Energy estimation and measurement in critically ill patients.
暂无分享,去创建一个
[1] M. Berger,et al. ESPEN endorsed recommendations: nutritional therapy in major burns. , 2013, Clinical nutrition.
[2] S. Finfer,et al. Early parenteral nutrition in critically ill patients with short-term relative contraindications to early enteral nutrition: a randomized controlled trial. , 2013, JAMA.
[3] D. Frankenfield,et al. Prediction of resting metabolic rate in critically ill patients at the extremes of body mass index. , 2013, JPEN. Journal of parenteral and enteral nutrition.
[4] S. McClave,et al. The use of indirect calorimetry in the intensive care unit , 2013, Current opinion in clinical nutrition and metabolic care.
[5] J. Vincent,et al. When should we add parenteral to enteral nutrition? , 2013, The Lancet.
[6] C. Pichard,et al. Optimisation of energy provision with supplemental parenteral nutrition in critically ill patients: a randomised controlled clinical trial , 2013, The Lancet.
[7] J. Wernerman,et al. Indirect calorimetry in mechanically ventilated patients. A systematic comparison of three instruments. , 2013, Clinical nutrition.
[8] A. Esquinas,et al. Indirect calorimetry during non invasive mechanical ventilation. Is the next step for gas exchange monitoring? , 2013, Journal of Clinical Monitoring and Computing.
[9] D. Frankenfield,et al. Longitudinal prediction of metabolic rate in critically ill patients. , 2012, JPEN. Journal of parenteral and enteral nutrition.
[10] D. Frankenfield,et al. Determining energy needs in critically ill patients: equations or indirect calorimeters , 2012, Current opinion in critical care.
[11] U. Kyle,et al. Is indirect calorimetry a necessity or a luxury in the pediatric intensive care unit? , 2012, JPEN. Journal of parenteral and enteral nutrition.
[12] Albertus Beishuizen,et al. Optimal protein and energy nutrition decreases mortality in mechanically ventilated, critically ill patients: a prospective observational cohort study. , 2012, JPEN. Journal of parenteral and enteral nutrition.
[13] T. Noponen,et al. Validation of indirect calorimetry for measurement of energy expenditure in healthy volunteers undergoing pressure controlled non-invasive ventilation support , 2012, Journal of Clinical Monitoring and Computing.
[14] A. Day,et al. Identifying critically ill patients who benefit the most from nutrition therapy: the development and initial validation of a novel risk assessment tool , 2011, Critical care.
[15] G. Van den Berghe,et al. Early versus Late Parenteral Nutrition in Critically Ill Adults , 2011, The New England journal of medicine.
[16] B. Magnuson,et al. Hypocaloric considerations in patients with potentially hypometabolic disease States. , 2011, Nutrition in clinical practice : official publication of the American Society for Parenteral and Enteral Nutrition.
[17] G. Bernard,et al. Randomized trial of initial trophic versus full-energy enteral nutrition in mechanically ventilated patients with acute respiratory failure , 2011, Critical care medicine.
[18] D. Frankenfield. Validation of an equation for resting metabolic rate in older obese, critically ill patients. , 2011, JPEN. Journal of parenteral and enteral nutrition.
[19] Y. Arabi,et al. Permissive underfeeding and intensive insulin therapy in critically ill patients: a randomized controlled trial. , 2011, The American journal of clinical nutrition.
[20] P. Singer,et al. The tight calorie control study (TICACOS): a prospective, randomized, controlled pilot study of nutritional support in critically ill patients , 2011, Intensive Care Medicine.
[21] P. Singer,et al. Indirect calorimetry measurements in the ventilated critically ill patient: facts and controversies--the heat is on. , 2010, Critical care clinics.
[22] T. Noponen,et al. Predictive equations over-estimate the resting energy expenditure in amyotrophic lateral sclerosis patients who are dependent on invasive ventilation support , 2010, Nutrition & metabolism.
[23] Vincent W Vanek,et al. Guidelines for the Provision and Assessment of Nutrition Support Therapy in the Adult Critically Ill Patient: Society of Critical Care Medicine (SCCM) and American Society for Parenteral and Enteral Nutrition (A.S.P.E.N.). , 2016, JPEN. Journal of parenteral and enteral nutrition.
[24] A. Girbes,et al. Optimal nutrition during the period of mechanical ventilation decreases mortality in critically ill, long-term acute female patients: a prospective observational cohort study , 2009, Critical care.
[25] R. Heuberger,et al. Predictive equations for energy needs for the critically ill. , 2009, Respiratory care.
[26] A. Forbes,et al. ESPEN Guidelines on Parenteral Nutrition: intensive care. , 2006, Clinical nutrition.
[27] Shoaib Alam,et al. Analysis of estimation methods for resting metabolic rate in critically ill adults. , 2009, JPEN. Journal of parenteral and enteral nutrition.
[28] G. O’Keefe,et al. The risk for bloodstream infections is associated with increased parenteral caloric intake in patients receiving parenteral nutrition , 2007, Critical care.
[29] H. Haugen,et al. Indirect calorimetry: a practical guide for clinicians. , 2007, Nutrition in clinical practice : official publication of the American Society for Parenteral and Enteral Nutrition.
[30] N. D. de Roos,et al. 24-Hour Indirect Calorimetry in Mechanically Ventilated Critically Ill Patients. , 2007, Nutrition in clinical practice : official publication of the American Society for Parenteral and Enteral Nutrition.
[31] D. Schoeller. Making indirect calorimetry a gold standard for predicting energy requirements for institutionalized patients. , 2007, Journal of the American Dietetic Association.
[32] R. Reed,et al. Nutritional gain versus financial gain: The role of metabolic carts in the surgical ICU. , 2006, The Journal of trauma.
[33] P. Singer,et al. Comparison of metabolic monitors in critically ill, ventilated patients. , 2006, Nutrition.
[34] C. Pichard,et al. Hospitalized mechanically ventilated patients are at higher risk of enteral underfeeding than non-ventilated patients. , 2006, Clinical nutrition.
[35] C. Compher,et al. Best practice methods to apply to measurement of resting metabolic rate in adults: a systematic review. , 2006, Journal of the American Dietetic Association.
[36] V. G. F. Alves,et al. Indirect calorimetry: methodology, instruments and clinical application , 2006, Current opinion in clinical nutrition and metabolic care.
[37] B. Digiovine,et al. Effects of Early Enteral Feeding on the Outcome of Critically Ill Mechanically Ventilated Medical Patients , 2006 .
[38] Jean-Blaise Wasserfallen,et al. Impact of a computerized information system on quality of nutritional support in the ICU. , 2006, Nutrition.
[39] Jonathan Cohen,et al. Computerized energy balance and complications in critically ill patients: an observational study. , 2006, Clinical nutrition.
[40] James A Levine,et al. Measurement of energy expenditure. , 2005, Public health nutrition.
[41] M. Berger,et al. Negative impact of hypocaloric feeding and energy balance on clinical outcome in ICU patients. , 2005, Clinical nutrition.
[42] D. Heyland,et al. Does enteral nutrition compared to parenteral nutrition result in better outcomes in critically ill adult patients? A systematic review of the literature. , 2004, Nutrition.
[43] Lewis Rubinson,et al. Low caloric intake is associated with nosocomial bloodstream infections in patients in the medical intensive care unit* , 2004, Critical care medicine.
[44] E. Guérot,et al. Assessment of resting energy expenditure in mechanically ventilated patients. , 2003, The American journal of clinical nutrition.
[45] G. Diette,et al. Caloric intake in medical ICU patients: consistency of care with guidelines and relationship to clinical outcomes. , 2003, Chest.
[46] T. Walsh. Recent advances in gas exchange measurement in intensive care patients. , 2003, British journal of anaesthesia.
[47] G. Hill,et al. Energy balance in critical illness , 2003, Proceedings of the Nutrition Society.
[48] P. Singer,et al. Resting energy expenditure in children with cyanotic and noncyanotic congenital heart disease before and after open heart surgery. , 2003, JPEN. Journal of parenteral and enteral nutrition.
[49] S. McClave,et al. Clinical use of the respiratory quotient obtained from indirect calorimetry. , 2003, JPEN. Journal of parenteral and enteral nutrition.
[50] T. Walsh,et al. Comparison between the Datex-Ohmeda M-COVX metabolic monitor and the Deltatrac II in mechanically ventilated patients , 2002, Intensive Care Medicine.
[51] G. Hill,et al. Components of energy expenditure in patients with severe sepsis and major trauma: a basis for clinical care. , 1999, Critical care medicine.
[52] G. Hill,et al. Sequential changes in the metabolic response in severely septic patients during the first 23 days after the onset of peritonitis. , 1998, Annals of surgery.
[53] J. Revelly,et al. Effects of isoenergetic glucose-based or lipid-based parenteral nutrition on glucose metabolism, de novo lipogenesis, and respiratory gas exchanges in critically ill patients. , 1998, Critical care medicine.
[54] M. Ellersieck,et al. Predicting energy needs in ventilator-dependent critically ill patients: effect of adjusting weight for edema or adiposity. , 1997, The American journal of clinical nutrition.
[55] J. Revelly,et al. Energy metabolism in sepsis and injury. , 1997, Nutrition.
[56] N. Smyrnios,et al. Accuracy of 30-minute indirect calorimetry studies in predicting 24-hour energy expenditure in mechanically ventilated, critically ill patients. , 1997, JPEN. Journal of parenteral and enteral nutrition.
[57] F. Cerra,et al. Applied nutrition in ICU patients. A consensus statement of the American College of Chest Physicians. , 1997, Chest.
[58] J. H. Shaw,et al. Total energy expenditure during total parenteral nutrition: ambulatory patients at home versus patients with sepsis in surgical intensive care. , 1995, Surgery.
[59] S. Matthaei,et al. Oxygen consumption and resting metabolic rate in sepsis, sepsis syndrome, and septic shock , 1993, Critical care medicine.
[60] A. Hyman,et al. Caloric requirements and supply in critically ill surgical patients , 1992, Critical care medicine.
[61] M. Léon-Sanz. Perioperative total parenteral nutrition in surgical patients. , 1992, The New England journal of medicine.
[62] P. Singer,et al. A mathematical analysis of indirect calorimetry measurements in acutely ill patients. , 1989, The American journal of clinical nutrition.
[63] J. B. Weir. New methods for calculating metabolic rate with special reference to protein metabolism , 1949, The Journal of physiology.
[64] F. G. Benedict,et al. A Biometric Study of Human Basal Metabolism. , 1918, Proceedings of the National Academy of Sciences of the United States of America.