Statistical options for the analysis of in vitro gas production profiles illustrated using rumen liquor as the inoculum

Dan Dhanoa, R. Sanderson, Sue Lister, Rogerio Martins Mauricio, Secundino López, Jennifer Ellis, Chris Powell, James France
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Abstract

The use of repeated measures analysis of variance (ANOVA) options for the analysis of in vitro ruminal fermentation gas production profiles is illustrated. Because of the different variances and covariance structures among profile observations, ordinary ANOVA for more than two-time points is not recommended. To mitigate this problem, the Greenhouse–Geisser epsilon correction can be applied to reduce the degrees of freedom, inflated by violation of the sphericity assumption, for F ratio probability calculations. After this correction, the Box–Greenhouse–Geisser ANOVA (modified ANOVA) layout appears similar to the layout of a split-plot design ANOVA with whole plots divided into subplots (incubation time). Any F tests in the main plot part are valid but F tests involving the time factor from the subplot part need modification because time factor, by its very nature, cannot be allocated at random. Application of multivariate ANOVA, distance multivariate ANOVA, ante-dependence and mixed model analysis are also considered. All these options lend themselves to wide application in the applied biological sciences.
用瘤胃液作为接种物分析体外产气剖面的统计选项
重复测量方差分析(ANOVA)选项用于体外瘤胃发酵产气量分析的说明。由于剖面观测值的方差和协方差结构不同,不建议对两个以上的时间点进行普通方差分析。为了缓解这个问题,可以应用温室-盖瑟修正来降低自由度,因为F比概率计算违反了球性假设。经过此校正后,Box-Greenhouse-Geisser ANOVA(修正ANOVA)布局看起来类似于将整个地块划分为子地块(孵化时间)的分割地块设计ANOVA布局。主情节部分的任何F检验都是有效的,但涉及子情节部分的时间因素的F检验需要修改,因为时间因素就其本质而言不能随机分配。同时考虑了多元方差分析、距离多元方差分析、前依赖分析和混合模型分析的应用。所有这些选择使它们在应用生物科学中得到广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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