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1 roduction has accompanied the development of artificial insemination.
2 cattle (Bos taurus) pregnancies initiated by artificial insemination.
3 ored through semen analyses and thousands of artificial inseminations.
4 s in cattle conceptuses produced by SCNT and artificial insemination (AI) at day (d) 18 (preimplantat
5 tle, estrous synchronization aiming a second artificial insemination (AI) requires a reliable estimat
7 s of contrasting fertility, serial rounds of artificial insemination (AI) were conducted in 201 synch
8 ic records collected on >7,000 bulls used in artificial insemination (AI) were used to identify 160 r
11 blood samples from 17 heifers on the day of artificial insemination and analyzed transcript abundanc
12 ty) as assessed by nonreturn to estrus after artificial insemination and in vitro embryonic developme
15 ed of semen specimens from different healthy artificial-insemination donors (n = 30) and human immuno
16 ree (8%) of the 37 semen specimens (two from artificial-insemination donors and one from an HIV-posit
17 atory tests for semen quality, bulls used in artificial insemination exhibit significant variation in
19 ected at 35 DPI, intravaginal inoculation of artificial insemination fluid from these time-points fai
20 gesterone and inoculated intravaginally with artificial insemination fluid from ZIKV-infected males.
23 a 40-day transgenic female fetus produced by artificial insemination of a nontransgenic adult female
26 tine use at the start of breeding for timing artificial insemination or inducing oestrus was judged "
27 females were later classified as pregnant to artificial insemination, pregnant to natural breeding or
28 Extender solutions that are widely used in artificial insemination programs were found to be compat
32 cryopreserved semen, laparoscopic oviductal artificial insemination was performed on three queens, t
35 treating commercial semen doses intended for artificial insemination with the 10-10-10 photo-stimulat