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计数室类型和捕捉面积以及稀释液对荷斯坦公牛精子运动学的综合影响。

Combined effect of type and capture area of counting chamber and diluent on Holstein bull sperm kinematics.

机构信息

Costa Rica Institute of Technology, School of Agronomy, Alajuela, Costa Rica.

Departament de Biologia Cellular, Biologia Funcional i Antropologia Física, Universitat de València, Burjassot, Spain.

出版信息

Andrologia. 2019 May;51(4):e13223. doi: 10.1111/and.13223. Epub 2018 Dec 27.

Abstract

The evaluation of sperm motion is crucial for processing of seminal doses for artificial insemination. Here, the combined effect of the type and capture area of three counting chambers, together with the type of diluent employed, on sperm motility was analysed. Ejaculates from thirteen Holstein bulls were used for sperm kinematic analysis with the ISAS v1 CASA-Mot system, using two capillary-loaded counting chambers (Leja and Cell-Vu ) and one drop displacement chamber (Makler ). Nine fixed positions were analysed per chamber type, considering central and lateral and three longitudinal fields. Independent of the diluent used, differences were found between the three chambers. Independent of the extender, no differences in x-axis were observed with Cell-Vu , while using Leja , some parameters showed lower values in the centre than in lateral areas. In both counting chambers, the lowest values were observed in the distal area. Results obtained with the two diluents were highly different with a very low correlation between them. In conclusion, the capture area inside the chambers leads to significant changes in sperm kinematic parameters and different dilution media introduce considerable differences in the motility patterns. It is necessary to optimise sampling methods and specific set-ups to be used with CASA-Mot technology.

摘要

精子运动的评估对于人工授精中精液剂量的处理至关重要。在这里,分析了三种计数室的类型和捕捉区域以及所使用的稀释剂类型对精子活力的综合影响。使用 ISAS v1 CASA-Mot 系统对 13 头荷斯坦公牛的精液进行了精子运动学分析,使用了两种带有毛细吸管的计数室(Leja 和 Cell-Vu)和一种滴移室(Makler)。每个室类型分析了九个固定位置,考虑了中央和侧部以及三个纵向区域。独立于使用的稀释剂,三种室之间存在差异。不考虑扩展剂,使用 Cell-Vu 时,中央区域的 x 轴与侧部区域没有差异,而使用 Leja 时,一些参数在中心区域的数值低于侧部区域。在两个计数室中,远端区域的数值最低。两种稀释剂的结果差异很大,它们之间的相关性非常低。总之,室内部的捕捉面积会导致精子运动学参数发生显著变化,而不同的稀释液会在运动模式上引入显著差异。有必要优化与 CASA-Mot 技术一起使用的采样方法和特定设置。

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