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不同的计算机辅助精子分析(CASA)系统对精子运动参数有很大影响。

Different computer-assisted sperm analysis (CASA) systems highly influence sperm motility parameters.

机构信息

University of South Bohemia in Ceske Budejovice, Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Research Institute of Fish Culture and Hydrobiology, Vodňany, Czech Republic.

出版信息

Theriogenology. 2013 Oct 15;80(7):758-65. doi: 10.1016/j.theriogenology.2013.06.019. Epub 2013 Aug 9.

Abstract

In this study, we examined different computer-assisted sperm analysis (CASA) systems (CRISMAS, Hobson Sperm Tracker, and Image J CASA) on the exact same video recordings to evaluate the differences in sperm motility parameters related to the specific CASA used. To cover a wide range of sperm motility parameters, we chose 12-second video recordings at 25 and 50 Hz frame rates after sperm motility activation using three taxonomically distinct fish species (sterlet: Acipenser ruthenus L.; common carp: Cyprinus carpio L.; and rainbow trout: Oncorhynchus mykiss Walbaum) that are characterized by essential differences in sperm behavior during motility. Systematically higher values of velocity and beat cross frequency (BCF) were observed in video recordings obtained at 50 Hz frame frequency compared with 25 Hz for all three systems. Motility parameters were affected by the CASA and species used for analyses. Image J and CRISMAS calculated higher curvilinear velocity (VCL) values for rainbow trout and common carp at 25 Hz frequency compared with the Hobson Sperm Tracker, whereas at 50 Hz, a significant difference was observed only for rainbow trout sperm recordings. No significant difference was observed between the CASA systems for sterlet sperm motility at 25 and 50 Hz. Additional analysis of 1-second segments taken at three time points (1, 6, and 12 seconds of the recording) revealed a dramatic decrease in common carp and rainbow trout sperm speed. The motility parameters of sterlet spermatozoa did not change significantly during the 12-second motility period and should be considered as a suitable model for longer motility analyses. Our results indicated that the CASA used can affect motility results even when the same motility recordings are used. These results could be critically altered by the recording quality, time of analysis, and frame rate of camera, and could result in erroneous conclusions.

摘要

在这项研究中,我们使用不同的计算机辅助精子分析(CASA)系统(CRISMAS、Hobson Sperm Tracker 和 Image J CASA)对同一视频记录进行检查,以评估与特定 CASA 使用相关的精子运动参数的差异。为了涵盖广泛的精子运动参数,我们选择了使用三种分类学上不同的鱼类(欧洲鲟:Acipenser ruthenus L.;鲤鱼:Cyprinus carpio L.;虹鳟:Oncorhynchus mykiss Walbaum)在精子运动激活后分别以 25 和 50 Hz 帧率进行的 12 秒视频记录,这些鱼类的精子运动行为存在显著差异。对于所有三个系统,在 50 Hz 帧率下获得的视频记录中观察到速度和摆动交叉频率(BCF)值系统地高于 25 Hz。运动参数受到用于分析的 CASA 和物种的影响。与 Hobson Sperm Tracker 相比,Image J 和 CRISMAS 在 25 Hz 频率下计算出虹鳟和鲤鱼的曲线速度(VCL)值更高,而在 50 Hz 时仅观察到虹鳟精子记录的显著差异。在 25 和 50 Hz 时,三种系统之间的差异并不明显。在三个时间点(记录的第 1、6 和 12 秒)对 1 秒段进行的额外分析显示,鲤鱼和虹鳟精子的速度急剧下降。在 12 秒的运动期间,欧洲鲟精子的运动参数没有明显变化,可被视为用于更长时间运动分析的合适模型。我们的结果表明,即使使用相同的运动记录,使用的 CASA 也会影响运动结果。这些结果可能会因记录质量、分析时间和相机帧率而发生重大变化,并导致错误的结论。

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