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描述火鸡母鸡随年龄增长的生长规律的灵活替代戈珀特方程。

Flexible alternatives to the Gompertz equation for describing growth with age in turkey hens.

机构信息

Department of Animal and Poultry Science, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.

出版信息

Poult Sci. 2010 Feb;89(2):371-8. doi: 10.3382/ps.2009-00141.

Abstract

A total of 49 profiles of growing turkey hens from commercial flocks were used in this study. Three flexible growth functions (von Bertalanffy, Richards, and Morgan) were evaluated with regard to their ability to describe the relationship between BW and age and were compared with the Gompertz equation with its fixed point of inflection, which might result in its overestimation. For each function, 4 ways of analysis were implemented. A basic model was fitted first, followed by implementation of a first-order autoregressive correlation structure. A model that considered only mature BW varied with year and another that considered only the rate coefficient varied with different years were applied. The results showed that the fixed point of inflection of the Gompertz equation can be a limitation and that the relationship between BW and age in turkeys was best described using flexible growth functions. However, the Richards equation failed to converge when fitted to the turkey growth data; therefore, it was not considered further. Inclusion of an autoregressive process of the first order rendered a substantially improved fit to data for the 3 growth functions. The Morgan equation provided the best fit to the data set and was used for characterizing mean growth curves for the 7 yr of production. It was estimated that the maximum growth rate occurred at 3.74, 3.65, 3.99, 4.18, 4.05, 4.01, and 3.77 kg BW for production years from 1997 to 2003, respectively. It is recommended that flexible growth functions should be considered as an alternative to the simpler functions (with a fixed point of inflection) for describing the relationship between BW and age in turkeys because they were easier to fit and very often gave a closer fit to data points because of their flexibility, and therefore a smaller residual MS value, than simpler models. It can also be recommended that studies should consider adding a first-order autoregressive process when analyzing repeated measures data with nonlinear models.

摘要

本研究使用了来自商业鸡群的 49 只生长火鸡母鸡的个体资料。评价了三种灵活的生长函数(von Bertalanffy、Richards 和 Morgan),以评估它们描述体重与年龄之间关系的能力,并将其与具有固定拐点的 Gompertz 方程进行了比较,拐点可能导致其过度估计。对于每种功能,都实施了 4 种分析方法。首先拟合基本模型,然后实施一阶自回归相关结构。应用了仅考虑成熟体重随年份变化的模型和仅考虑不同年份速率系数变化的模型。结果表明,Gompertz 方程的拐点可能是一个限制,火鸡的体重与年龄之间的关系最好用灵活的生长函数来描述。然而,Richards 方程在拟合火鸡生长数据时无法收敛,因此不再进一步考虑。包含一阶自回归过程可以大大改善对 3 种生长函数数据的拟合。Morgan 方程与数据集的拟合度最好,用于描述 7 年生产期间的平均生长曲线。据估计,最大生长速率分别出现在 1997 年至 2003 年的生产年份的 3.74、3.65、3.99、4.18、4.05、4.01 和 3.77 kg BW。建议考虑使用灵活的生长函数来替代具有固定拐点的简单函数,以描述火鸡体重与年龄之间的关系,因为它们更容易拟合,并且由于其灵活性,通常更接近数据点,因此残差 MS 值更小,比简单模型更好。还可以建议研究在使用非线性模型分析重复测量数据时应考虑添加一阶自回归过程。

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