Thomas Aust. J. Dairy Tech vol. 28 (2) (1973) pp. 77-80. |
Tucker XIX International Dairy Conference (1974) IE, pp. 762-763. |
Malhanaki et al. XIX Int'l Dairy Conference (1974), IE pp. 628-629. |
Amer, M. A. et al., (1985) Physical and chemical characterization of butterfat fractions obtained by crystallization from molten fat, AOCS meeting Philadelphia 1551-1557. |
Bruhn, C. M. et al., (1992) Consumer attitudes and market potential for dairy products utilizing fat substitutes. J. of Dairy Sci., 75:2569-2577. |
Davis, J. G. (1965) Cheese. Basic Technology, vol. I, American Elsevier Publishing Company, Inc. |
Deffense, E. (1992) Milk fat fractionation today, AOCS Meeting, Toronto, May 10, 1992. |
Ha and Lindsay (1993) Release of volatile branched chain and other fatty acids from ruminant milk fats by various lipases. J. Dairy Sci. 76:677-690. |
Kaylegian, E. Et al., (1993) Applications of modified milk fat in food products, J. of Dairy Sci., 76:1782-1796. |
Kaylegian, E. et al., (1992) Performance of selected milfat fractions in cold-spreadable butter, J. Dairy Sci., 75:3307-3317. |
Robinson, R. K. (1981) The Microbiology of Milk Products, vol. 2, Chap. 6 in Dairy Microbiology, Applied Science Publishers, N. J. |
Umemoto et al., (1975a) Lipolysis by Lactic acid bacteria recognized through color changes of dye-stained butterfats on double-layered agar plates. Milchwisserschaft 30:591-594. |
Umemoto et al., (1975b) Relation of Cheddar cheese ripening to bacterial lipolysis. Ag. and Bio. Chem. 39:2115-2122. |