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水牛精子在胞质内注射后的早期形态变化 被引量:1
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作者 孟凡丽 韦精卫 +1 位作者 石德顺 卢晟盛 《中国兽医学报》 CAS CSCD 北大核心 2004年第6期609-612,共4页
应用胞质内精子注射 (intracytoplasmic sperm injection,ICSI)技术探讨了水牛卵母细胞胞质与注射精子间的相互作用以及 ICSI精子的形态变化。ICSI后 13h,5 9.4 %的精子头部已膨大 ,且有 18.8%的精子进入解聚状态。雌雄原核发育不同步 ... 应用胞质内精子注射 (intracytoplasmic sperm injection,ICSI)技术探讨了水牛卵母细胞胞质与注射精子间的相互作用以及 ICSI精子的形态变化。ICSI后 13h,5 9.4 %的精子头部已膨大 ,且有 18.8%的精子进入解聚状态。雌雄原核发育不同步 ,雄原核在 ICSI后 16 h和 19h的形成率分别为 3.2 %和 4 0 .0 % ;雌原核在 ICSI后 13h已达到 71.9% ,16 h时提高到 90 .3%。经离子霉素与 6 - DMAP联合激活 ,ICSI后 19h产生的胚胎核型以 2 PN+PB1 为主 ,其雌原核形成 (激活 )率为 91.3% ,雄原核形成率为 4 0 .0 % ,5 1.3%为孤雌胚。用 5 mm ol/ L 的 DTT预处理精子 1h,可提高精子的解聚率 (30 .9%比 12 .7% ,P<0 .0 5 ) ,但对雄原核的形成率无显著影响 (33.3%比 32 .7% ,P>0 .0 5 )。结果表明 ,水牛精子 ICSI后的雄原核形成时间晚于卵子雌原核形成时间 ,且其比率低于卵子 ,DTT处理精子能提高其解聚率 。 展开更多
关键词 水牛精子 胞质 注射 形态变化
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Identification of Sperm Subpopulations in Water Buffalo Ejaculates: Changes in Cryopreservation Stages and Bull Variation
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作者 Excel Rio Santos Maylem Maria Elizabeth Dela Cruz Leoveras +2 位作者 Emma Villanueva Venturina Eufrocina Dela Pena Atabay Edwin Curading Atabay 《Journal of Agricultural Science and Technology(A)》 2017年第3期184-192,共9页
This study aimed to identify and characterize the sperm subpopulations existing in water buffalo semen using a computer assisted sperm analyzer (CASA), as well as assess the effects of cryopreservation on the sperm ... This study aimed to identify and characterize the sperm subpopulations existing in water buffalo semen using a computer assisted sperm analyzer (CASA), as well as assess the effects of cryopreservation on the sperm subpopulation structure and evaluate bull variability. The semen of eight Bulgarian Murrah bulls was collected by four times in an interval of one week each. The semen was cryopreserved following a standard protocol and sperm kinematics was assessed. Clustering methods were applied to individual sperms, forming two significantly different (P 〈 0.05) subpopulations (P1 and P2). Subpopulation P1 represents those spermatozoa that moved most rapidly and progressively (46.29%), and subpopulation P2 includes spermatozoa with relatively low velocity or poorly motile but with high progressiveness (53.41%). There was a decline on the population of P1 sperms from fresh (52.52%), pre-freeze (45.73%) to post-thaw (35.17%) stages and significant difference on the sperm kinematics between P1 and P2. A significant decline in the values of distance, velocity and amplitude of lateral head (ALH) parameters were observed at post-thaw stage, while an increase was observed on trajectory and beat cross frequency (BCF) kinematics. Values of sperm kinematics were also significantly different (P 〈 0.05) among all bulls. The frequency distribution of spermatozoa on both subpopulations P1 and P2 was quite similar for all bulls in pre-freeze and post-thaw stages, but with significant (P 〈 0.05) variability on fresh stage. Bulls with the highest maintained frequency of P1 sperms are denoted as good freezer bulls. In sum, kinematic characterization of water buffalo sperm and clustering into subpopulation enable to identify bulls that are more resistant to cryopreservation and production of quality semen for genetic propagation. 展开更多
关键词 Sperm subpopulations buffalo semen sperm kinematics CRYOPRESERVATION computer assisted sperm analyzer.
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