Caldeira Carina, Soler Carles
PROiSER R+D S.L.;
PROiSER R+D S.L.; Department of Cellular Biology, Functional Biology and Physical Anthropology, University of Valencia.
J Vis Exp. 2018 Jul 28(137):56823. doi: 10.3791/56823.
For gamete quality evaluation, there are innovative, rapid, and quantitative techniques that can provide useful data for aquaculture. Computerized systems for sperm analysis were developed to measure several parameters and one of the most commonly measured is the sperm motility. Initially, this computer technology was designed for mammalian species, although it can also be used for fish sperm analysis. Fish have specific features that can affect sperm assessment such as a short motility time after activation and, in some cases, adaptation to lower temperatures. Thus, it is necessary to modify both software and hardware components to make motility analysis more efficient for fish sperm analysis. For mammalian sperm, the heating plate is used to maintain optimal temperatures of spermatozoa. However, for some fish species, it is advantageous to use a lower temperature to prolong the duration of motility, since the sperm remain active for less than 2 min. Therefore, cooling devices are necessary to refrigerate samples at constant temperature over the time of analysis, including on the optical microscope. This protocol describes the analysis of fish sperm motility using software for sperm analysis and new cooling devices to optimize the results.
对于配子质量评估,有一些创新、快速且定量的技术可为水产养殖提供有用数据。用于精子分析的计算机系统被开发出来以测量多个参数,其中最常测量的参数之一就是精子活力。最初,这项计算机技术是为哺乳动物设计的,不过它也可用于鱼类精子分析。鱼类具有一些会影响精子评估的特定特征,比如激活后活力时间短,而且在某些情况下,它们能适应较低温度。因此,有必要对软件和硬件组件进行修改,以使活力分析对鱼类精子分析更有效。对于哺乳动物的精子,加热板用于维持精子的最佳温度。然而,对于一些鱼类物种,使用较低温度来延长活力持续时间是有利的,因为精子在不到2分钟的时间内就会保持活跃。所以,需要冷却装置在分析过程中,包括在光学显微镜下,将样本恒温冷藏。本方案描述了使用精子分析软件和新型冷却装置来优化结果的鱼类精子活力分析方法。