2018, Number S1
<< Back Next >>
Rev Mex Anest 2018; 41 (S1)
Modulation of the hypermetabolic state of the badly burned patient
García-Lara MÁ
Language: Spanish
References: 10
Page: 106-108
PDF size: 380.81 Kb.
Text Extraction
No abstract.
REFERENCES
Nielson C, Duethman N, Howard JM, Moncure M, Wood JG. Burns: pathophysiology of systemic complications and current management. J Burn Care Res. 2017;38:e469-e481.
Williams FN, Herdon DN. Metabolic and endocrine considerations after burn injury. Clin Plast Surg. 2017;44:541-553.
Auger C, Samadi O, Jeschke MG. The biochemical alterations underlying post-burn hypermetabolism. Biochim Biophys Acta. 2017;1863:2633-2644.
Hu D, Yu Y, Wang C, Li D, Tai Y, Fang L. microRNA 98 mediated microvascular hyperpermeability during burn shock phase via inhibiting FIH-1. Eur J Med Res. 2015;20:51.
Xiao W, Mindrinos MN, Seok J, Cuschieri J, Cuenca AG, Gao H, et al. A genomic storm in critically injured humans. J Exp Med. 2011;208:2581-2590.
Clark A, Imran J, Madni T, Wolf S. Nutrition and metabolism in burn patients. Burns Trauma. 2017;5:11.
Bittner Ea, Shank E, Woodson L, Martyn JA. Acute and perioperative care of the burn-injured patient. Anesthesiology. 2015;122:448-464.
Nuñez O, Cambiaso-Daniel J, Branski LK, Norbury WB, Herdon DN. Predicting and sepsis in burn patients: perspectives. Ther Clin Risk Manag. 2017;13:1107-1117.
Stanojccic M, Abdullahi A, Rehou S, Parousis A, Jeschke M. Pathophysiological response to burn injury in adults. Ann Surg. 2018;267:576-584.
Flores O, Stockton K, Roberts J, Muller MJ, Paratz JD. The efficacy and safety of adrenergic blockade after burn injury: a systematic review and meta-analysis. J Trauma Acute Care Surg. 2016;80:146-155.