Article
CASAnova: a multiclass support vector machine model for the classification of human sperm motility patterns†
4 Oct 2017
Abstract excerpt
The ability to accurately monitor alterations in sperm motility is paramount to understanding multiple genetic and biochemical perturbations impacting normal fertilization. Computer-aided sperm analysis (CASA) of human sperm typically reports motile percentage and kinematic parameters at the population level, and uses kinematic gating methods to identify subpopulations such as progressive or hyperactivated sperm....
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