Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by Crossref.
Shalabi, Samweul I.
and
Fox, Patrick F.
1982.
Heat stability of milk: influence of modification of lysine and arginine on the heat stability-pH profile.
Journal of Dairy Research,
Vol. 49,
Issue. 4,
p.
607.
Shalabi, Samweul I.
and
Fox, Patrick F.
1982.
Heat stability of milk: synergic action of urea and carbonyl compounds.
Journal of Dairy Research,
Vol. 49,
Issue. 2,
p.
197.
Fox, Patrick F.
and
Mulvihill, Daniel M.
1982.
Milk proteins: molecular, colloidal and functional properties.
Journal of Dairy Research,
Vol. 49,
Issue. 4,
p.
679.
SWEETSUR, A. W. M.
and
MUIR, D. D.
1982.
Manipulation of the heat stability of homogenized concentrated milk.
International Journal of Dairy Technology,
Vol. 35,
Issue. 4,
p.
126.
Muir, D. D.
Banks, Jean M.
Powell, Anne K.
and
Sweetsur, A. W. M.
1983.
Milk Composition—manufacturing properties.
Proceedings of the Nutrition Society,
Vol. 42,
Issue. 3,
p.
385.
Banks, William
Clapperton, John L.
Muir, D. Donald
Powell, Anne K.
and
Sweetsur, A. W. Maurice
1984.
The effect of dietary‐induced changes in milk urea levels on the heat stability of milk.
Journal of the Science of Food and Agriculture,
Vol. 35,
Issue. 2,
p.
165.
Banks, W.
and
Muir, D. D.
1984.
Milk utilization and manipulation of composition in the future.
BSAP Occasional Publication,
Vol. 9,
Issue. ,
p.
17.
Singh, Harjinder
and
Fox, Partick F.
1985.
Heat stability of milk: pH-dependent dissociation of micellar κ-casein on heating milk at ultra high temperatures.
Journal of Dairy Research,
Vol. 52,
Issue. 4,
p.
529.
Muir, D.Donald
1985.
Heat stability of milk and concentrated milk.
International Journal of Biochemistry,
Vol. 17,
Issue. 3,
p.
291.
Dalgleish, Douglas G.
Pouliot, Yves
and
Paquin, Paul
1987.
Studies on the heat stability of milk: II. Association and dissociation of particles and the effect of added urea.
Journal of Dairy Research,
Vol. 54,
Issue. 1,
p.
39.
Tziboula, A.
1997.
Casein diversity in caprine milk and its relation to technological properties: heat stability.
International Journal of Dairy Technology,
Vol. 50,
Issue. 4,
p.
134.
Kelly, A. L.
O’Connell, J. E.
and
Fox, P. F.
2003.
Advanced Dairy Chemistry—1 Proteins.
p.
1027.
O’Connell, J. E.
and
Fox, P. F.
2003.
Advanced Dairy Chemistry—1 Proteins.
p.
879.
Rombouts, Ine
Lagrain, Bert
Delcour, Jan A.
Türe, Hasan
Hedenqvist, Mikael S.
Johansson, Eva
and
Kuktaite, Ramune
2013.
Crosslinks in wheat gluten films with hexagonal close-packed protein structures.
Industrial Crops and Products,
Vol. 51,
Issue. ,
p.
229.
Martins, C.M.M.R.
Arcari, M.A.
Welter, K.C.
Netto, A.S.
Oliveira, C.A.F.
and
Santos, M.V.
2015.
Effect of dietary cation-anion difference on performance of lactating dairy cows and stability of milk proteins.
Journal of Dairy Science,
Vol. 98,
Issue. 4,
p.
2650.
Kelly, Alan L.
and
Fox, Patrick F.
2016.
Advanced Dairy Chemistry.
p.
1.
Amaladhas, P.H.
and
Magdaline Eljeeva Emerald, F.
2017.
Handbook of Drying for Dairy Products.
p.
203.
Tribst, Alline Artigiani Lima
Falcade, Luiza Toledo Piza
Leite Júnior, Bruno Ricardo de Castro
and
de Oliveira, Miguel Meirelles
2020.
Why are most physicochemical parameters not useful in predicting the quality of sheep milk?.
International Journal of Dairy Technology,
Vol. 73,
Issue. 1,
p.
292.
Pinheiro, Jardeson S.
Rocha, Lethiane G.
de Andrade, Dhones R.
Rotta, Polyana P.
Rezende, Jaqueline P.
Pires, Ana C.S.
and
Marcondes, Marcos I.
2022.
Unveiling unstable non-acid incidence in Holstein cows fed with corn silage or sugarcane.
Journal of Dairy Science,
Vol. 105,
Issue. 11,
p.
9226.