Searchable, peer-reviewed, open-access proceedings from bioscience and biomedical conferences

bp0019cpr22 | Managing for Litter Survival | CPR2013

Prenatal stress in pigs: impact on growth, behaviour, neuroendocrine and immune functions in the offspring

Otten W. , Kanitz E. , Tuchscherer M.

Studies in different animal models and humans give evidence that stress experienced by pregnant mothers affects foetal development and has long-term consequences on many physiological systems and behaviour in the offspring, thus facilitating the risk for disorders later in life. In farm animals, housing conditions or inadequate management practices during gestation may be potential stressors for the mother, which could affect growth, vitality, health and welfare of the d...

bp0004rdr4 | Follicular Development | REDR1998

Role of growth hormone in development and maintenance of follicles and corpora lutea

Lucy MC , Bilby CR , Kirby CJ , Yuan W , Boyd CK

Growth hormone (GH) is a pituitary hormone that affects animal growth, metabolism, lactation, and reproduction. Many of the effects of GH are mediated by insulin-like growth factor I (IGF-I) which is synthesized in liver and ovary in response to GH. Insulin-like growth factor I synergizes with gonadotrophins (LH and FSH) to stimulate growth and differentiation of ovarian cells. There are species differences in the effects of GH in reproductive biology. In most species, ovarian...

bp0014cpr12 | Conceptus-Uterine Interactions in Pigs | CPR1993

Embryo–uterineinteractions in pigs during week 2 of pregnancy

Roberts R. M. , Xiel S. , Trout W. E. ,

The second week of pregnancy is a particularly critical period for embryonic survival in pigs. Within that time, conceptus oestrogen synthesis is initiated, spacing and final placement of conceptuses is completed, and the signal for extending the functional lifespan of the corpora lutea is received by the mother. There is also a marked increase in blood flow to the uterus and the uterine endometrium produces and secretes nutrient histotrophe. Coneeptus-derived oestrogen h...

bp0015cpr2 | Regulation of Reproductive Function | CPR1997

Immune-endocrine interactions affecting luteal function in pigs

Wuttke W. , Pitzel L. , Knoke L. , Theiling K. , Jarry H.

The formation, normal function and destruction of corpora lutea are essential features of normal reproduction. Although the formation of corpora lutea from follicles is largely dependent on pituitary gonadotrophins, the process of luteolysis is locally regulated and poorly understood. The corpus luteum consists of several steroidogenic and nonsteroidogenic cell types that interact with each other in a paracrine manner. Under cell culture conditions, large luteal cells tha...

bp0015cpr21 | Aspects of OOcyfe and Embryonic Development in The Pig | CPR1997

Oviductal regulation of fertilization and early embryonic development

Buhi W. C. , Alvarez I. M. , Kouba A. J. , ,

During the period of late follicular development and the first four days of the oestrous cycle, the oviduct occupies a central role in the establishment of pregnancy. Oviductal function is regarded as being either 'passive' or biologically active, providing an environment that sustains and enhances fertilization and early cleavage-stage embryonic development. Recent reports have focused on this microenvironment and shown that ovarian steroids induce marked morphological, ...

bp0018cpr18 | Management of Ovarian Activity in Swine | CPR2009

Ovarian responses to laetation management strategies

Soede N.M. , Hazeleger W. , Gerritsen R. , Langendijk P. , Kemp B.

A number of lactation management strategies can be applied to reduce negative effects of lactation on post-weaning fertility. This paper focuses on effects of lactation length, Intermittent Suckling and Split Weaning on follicle development and subsequent oestrus. It is concluded that a lactation length of less than 3 weeks still leads to suboptimal reproductive performance in our modern sows. Further, both Intermittent Suckling and Split Weaning stimulate lactational fo...

bp0019cpr16 | Pregnancy, Parturition and The Neonate | CPR2013

Roles of selected nutrients in development of the porcine conceptus during pregnancy

Fuller W. Bazer Fuller W. , Jinyoung Kim Jinyoung , Gwonhwa Song Gwonhwa , Hakhyun Ka Hakhyun , Guoyao Wu Guoyao , Johnson Gregory A. , Vallet Jeffrey L.

Conceptus development in mammals depends on an intra-uterine environment filled with histotroph that includes molecules that are secreted by uterine epithelia and/or selectively transported into the uterine lumen. In pigs, total recoverable glucose, fructose, arginine, leucine and glutamine increase in histotroph with advancing days of the peri-implantation period of pregnancy and in allantoic fluid later in gestation. During pregnancy, the uterine luminal epithelium (LE...

bp0003rdr10 | Development of the Reproductive Axis | REDR1994

Development of the sheep ovary during fetal and early neonatal life and the effect of fecundity genes

McNatty KP , Smith P , Hudson NL , Heath DA , Tisdall DJ , O W-S , Braw-Tal R

In female sheep fetuses, the mesonephros and genital ridge can be identified at days 20 and 23 of gestation (term = 145 days), respectively. Moreover oogonia can be observed at the genital ridge from as early as day 23. Around day 55 of gestation, some germ cells enter meiosis coincident with the arrival of mesonephric-derived somatic cells (i.e. the rete ovarii). From days 75, 100, 120 and 135 of gestation, primordial (one layer of flattened granulosa cells), primary (one...