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Molecular and Cellular Endocrinology
|
November 15, 2002
Role of growth hormone and growth hormone receptor in oocyte maturation
M M Bevers, F Izadyar
Theriogenology
|
September 1, 1982
Effect of synthetic TRH on prolactin release in the pig
M M Bevers, A H Willemse
Journal of Reproduction and Fertility
|
November 1, 1987
Effects of monoclonal antibody against PMSG administered shortly after the preovulatory LH surge on time and number of ovulations in PMSG/PG-treated cows
S J Dieleman, M M Bevers
Molecular Reproduction and Development
|
October 1, 1993
Folliculogenesis and oocyte maturation in superovulated cattle
S J Dieleman, M M Bevers
Molecular Reproduction and Development
|
October 15, 1998
Theca cells and theca-cell conditioned medium inhibit the progression of FSH-induced meiosis of bovine oocytes surrounded by cumulus cells connected to membrana granulosa
H T van Tol, M M Bevers
Molecular Reproduction and Development
|
October 15, 1998
Follicle-stimulating hormone and growth hormone act differently on nuclear maturation while both enhance developmental competence of in vitro matured bovine oocytes
F Izadyar, E Zeinstra, M M Bevers
Molecular Reproduction and Development
|
November 1, 1996
In vitro maturation of bovine oocytes in the presence of growth hormone accelerates nuclear maturation and promotes subsequent embryonic development
F Izadyar, B Colenbrander, M M Bevers
Tijdschrift Voor Diergeneeskunde
|
July 1, 1991
[Pseudopregnancy in the dog]
M M Bevers, A C Schaefers-Okkens
Molecular Reproduction and Development
|
October 13, 2001
Partial characterization of the factor in theca-cell conditioned medium that inhibits the progression of FSH-induced meiosis of bovine oocytes surrounded by cumulus cells connected to the membrana granulosa
H T van Tol, M M Bevers
Biology of Reproduction
|
January 4, 1998
Stimulatory effect of growth hormone on in vitro maturation of bovine oocytes is exerted through the cyclic adenosine 3',5'-monophosphate signaling pathway
F Izadyar, B Colenbrander, M M Bevers
Page
of 14
Search research articles
Search
Showing results (1-10 of 139) with videos related to
Sort By:
Page
of 14
Molecular and Cellular Endocrinology
|
November 15, 2002
Role of growth hormone and growth hormone receptor in oocyte maturation
M M Bevers, F Izadyar
Theriogenology
|
September 1, 1982
Effect of synthetic TRH on prolactin release in the pig
M M Bevers, A H Willemse
Journal of Reproduction and Fertility
|
November 1, 1987
Effects of monoclonal antibody against PMSG administered shortly after the preovulatory LH surge on time and number of ovulations in PMSG/PG-treated cows
S J Dieleman, M M Bevers
Molecular Reproduction and Development
|
October 1, 1993
Folliculogenesis and oocyte maturation in superovulated cattle
S J Dieleman, M M Bevers
Molecular Reproduction and Development
|
October 15, 1998
Theca cells and theca-cell conditioned medium inhibit the progression of FSH-induced meiosis of bovine oocytes surrounded by cumulus cells connected to membrana granulosa
H T van Tol, M M Bevers
Molecular Reproduction and Development
|
October 15, 1998
Follicle-stimulating hormone and growth hormone act differently on nuclear maturation while both enhance developmental competence of in vitro matured bovine oocytes
F Izadyar, E Zeinstra, M M Bevers
Molecular Reproduction and Development
|
November 1, 1996
In vitro maturation of bovine oocytes in the presence of growth hormone accelerates nuclear maturation and promotes subsequent embryonic development
F Izadyar, B Colenbrander, M M Bevers
Tijdschrift Voor Diergeneeskunde
|
July 1, 1991
[Pseudopregnancy in the dog]
M M Bevers, A C Schaefers-Okkens
Molecular Reproduction and Development
|
October 13, 2001
Partial characterization of the factor in theca-cell conditioned medium that inhibits the progression of FSH-induced meiosis of bovine oocytes surrounded by cumulus cells connected to the membrana granulosa
H T van Tol, M M Bevers
Biology of Reproduction
|
January 4, 1998
Stimulatory effect of growth hormone on in vitro maturation of bovine oocytes is exerted through the cyclic adenosine 3',5'-monophosphate signaling pathway
F Izadyar, B Colenbrander, M M Bevers
Page
of 14