22.05.2022 Views

DƯỢC LÍ Goodman & Gilman's The Pharmacological Basis of Therapeutics 12th, 2010

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Mazze RI, Woodruff RE, Heerdt ME. Isoniazid- induced enflurane

defluorination in humans. Anesthesiology, 1982, 57:5–8.

McPherson RW, Briar JE, Traystman RJ. Cerebrovascular

responsiveness to carbon dioxide in dogs with 1.4% and 2.8%

isoflurane. Anesthesiology, 1989, 70:843–850.

Meade MO, Granton JT, Matte- Martyn A, et al. A randomized

trial of inhaled nitric oxide to prevent ischemia- reperfusion

injury after lung transplantation. Am J Respir Crit Care Med,

2003, 167:1483–1489.

Mizobe T, Maghsoudi K, Sitwala K, et al. Antisense technology

reveals the alpha2A adrenoceptor to be the subtype mediating

the hypnotic response to the highly selective agonist,

dexmedetomidine, in the locus coeruleus of the rat. J Clin

Invest, 1996, 98:1076–1080.

Modica PA, Tempelhoff R. Intracranial pressure during induction

of anaesthesia and tracheal intubation with etomidate- induced

EEG burst suppression. Can J Anaesth, 1992, 39:236–241.

Mortola JP. How newborn mammals cope with hypoxia. Respir

Physiol, 1999, 116:95–103.

Mourani PM, Ivy DD, Gao D, Abman SH. Pulmonary vascular

effects of inhaled nitric oxide and oxygen tension in bronchopulmonary

dysplasia. Am J Respir Crit Care Med, 2004,

170:1006–1013.

Muizelaar JP, Marmarou A, Ward JD, et al. Adverse effects of

prolonged hyperventilation in patients with severe head

injury: a randomized clinical trial. J Neurosurg, 1991,

75:731–739.

Munson ES, Larson CP Jr, Babad AA, et al. The effects of

halothane, fluroxene and cyclopropane on ventilation; a comparative

study in man. Anesthesiology, 1966, 27:716–728.

Nadolny EM, Svensson LG. Carbon dioxide field flooding techniques

for open heart surgery: monitoring and minimizing

potential adverse effects. Perfusion, 2000, 15:151–153.

Nelson LE, Guo TZ, Lu J, et al. The sedative component of anesthesia

is mediated by GABA(A) receptors in an endogenous

sleep pathway. Nat Neurosci, 2002, 5:979–984.

Nishina K, Mikawa K, Maekawa N, et al. Clonidine decreases

the dose of thiamylal required to induce anesthesia in children.

Anesth Analg, 1994, 79:766–768.

Nunn JF. Carbon dioxide. In, Nunn’s Applied Respiratory

Physiology. Butterworth-Heineman, Oxford, 2005a.

Nunn JF. Hypoxia. In, Nunn’s Applied Respiratory Physiology.

Butterworth-Heineman, Oxford, 2005b.

Pagel PS, Kampine JP, Schmeling WT, Warltier DC. Ketamine

depresses myocardial contractility as evaluated by the preload

recruitable stroke work relationship in chronically instrumented

dogs with autonomic nervous system blockade.

Anesthesiology, 1992, 76:564–572.

Parviainen I, Kalviainen R, Ruokonen E. Propofol and barbiturates

for the anesthesia of refractory convulsive status epilepticus:

Pros and cons. Neurol Res, 2007, 29:667–671.

Patel AJ, Honore E, Lesage F, et al. Inhalational anesthetics activate

two- pore- domain background K+ channels. Nat Neurosci,

1999, 2:422–426.

Patel P, Sun L. Update on neonatal anesthetic neurotoxicity:

Insight into molecular mechanisms and relevance to humans.

Anesthesiology, 2009, 110:703–708.

Pauca AL, Savage RT, Simpson S, Roy RC. Effect of pethidine,

fentanyl and morphine on post- operative shivering in man.

Acta Anaesthesiol Scand, 1984, 28:138–143.

Pizov R, Brown RH, Weiss YS, et al. Wheezing during induction

of general anesthesia in patients with and without asthma. A randomized,

blinded trial. Anesthesiology, 1995, 82: 1111–1116.

Raines DE, Claycomb RJ, Scheller M, Forman SA.

Nonhalogenated alkane anesthetics fail to potentiate agonist

actions on two ligand- gated ion channels. Anesthesiology,

2001, 95:470–477.

Rampil IJ. Anesthetic potency is not altered after hypothermic

spinal cord transection in rats. Anesthesiology, 1994, 80:

606–610.

Rasmussen LS, Schmehl W, Jakobsson J. Comparison of xenon with

propofol for supplementary general anaesthesia for knee replacement:

a randomized study. Br J Anaesth, 2006, 97:154–159.

Reynolds DS, Rosahl TW, Cirone J, et al. Sedation and anesthesia

mediated by distinct GABA(A) receptor isoforms. J Neurosci,

2003, 23:8608–8617.

Rooke GA, Choi JH, Bishop MJ. The effect of isoflurane,

halothane, sevoflurane, and thiopental/nitrous oxide on respiratory

system resistance after tracheal intubation.

Anesthesiology, 1997, 86:1294–1299.

Rosenberg H, Fletcher JE, Seitman D. Pharmacogenetics. In:

Clinical Anesthesia, Lippincott-Raven, Philadelphia, 1997.

Rudolph U, Antkowiak B. Molecular and neuronal substrates for

general anaesthetics. Nat Rev Neurosci, 2004, 5:709–720.

Sanders RD, Maze M. Alpha2-adrenoceptor agonists. Curr Opin

Invest Drugs, 2007, 8:25–33.

Sawamura S, Kingery WS, Davies MF, et al. Antinociceptive

action of nitrous oxide is mediated by stimulation of noradrenergic

neurons in the brainstem and activation of [alpha]2B

adrenoceptors. J Neurosci, 2000, 20:9242–9251.

Servin F, Cockshott ID, Farinotti R, et al. Pharmacokinetics of

propofol infusions in patients with cirrhosis. Br J Anaesth,

1990, 65:177–183.

Sessler DI. Perioperative heat balance. Anesthesiology, 2000,

92:578–596.

Short TG, Galletly DC, Plummer JL. Hypnotic and anaesthetic

action of thiopentone and midazolam alone and in combination.

Br J Anaesth, 1991, 66:13–19.

Sola A. Oxygen for the preterm newborn: One infant at a time.

Pediatrics, 2008, 121:1257.

Sprung J, Schoenwald PK, Schwartz LB. Cardiovascular collapse

resulting from thiopental- induced histamine release.

Anesthesiology, 1997, 86:1006–1007.

Stevens WC, Cromwell TH, Halsey MJ, et al. The cardiovascular

effects of a new inhalation anesthetic, Forane, in human

volunteers at constant arterial carbon dioxide tension.

Anesthesiology, 1971, 35:8–16.

Study SotNH. Summary of the National Halothane Study.

Possible association between halothane anesthesia and postoperative

hepatic necrosis. JAMA, 1966, 197:775–788.

Stullken EH, Milde JH, Michenfelder JD, et al. The nonlinear

responses of cerebral metabolism to low concentrations of

halothane, enflurane, isoflurane, and thiopental. Anesthesiology,

1977, 46:28–34.

Su PH, Chen JY. Inhaled nitric oxide in the management of

preterm infants with severe respiratory failure. J Perinatol,

2008, 28:112–116.

Sumikawa K, Ishizaka N, Suzaki M. Arrhythmogenic plasma levels

of epinephrine during halothane, enflurane, and pentobarbital

anesthesia in the dog. Anesthesiology, 1983, 58: 322–325.

563

CHAPTER 19

GENERAL ANESTHETICS AND THERAPEUTIC GASES

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!