Agriculture Reference
In-Depth Information
Booth, P.J., 1990. Metabolic influences on hypothalamic-pituitary-ovarian function in the pig. In:
Cole, D.J.A., Foxcroft, G.R. and Weir, B.J. (eds.) Control of pig reproduction III. Journal of
Reproduction and Fertility Supplements 40: 89-100.
Booth, P.J., Cosgrove, J.R. and Foxcroft, G.R., 1996. Endocrine and metabolic responses to
realimentation in feed-restricted prepubertal gilts: associations among gonadotropins,
metabolic hormones, glucose, and utero ovarian development. Journal of Animal Science 74:
840-848.
Brüssow, K.P., Schneider, F., Wollenhaupt, K. and Tuchscherer, A., 2011. Endocrine effects of
GnRH agonist application to early pregnant gilts. Journal of Reproduction and Development
57: 242-248.
Caldwell, B.V., Moor, R.M., Wilmut, I., Polge, C., and Rowson, L.E.A. 1969. The relationship
between day of formation and functional lifespan of induced corpora lutea in the pig. Journal
of Reproduction and Fertility 18: 107-113.
Carter, F., Forde, N., Duffy, P., Wade, M., Fair, T., Crowe, M.A., Evans, A.C.O., Kenny, D.A., Roche,
J.F. and Lonergan, P., 2008. Effect of increasing progesterone concentration from day 3 of
pregnancy on subsequent embryo survival and development in beef heifers. Reproduction,
Fertility and Development 20: 368-375.
Chen, T.Y., Stott, P., Athorn, R.Z., Bouwman, E.G. and Langendijk, P., 2012a. Undernutrition
during early follicle development has irreversible effects on ovulation rate and embryos.
Reproduction, Fertility and Development 24: 886-892.
Chen, T.Y., Stott, P., Bouwman, E.G. and Langendijk, P., 2012b. Effects of pre-weaning energy
substitutions on post-weaning follicle development, steroid hormones and subsequent litter
size in primiparous sows. Reproduction in Domestic Animals 48(3): 512-519.
Chen, Z.Y. and Dziuk, P.J., 1993. Influence of initial length of uterus per embryo and gestation
stage on prenatal survival, development, and sex ratio in the pig. Journal of Animal Science
71: 1895-1901.
Clemente, M., De La Fuente, J., Fair, T., Al Naib, A., Gutierrez-Adan, A., Roche, J.F., Rizos, D.
and Lonergan, P, 2009. Progesterone and conceptus elongation in cattle: a direct effect on the
embryo or an indirect effect via the endometrium? Reproduction 138: 507-517.
Condous, P.C., Kirkwood, R.N. and Van Wettere, W.H.E.J., 2013. Post mating but not pre mating
dietary restriction decreases embryo survival of group housed gilts. In: Pluske, J.R. and
Pluske, J.M. (eds.) Manipulating pig production XIV. Australasian Pig Science Association,
Melbourne, Australia, 132 pp.
Dyck, G.W. and Strain, J.H., 1983. Postmating feeding level effects on conception rate and
embryonic survival in gilts. Canadian Journal of Animal Science 63: 579-585.
Dziuk, P.J., 1968. Effect of number of embryos and terine space on embryo survival in the pig.
Journal of Animal Science 27: 673-676.
Easton, B.G., Love, R.J., Evans, G. and Klupiec, C., 1993. A role for LH pulses in the establishment
of pregnancy. In: Batterham, E.S. (ed.) Manipulating pig production. Australasian Pig Science
Association, Canberra, Australia, 246 pp.
Ferguson, E.M., Ashworth, C.J., Edwards, S.A., Hawkins, N., Hepburn, N. and Hunter, M.G., 2003.
Effect of different nutritional regimens before ovulation on plasma concentrations of metabolic
and reproductive hormones and oocyte maturation in gilts. Reproduction 126: 61-71.
Ford, S.P., Vonnahme, K.A. and Wilson, M.E., 2002. Uterine capacity in the pig reflects a
combination of uterine environment and conceptus genotype effects. Journal of Animal
Science 80(1): E66-E73.
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