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Literaturverzeichnis Molecular Reproduction and Development, 73(2):256–266. HERZOG, K., BROCKHAN-LÜDEMANN, M., KASKE, M., BEINDORFF, N., PAUL, V., NIE- MANN, H. und BOLLWEIN, H. (2010): Luteal blood flow is a more appropriate indicator for luteal function during the bovine estrous cycle than luteal size. Theriogenology, 73(5):691 – 697. HOGENESCH, J. B., CHAN, W. K., JACKIW, V. H., BROWN, R. C., GU, Y. Z., PRAY- GRANT, M., PERDEW, G. H. und BRADFIELD, C. A. (1997): Characterization of a subset of the basic-helix-loop-helix-PAS superfamily that interacts with components of the dioxin signaling pathway. J Biol Chem, 272(13):8581–93. HOSOE, M., KANEYAMA, K., USHIZAWA, K., HAYASHI, K.-G. und T., TORU (2011): Quantitative analysis of bone morphogenetic protein 15 (BMP15) and growth differentiation factor 9 (GDF9) gene expression in calf and adult bovine ovaries. Reproductive Biology and Endocrinology, 9(1):33. HOU, Q. und GORSKI, J. (1993): Estrogen receptor and progesterone receptor genes are expressed differentially in mouse embryos during preimplantation development. Proceedings of the National Academy of Sciences, 90(20):9460–9464. HUMBLOT, P., HOLM, P., LONERGAN, P., WRENZYCKI, C., LEQUARRE, A. S., JOLY, C. G., HERRMANN, D., LOPES, A., RIZOS, D., NIEMANN, H. und CALLESEN, H. (2005): Effect of stage of follicular growth during superovulation on developmental competence of bovine oocytes. Theriogenology, 63(4):1149–66. HUSSEIN, T. S., THOMPSON, J. G. und GILCHRIST, R. B. (2006): Oocyte-secreted factors enhance oocyte developmental competence. Dev Biol, 296(2):514–21. HYTTEL, P., CALLESEN, H. und GREVE, T. (1986): Ultrastructural features of preovulatory oocyte maturation in superovulated cattle. J Reprod Fertil, 76(2):645–56. IRELAND, J. J. und ROCHE, J. F. (1982): Development of antral follicles in cattle after prostaglandin-induced luteolysis: Changes in serum hormones, steroids in follicular fluid, and gonadotropin receptors. Endocrinology, 111(6):2077–2086. IZADYAR, F., ZEINSTRA, E. und BEVERS, M. M. (1998): Follicle-stimulating hormone and growth hormone act differently on nuclear maturation while both enhance developmental competence of in vitro matured bovine oocytes. Mol Reprod Dev, 51(3):339–45. JAVED, M. H. und WRIGHT, JR., R. W. (1991): Determination of pentose phosphate and Embden-Meyerhof pathway activities in bovine embryos. 134

Theriogenology, 35(5):1029–37. JEWGENOW, K., HEERDEGEN, B. und MÜLLER, K. (1999): In vitro development of individually matured bovine oocytes in relation to follicular wall atresia. Theriogenology, 51(4):745–756. JIANG, H. S., WANG, W. L., LU, K. H., GORDON, I. und POLGE, C. (1992): Examination of cell numbers of blastocysts derived from IVM, IVF and IVC of bovine follicular oocytes. Theriogenology, 37(1):229–229. JIANG, L., MARJANI, S. L., BERTOLINI, M., ANDERSON, G. B., YANG, X. und TIAN, X. C. (2011): Indistinguishable transcriptional profiles between in vitro- and in vivo-produced bovine fetuses. Molecular Reproduction and Development, 78(9):642–650. JOOST, H. G., BELL, G. I., BEST, J. D., BIRNBAUM, M. J., CHARRON, M. J., CHEN, Y. T., DOEGE, H., JAMES, D. E., LODISH, H. F., MOLEY, K. H., MOLEY, J. F., MUECKLER, M., ROGERS, S., SCHURMANN, A., SEINO, S. und THORENS, B. (2002): Nomenclature of the GLUT/SLC2A family of sugar/polyol transport facilitators. Am J Physiol Endocrinol Metab, 282(4):E974–6. JORRITSMA, R., CESAR, M. L., HERMANS, J. T., KRUITWAGEN, C. L., VOS, P. L. und KRUIP, T. A. (2004): Effects of non-esterified fatty acids on bovine granulosa cells and developmental potential of oocytes in vitro. Anim Reprod Sci, 81(3-4):225–35. JUENGEL, J. L., HUDSON, N. L., BERG, M., HAMEL, K., SMITH, P., LAWRENCE, S. B., WHITING, L. und MCNATTY, K. P. (2009): Effects of active immunization against growth differentiation factor 9 and/or bone morphogenetic protein 15 on ovarian function in cattle. Reproduction, 138(1):107–14. JUENGEL, J. L., HUDSON, N. L., WHITING, L. und MCNATTY, K. P. (2004): Effects of immunization against bone morphogenetic protein 15 and growth differentiation factor 9 on ovulation rate, fertilization, and pregnancy in ewes. Biol Reprod, 70(3):557–61. KARIAGINA, A., AUPPERLEE, M. D. und HASLAM, S. Z. (2007): Progesterone receptor isoforms and proliferation in the rat mammary gland during development. Endocrinology, 148(6):2723–36. KARLACH, V. (1987): The effect of FSH, LH, oestradiol-17 beta, and progesterone on cytoplasmic maturation of bovine follicular oocytes in vitro. Folia Biol (Praha), 33(4):258–65. 135

Literaturverzeichnis<br />

Molecular Reproduction and Development, 73(2):256–266.<br />

HERZOG, K., BROCKHAN-LÜDEMANN, M., KASKE, M., BEINDORFF, N., PAUL, V., NIE-<br />

MANN, H. und BOLLWEIN, H. (2010):<br />

Luteal blood flow is a more appropriate indicator for luteal function during the bovine estrous<br />

cycle than luteal size.<br />

Theriogenology, 73(5):691 – 697.<br />

HOGENESCH, J. B., CHAN, W. K., JACKIW, V. H., BROWN, R. C., GU, Y. Z., PRAY-<br />

GRANT, M., PERDEW, G. H. und BRADFIELD, C. A. (1997):<br />

Characterization of a subset of the basic-helix-loop-helix-PAS superfamily that interacts with<br />

components of the dioxin signaling pathway.<br />

J Biol Chem, 272(13):8581–93.<br />

HOSOE, M., KANEYAMA, K., USHIZAWA, K., HAYASHI, K.-G. und T., TORU (2011):<br />

Quantitative analysis of bone morphogenetic protein 15 (BMP15) and growth differentiation<br />

factor 9 (GDF9) gene expression in calf and adult bovine ovaries.<br />

Reproductive Biology and Endocrinology, 9(1):33.<br />

HOU, Q. und GORSKI, J. (1993):<br />

Estrogen receptor and progesterone receptor genes are expressed differentially in mouse embryos<br />

during preimplantation development.<br />

Proceedings of the National Academy of Sciences, 90(20):9460–9464.<br />

HUMBLOT, P., HOLM, P., LONERGAN, P., WRENZYCKI, C., LEQUARRE, A. S., JOLY,<br />

C. G., HERRMANN, D., LOPES, A., RIZOS, D., NIEMANN, H. und CALLESEN, H. (2005):<br />

Effect of stage of follicular growth during superovulation on developmental competence of<br />

bovine oocytes.<br />

Theriogenology, 63(4):1149–66.<br />

HUSSEIN, T. S., THOMPSON, J. G. und GILCHRIST, R. B. (2006):<br />

Oocyte-secreted factors enhance oocyte developmental competence.<br />

Dev Biol, 296(2):514–21.<br />

HYTTEL, P., CALLESEN, H. und GREVE, T. (1986):<br />

Ultrastructural features of preovulatory oocyte maturation in superovulated cattle.<br />

J Reprod Fertil, 76(2):645–56.<br />

IRELAND, J. J. und ROCHE, J. F. (1982):<br />

Development of antral follicles in cattle after prostaglandin-induced luteolysis: Changes in<br />

serum hormones, steroids in follicular fluid, and gonadotropin receptors.<br />

Endocrinology, 111(6):2077–2086.<br />

IZADYAR, F., ZEINSTRA, E. und BEVERS, M. M. (1998):<br />

Follicle-stimulating hormone and growth hormone act differently on nuclear maturation while<br />

both enhance developmental competence of in vitro matured bovine oocytes.<br />

Mol Reprod Dev, 51(3):339–45.<br />

JAVED, M. H. und WRIGHT, JR., R. W. (1991):<br />

Determination of pentose phosphate and Embden-Meyerhof pathway activities in bovine embryos.<br />

134

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