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19. Sheiner LB, Beal SL. Some Suggestions for Measuring Predictive Performance. Journal of Pharmacokinetics and Biopharmaceutics. 1981;9:503-12.
20. Henry CJK. Basal metabolic rate studies in humans: measurement and development of new equations. Public Health Nutrition. 2005;8:1133-52.
21. Henry CJ, Dyer S, Ghusain-Choueiri A. New equations to estimate basal metabolic rate in children aged 10-15 years. European Journal of Clinical Nutrition. 1999;53:134-42.
22. Muller MJ, Bosy-Westphal A, Klaus S, Kreymann G, Luhrmann PM, Neuhauser-Berthold M, Noack R, Pirke KM, Platte P, et al. World Health Organization equations have shortcomings for predicting resting energy expenditure in persons from a modern, affluent population: generation of a new reference standard from a retrospective analysis of a German database of resting energy expenditure. American Journal of Clinical Nutrition. 2004;80:1379-90.
23. Schofield WN. Predicting basal metabolic rate, new standards and review of previous work. Human nutrition - Clinical nutrition. 1985;39 Suppl 1:5-41.
24. FAO/WHO/UNU. Energy and protein requirements. Geneva, Switzerland: World Health Organization technical report series. 1985.
25. Marra M, Pasanisi F, Scalfi L, Colicchio P, Chelucci M, Contaldo F. The prediction of basal metabolic rate in young adult, severely obese patients using single-frequency bioimpedance analysis. Acta Diabetologica. 2003;40 Suppl 1:S139-S141.
26. Korth O, Bosy-Westphal A, Zschoche P, Gluer CC, Heller M, Muller MJ. Influence of methods used in body composition analysis on the prediction of resting energy expenditure. European Journal of Clinical Nutrition. 2007;61:582-9.
27. Hayter JE, Henry CJ. A re-examination of basal metabolic rate predictive equations: the importance of geographic origin of subjects in sample selection. European Journal of Clinical Nutrition. 1994;48:702-7.
28. Roza AM, Shizgal HM. The Harris Benedict equation reevaluated: resting energy requirements and the body cell mass. American Journal of Clinical Nutrition. 1984;40:168-82.
29. Harris JA BFG. A biometric study of basal metabolism in man. Washington, DC: Carnegie Institute of Washington. 1919.
30. Lazzer S, Agosti F, Silvestri P, Derumeaux-Burel H, Sartorio A. Prediction of resting energy expenditure in severely obese Italian women. Journal of Endocrinological Investigation. 2007;30:20-7.
31. Lazzer S, Agosti F, Resnik M, Marazzi N, Mornati D, Sartorio A. Prediction of resting energy expenditure in severely obese Italian males. Journal of Endocrinological Investigation. 2007;30:754-61.
32. Livingston EH, Kohlstadt I. Simplified resting metabolic rate-predicting formulas for normal-sized and obese individuals. Obesity Research. 2005;13:1255-62.
33. Mifflin MD, St Jeor ST, Hill LA, Scott BJ, Dherty SA, Koh YO. A new predictive equation for resting energy expenditure in healthy individuals. American Journal of Clinical Nutrition. 1990;51:241-7.
34. Huang KC, Kormas N, Steinbeck K, Loughnan G, Caterson ID. Resting metabolic rate in severely obese diabetic and nondiabetic subjects. Obesity Research. 2004;12:840-5.
35. Bernstein RS, Thornton JC, Yang MU, Wang J, Redmond AM, Pierson RNJ, Pi-Sunyer FX, Van Itallie TB. Prediction of the resting metabolic rate in obese patients. American Journal of Clinical Nutrition. 1983;37:595-602.
36. Johnstone AM, Rance KA, Murison SD, Duncan JS, Speakman JR. Additional anthropometric measures may improve the predictability of basal metabolic rate in adult subjects. European Journal of Clinical Nutrition. 2006;60:1437-44.
37. Luke A, Dugas L, Kramer H. Ethnicity, energy expenditure and obesity: are the observed black/white differences meaningful? Current Opinion in Endocrinology, Diabetes and Obesity. 2007;14:37.
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