Infant milk powder feeds compared on a common basis
Mettler, A.E.
Postgraduate Medical Journal 52(Suppl): 3-20
1976
ISSN/ISBN: 0032-5473 PMID: 1037025 Document Number: 105058
Compositional data are given for 12 different proprietary infant milk foods available in the UK. These data are compared, as near as is practical, using common data sources and manufacturers' recommendations for use. The data presented thus provide a more reliable means of comparison between different products as fed, including human milk, than is presently available via manufacturers' published data on their own products. Comparative nutritional advantages of any of the milks as fed are not discussed.
Document emailed within 1 workday
Related Documents
Li, S.; Miao, H.; Cui, X.; Zhao, Y.; Wu, Y. 2015: Development of gas chromatography-mass spectrometry for determination of fatty acid esters of chloropropanols in milk powder and the pollution level of infant formula Zhonghua Yu Fang Yi Xue Za Zhi 49(6): 554-559Santos, J.S.D.; França, V.R.; Katto, S.; Santana, E.H.W. 2015: Aflatoxin M1 in pasteurized, UHT milk and milk powder commercialized in Londrina, Brazil and estimation of exposure Archivos Latinoamericanos de Nutricion 65(3): 181-185
Bo, H.; Pang, G.; Luo, L.; Cao, Y. 2009: Determination of levamisole residue in milk and milk powder by ultra performance liquid chromatography-tandem mass spectrometry Se Pu 27(2): 149-152
Pokorná, Z.; Strnadová, V.; Rubes, J.; Zudová, Z. 1996: Mutagenicity of feeds and bovine milk in districts with different levels of environmental pollution Veterinarni Medicina 41(11): 351-358
Snodgrass, G.J.; Stimmler, L.; Went, J.; Will, E.J. 1971: The effect of various milk feeds on the neonatal calcium, magnesium, phosphate and protein levels Clinical Science 40(6): 22P
Morita, T.; Hamawaki, M.; Kobayashi, Y.; Tanaka, M.; Konishi, H. 1970: Effects of specially prepared powdered milk in simulation of mother's milk on infant nutrition. Body growth, protein metabolism and kidney solute load in normal infants on demand feeding with experimentally simulated mother's milk Nihon Shonika Gakkai Zasshi. Acta Paediatrica Japonica 74(10): 883-893
Rahul, P.; Hegde, A.M.; Munshi, A.K. 2003: Estimation of the fluoride concentrations in human breast milk, cow's milk and infant formulae Journal of Clinical Pediatric Dentistry 27(3): 257-260
Bergqvist, L.P. 1991: Romania--milk powder, penicillin and books Sygeplejersken 91(26): 20-21
Kapellen, T.M.; Gebauer, C.M.; Brosteanu, O.; Labitzke, B.; Vogtmann, C.; Kiess, W. 2009: Higher rate of cord-related adverse events in neonates with dry umbilical cord care compared to chlorhexidine powder. Results of a randomized controlled study to compare efficacy and safety of chlorhexidine powder versus dry care in umbilical cord care of the newborn Neonatology 96(1): 13-18
Huisman, M.; van Beusekom, C.M.; Lanting, C.I.; Nijeboer, H.J.; Muskiet, F.A.; Boersma, E.R. 1996: Triglycerides, fatty acids, sterols, mono- and disaccharides and sugar alcohols in human milk and current types of infant formula milk European Journal of Clinical Nutrition 50(4): 255-260
Intusoma, U.; Sornsrivichai, V. 2009: Tetramethylenedisulfotetramine contaminated milk powder induced status epilepticus in two siblings and two dogs Journal of the Medical Association of Thailand 92(10): 1393-1395
Szalkowski, C.R. 1973: Drugs in feeds. Determination of sulfaquinoxaline in feeds: collaborative study Journal - Association of Official Analytical Chemists 56(3): 758-761
Jain, S.C. 2003: The infant milk substitutes, feeding bottles and infant foods (regulation of production, supply and distribution) amendment act, 2003: What has changed? Indian Pediatrics 40(8): 747-756
Jain, S.C. 2003: The infant milk substitutes, feeding bottles and infant foods (regulation of production, supply and distribution) amendment act, 2003: What has changed? Indian Pediatrics 40(8): 747-756
Araujo, M.; Ritter, E.D.; Osadca, M. 1971: Drugs in feeds. Semiautomated determination of sulfadimethoxine in feeds Journal - Association of Official Analytical Chemists 54(5): 999-1002
Sun, J.; Xu, D.; Xie, H.; Wang, Y.; Chen, M.; Chang, X.; Pan, Y.; Liu, Y.; Xue, H.; Zhao, H.; Chen, Y.; Xiao, F. 2014: Low fat milk powder containing esterified plant sterols improves the blood lipid profile of adults with hypercholesterolemia Zhonghua Xin Xue Guan Bing Za Zhi 42(7): 588-592
Tanner, J.T.; Barnett, S.A.; Mountford, M.K. 1993: Analysis of milk-based infant formula. Phase IV. Iodide, linoleic acid, and vitamins D and K: U.S. Food and Drug Administration-Infant Formula Council: collaborative study Journal - Association of Official Analytical Chemists 76(5): 1042-1056
Kwok, T.; Woo, J.; Kwan, M. 2001: Does low lactose milk powder improve the nutritional intake and nutritional status of frail older Chinese people living in nursing homes? Journal of Nutrition Health and Aging 5(1): 17-21
Siniavskiĭ, I.A.; Kraĭsman, V.A.; Suleĭmenova, Z.M. 2013: Using of a specialized fermented soy milk product on the basis of soybeans in cardiology practice Voprosy Pitaniia 82(5): 51-57
Chen, L.-H.; Yue, G.-C.; Guan, Y.-M.; Yang, M.; Zhu, W.-F. 2014: Impact of directly compressed auxiliary materials on powder property of fermented cordyceps powder Zhongguo Zhong Yao Za Zhi 39(1): 65-70