Agriculture Reference
In-Depth Information
Foxcroft, G.R., 1997. Mechanisms mediating nutritional effects on embryonic survival in pigs.
Journal of Reproduction and Fertility Supplement 52: 47-61.
Gaudré, D. and Quiniou, N., 2009. What mineral and vitamin levels to recommend in swine diets?
Revista Brasileira de Zootecnia 38: 190-200.
Geisert, R.D., Ross, J.W., Ashworth, M.D., White, F.J., Johnson, G.A. and Da Silva, U., 2006.
Maternal recognition of pregnancy or endocrine disruptor: the two faces of oestrogen during
establishment of pregnancy in the pig. Society for Reproduction and Fertility 62: 131-146.
Geisert, R.D. and Schmitt, R.A.M., 2002. Early embryonic survival in the pig: can it be improved?
Journal of Animal Science 80: E54-E65.
Gerritsen, R., Soede, N.M., Langendijk, P., Dieleman, S.J., Hazeleger, W., Laurenssen, B.F.A. and
Kemp, B., 2008. Feeding level does not affect progesterone levels in intermittently suckled sows
with lactational ovulation. Animal Reproduction Science 103: 379-384.
Guay, F., Matte, J.J., Girard, C.L., Palin, M.F., Giguère, A. and Laforest, J.P., 2002. Effect of folic
acid and glycine supplementation on embryo development and folate metabolism during early
pregnancy in pigs. Journal of Animal Science 80: 2134-2143.
Guthrie, H.D. and Polge, C. 1976. Control of oestrus and fertility in gilts with accessory lutea by
prostaglandin analogues, ICI 79,939 and ICI 80,996. Journal of Reproduction and Fertility
48: 427-430.
Harper, A.F., Knight, J.W., Kokue, E. and Usry, J.L., 2003. Plasma reduced folates, reproductive
performance, and conceptus development in sows in response to supplementation with
oxidized and reduced sources of folic acid. Journal of Animal Science 81: 735-744.
Hazeleger, W., Smits, C. and Kemp, B., 2007. Influence of nutritional factors on placental growth
and piglet imprinting. In: Wiseman, J., Kemp, B. and Varley, M. (eds.) Paradigms in pig science.
University of Nottingham Press, Nottingham, UK, pp. 309-327.
Hoving, L.L., Soede, N.M., Feitsma, H. and Kemp, B., 2102. Embryo survival, progesterone
profiles and metabolic responses to an increased feeding level during second gestation in
sows. Theriogenology 77: 1557-1569.
Jensen, M.B., Pedersen, L.J., Theil, P.K., Yde, C.C. and Bach Knudsen, K.E., 2012. Feeding
motivation and plasma metabolites in pregnant sows fed diets rich in dietary fiber either once
or twice daily. Journal of Animal Science 90: 1910-1919.
Jindal, R., Cosgrove, J.R. and Foxcroft, G.R., 1997. Progesterone mediates nutritionally induced
effects on embryonic survival in gilts. Journal of Animal Science 75: 1063-1070.
Jindal, R., Cosgrove, J.R., Aherne, F.X. and Foxcroft, G.R., 1996. Effect of nutrition on embryonal
mortality in gilts: association with progesterone. Journal of Animal Science 74: 620-624.
Knudsen, K.E.B., Henry, J. and Canibe, N., 2000. Quantification of the absorption of nutrients
derived from carbohydrate assimilation: model experiment with catheterised pigs fed on
wheat- or oat-based rolls. British Journal of Nutrition 84: 449-458.
Kongsted, A.G., 2004. Reproduction performances and conditions of group-housed non-lactating
sows. The Royal Veterinary and Agricultural University, Frederiksberg, Denmark.
Langendijk, P., Athorn, R.Z. and Stott, P., 2011. Feeding level and dietary fibre content during early
pregnancy in gilts and pregnancy rate and litter size. In: Van Barneveld, R.J. (ed.) Manipulating
pig production. Proceedings of the Australasian Pig Science Association, Adelaide, Australia,
162 pp.
Langendijk, P., van den Brand, H., Gerritsen, R., Quesnel, H., Soede, N.M. and Kemp, B., 2008.
Porcine luteal function in relation to IGF-1 levels following ovulation during lactation or after
weaning. Reproduction in Domestic Animals 43: 131-136.
Search WWH ::




Custom Search