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伊比利亚马鹿附睾精子的亚群及其在冷冻保存过程中的变化。

Sperm subpopulations in Iberian red deer epididymal sperm and their changes through the cryopreservation process.

作者信息

Martinez-Pastor Felipe, Garcia-Macias Vanesa, Alvarez Mercedes, Herraez Paz, Anel Luis, de Paz Paulino

机构信息

Cell Biology and Anatomy, University of León, León, Spain.

出版信息

Biol Reprod. 2005 Feb;72(2):316-27. doi: 10.1095/biolreprod.104.032730. Epub 2004 Sep 22.

Abstract

We have applied a statistical protocol based on principal component analysis, clustering methods, and discriminant analysis for the identification of sperm subpopulations in computer-assisted sperm analysis (CASA) data. Samples were obtained from the cauda epididymis of 11 Iberian red deer and cryopreserved following a standard protocol. Motility by CASA was analyzed just after sperm recovery, just before freezing, and after thawing, and eight motility descriptors for each individual spermatozoon were recorded. Sperm viability and acrosomal status were also assessed. Subpopulation analysis was performed in four sequential steps: principal component analysis using the eight motility descriptors; nonhierarchical clustering analysis (k-means) using the first two principal components; hierarchical clustering analysis (UPGMA); and selection of the final number of clusters. Three clusters were obtained for each motility analysis: slow and nonlinear; rapid and linear; and rapid, high ALH, nonlinear. We detected variations in the clusters between treatments (initial, prefreezing and postthawed). Indeed, motility increased and linearity decreased in the prefreezing analysis. A discriminant analysis isolated three descriptors that were used again in the same statistical analysis, giving four clusters that resembled the pattern found in the first classification. We also performed a clustering analysis of the males according to prefreezing/postthawed variation of total motility, viability, and acrosomal status. The proportion of the linear subpopulations in the prefreezing treatment, in both clustering analyses, correlated positively with postthawed viability recovery. Our results show that clustering analysis of CASA data gives useful and practical information that is not obtained by conventional sperm analysis.

摘要

我们应用了一种基于主成分分析、聚类方法和判别分析的统计方案,用于在计算机辅助精子分析(CASA)数据中识别精子亚群。样本取自11只伊比利亚马鹿的附睾尾部,并按照标准方案进行冷冻保存。在精子复苏后、冷冻前和解冻后,通过CASA分析精子活力,并记录每个精子的八个活力描述符。还评估了精子活力和顶体状态。亚群分析按四个连续步骤进行:使用八个活力描述符进行主成分分析;使用前两个主成分进行非层次聚类分析(k均值);层次聚类分析(UPGMA);以及选择最终的聚类数量。每次活力分析均获得三个聚类:缓慢且非线性;快速且线性;以及快速、高ALH、非线性。我们检测到不同处理(初始、冷冻前和解冻后)之间聚类的差异。事实上,在冷冻前分析中活力增加而线性度降低。判别分析分离出三个描述符,这些描述符在相同的统计分析中再次使用,得到四个类似于首次分类中发现的模式的聚类。我们还根据总活力、活力和顶体状态的冷冻前/解冻后变化对雄性进行了聚类分析。在两种聚类分析中,冷冻前处理中线性亚群的比例与解冻后活力恢复呈正相关。我们的结果表明,对CASA数据进行聚类分析可提供常规精子分析无法获得的有用且实用的信息。

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