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Evaluating equations estimating change in swine feed intake during heat and cold stress

机译:评估热和冷应力期间猪进料摄入量的方程估算变化

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摘要

The objectives of this study were to evaluate heat stress feed intake models for growing swine using a data set assembled from the literature and to develop a series of new equations modeling the influence of the thermal environment and interactions between the thermal environmental and other factors on feed intake. A literature survey was conducted to identify studies assessing intake responses to temperature. The resulting data set comprised 35 studies containing 120 comparisons to thermoneutral intake. Intake as a fraction of thermoneutral intake (FFI) was the primary response variable, where a value of 1 represented no change from thermoneutral intake. The FFI predicted by NRC and a recent model from a meta-analysis (Renaudeau et al.,) were compared to observed values. New parameters for the NRC equation (NRCmod) were derived, and a series of new equations incorporating duration of exposure (TD), temperature cycling (TC), and floor type (TH) were also derived. Root-mean-square prediction error (RMSPE) and concordance correlation coefficients were used to evaluate all models. The RMSPE for the NRC model was 23.6 with mean and slope bias accounting for 12.6% and 51.1% of prediction error, respectively. The TD, TC, and TH models had reduced RMSPE compared with NRC: 12.9 for TD, 12.6 for TC, and 12.9 for TS. Substantial improvements were also made by refitting parameters (NRCmod; RMSPE 13.0%). In NRCmod, TD, TC, and TH, random error was the predominant source, accounting for over 97% of prediction error. The Renaudeau et al. model was also evaluated. Renaudeau et al. had relatively low RMSPE (22.3) for intake but higher RMSPE for FFI (22.6) than NRC, NRCmod, TD, TC, or TH. Additional parameters were derived for the Renaudeau et al. equation to account for housing system and diet characteristics. This adjustment reduced RMSPE of predicting feed intake (16.0) and FFI (16.3) and reduced systematic bias in the equation. This evaluation of equations highlights the effects of novel explanatory variables on feed intake during heat stress, and the comparison can be useful when selecting a model that best explains variability in feed intake responses to heat stress given available input data.
机译:本研究的目的是使用从文献组装的数据集来评估用于生长猪的热应激进料模型,并开发一系列新的方程,这些方程建模了热环境和饲料上的热环境和其他因素之间的相互作用。录取。进行文献调查以确定评估进气响应的研究。所得到的数据集包括35项研究,该研究含有120种与热管摄入量的比较。摄入作为热源摄入量(FFI)的分数是初级响应变量,其中值1表示从热管摄入量的不变化。将NRC预测的FFI和来自Meta-Analysis(Renaudeau等,)的最新模型与观察到的值进行比较。还导出了NRC等式(NRCMOD)的新参数,也得到了包含曝光持续时间(Td),温度循环(Tc)和地板(Th)的一系列新方程。 rooti平方 - 方形预测误差(RMSPE)和一致性相关系数用于评估所有模型。 NRC模型的RMSPE分别为23.6,平均值和斜坡分别占预测误差的12.6%和51.1%。与NRC的TD,TC和TH模型降低了RMSPE:12.9对于TD,TC的12.6,TS为12.9。还通过改装参数(NRCMOD; RMSPE 13.0%)进行了实质性的改进。在NRCMOD,TD,TC和TH中,随机误差是主要的源,占预测误差的超过97%。瑞安等人。模型也在评估。雷劳德等人。对于FFI(22.6)的摄入而比NRC,NRCMOD,TD,TC或TH有相对低的RMSPE(22.3)。为renaudeau等人提供了其他参数。公式,用于住房系统和饮食特征。该调整降低了预测进料摄入(16.0)和FFI(16.3)的RMSPE,并减少了方程中的系统偏差。该方程的这种评估突出了新颖的解释变量对热应力期间进料进口的影响,并且在选择最能解释进料进口响应的变异性的模型时,比较可以是有用的,这是可用输入数据的热应力。

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