DS (1996) Cardiopulmonary effects of desflurane in cats. Am J Vet Res 57 367-370 Mazzeo AJ, Cheng EY, Bosnjak ZJ et al. (1996) Differential effects of desflurane and halothane on peripheral airway smooth muscle. Br J Anaesth 76 841-846 Mitsuhata H, Saitoh J, Shimizu R et al. (1994) Sevoflurane and isoflurane protect against bronchospasm in dogs. Anesthesiol 81 1230-1234... [Pg.215]

Mutoh T, Nishimura R, Kim HY et al. (1997) Cardiopulmonary effects of sevoflurane, compared with halothane, enflurane, and isoflurane, in dogs. Am J Vet Res 58 885-890 Novahja E, Hogan QH, Kulier AH et al. (1998) Effects of desflurane, sevoflurane and halothane on postinfarction spontaneous dysrhythmias in dogs. Acta Anaesthesiol Scand 42 353-357... [Pg.215]

Tepper, J.S., Wiester, M.J., Costa, D.L., Watkinson, W.P., Weber, M.F. (1987). Cardiopulmonary effects in awake rats four and six months after exposure to methyl isocyanate. Environ. Health Perspect. IT. 95-103. [Pg.311]

In ponies, desflurane (MAC) caused a decrease in arterial blood pressure and systemic vascular resistance while heart rate and cardiac index were not changed significantly (Clarke et al 1996). Increasing the concentration of desflurane to 1.3 times MAC resulted in further depression of the arterial blood pressure and a significant decrease in the cardiac index, attributed to the onset of cardiac depression at higher concentrations (Clarke et al 1996). Desflurane also results in respiratory depression there is a significant increase in PaC02 at MAC (Clarke et al 1996). In other species, the cardiopulmonary effects of desflurane are considered to be approximately equal to those of isoflurane, but a direct comparison of desflurane and other inhalation anesthetics has not yet been carried out in the horse. [Pg.294]

Bettschart-Wolfensberger R, Bowen M I, Freeman S L et al 2001 b Cardiopulmonary effects of prolonged anesthesia via propofol-medetomidine infusion in ponies. American Journal of Veterinary Research 62 142 1435 Bito H, Ikeda K 1995 Degradation products of sevoflurane during low-flow anaesthesia. British Journal of Anaesthesia 74 56-59... [Pg.301]

Clarke K W, Song D Y, Alibhai H I et al 1996 Cardiopulmonary effects of desflurane in ponies, after induction of anaesthesia with xylazine and ketamine. Veterinary Record 139 180-185... [Pg.302]

Cardiopulmonary effects of ephedrine in halothane-anesthetized horses. Journal of Veterinary Pharmacology and Therapeutics 12 389-396 Greene S A, Thurmon J C, Tranquilli W J et al 1986 Cardiopulmonary effects of continuous intravenous infusion of guaifenesin, ketamine, and xylazine in ponies. American Journal of Veterinary Research 47 2364-2367... [Pg.303]

Cardiopulmonary effects of narcotic agonists and a partial agonist in horses. American Journal of Veterinary Research 39 1632-1635... [Pg.306]

Pierson DJ, Hudson LD, Stark K, Hedgecock M. Cardiopulmonary effects of terbutaline and a bronchodilator combination in chronic obstructive pulmonary disease. Chest 1980 77(2) 176-182. [Pg.22]

In addition to showing statistically significant improvement on various parameters (for example, latency of sleep, onset of sleep, or total sleep time in transient insomnia or maintaining sleep and reducing wakefulness in chronic insomnia) the adverse effects caused by hypnotics are also measured. These include effects on residual sedation, rebound insomnia (referring to increase in wakefulness or anxiety), amnesia, and adverse cardiopulmonary effects. [Pg.228]

Faucher M, et al. Cardiopulmonary effects of hpid emulsions in patients with ARDS. Chest 2003 124 285-291. [Pg.2657]

Graff DW, Cascio WE, Rappold A et al (2009) Exposure to concentrated coarse air pollution particles causes mild cardiopulmonary effects in healthy young adults. Environ Health Perspect 117 1089-1094... [Pg.446]

S. Wenger, W. Boardman, D. Govender and C. Foggin, The cardiopulmonary effects of etorphine, azaperone, detomidine, and butorphanol in field-anaesthetized white rhinoceros (Ceratotherium simum), J. Zoo Wildl. Med., 2007, 38, 380-387. [Pg.219]


See other pages where Cardiopulmonary effect is mentioned: [Pg.343]    [Pg.400]    [Pg.421]    [Pg.424]    [Pg.215]    [Pg.216]    [Pg.301]    [Pg.25]    [Pg.562]    [Pg.1190]    [Pg.175]    [Pg.11]    [Pg.1]    [Pg.577]    [Pg.579]    [Pg.581]    [Pg.583]    [Pg.585]    [Pg.587]    [Pg.589]    [Pg.591]    [Pg.593]    [Pg.595]    [Pg.597]    [Pg.599]    [Pg.602]    [Pg.655]    [Pg.657]    [Pg.659]    [Pg.661]    [Pg.663]   
See also in sourсe #XX -- [ Pg.577 , Pg.585 ]




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