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利用自动化头部腔室系统的气体通量估算育肥日粮条件下肉牛的饲粮能量值。

Utilizing gas flux from automated head chamber systems to estimate dietary energy values for beef cattle fed a finishing diet.

机构信息

Department of Animal Science, Texas A&M University, College Station, TX, USA.

Texas A&M AgriLife Extension, Department of Animal Science, Texas A&M University, Amarillo, TX, USA.

出版信息

J Anim Sci. 2024 Jan 3;102. doi: 10.1093/jas/skae167.

Abstract

Dietary net energy for maintenance (NEm) and gain (NEg) can be estimated using calculations based on live performance or adjusted-final body weight, which is calculated based on carcass characteristics. These values are commonly referred to as performance-adjusted (pa) NEm (paNEm) and NEg (paNEg). The NEm and NEg of a diet can also be estimated by adding recovered energy (RE) with heat production (HP) derived from an automated head chamber system (AHCS), which we will term gas-adjusted (ga) NEm (gaNEm) and NEg (gaNEg). Furthermore, HP from the Brouwer equation requires an estimate of urinary nitrogen (UN) excretion, which can be calculated based on N intake, blood urea N, UN concentration, and urine creatinine, or it could be zeroed. Alternatively, HP can be calculated using an alternative equation based on the respiratory quotient. Demonstrating agreement between pa and ga derived dietary energy values provides an opportunity to validate using the AHCS for energetic experiments and this comparison has not been conducted previously. Accordingly, the objective of this experiment was to assess the agreement between live and carcass paNEm and paNEg with gaNEm and gaNEg, where HP was calculated using 4 different approaches. Estimates of HP were not different (P = 0.99) between the 4 approaches employed, indicating that all options investigated are appropriate. Live paNEm and paNEg had a higher agreement (Lin's concordance correlation coefficient [CCC] = 0.91) with gaNEm and gaNEg than carcass values (CCC ≤ 0.84). These results suggest that researchers can implement the AHCS to provide good estimates of dietary energy values in finishing beef cattle that are unrestrained.

摘要

维持(NEm)和增重(NEg)的净能量可通过基于活体性能或调整后的终体重的计算来估计,而终体重是根据胴体特征计算得出的。这些值通常被称为性能调整后的(pa)NEm(paNEm)和 NEg(paNEg)。也可以通过添加从自动头部腔系统(AHCS)获得的回收能量(RE)和热产生(HP)来估计饲料的 NEm 和 NEg,我们将其称为气体调整后的(ga)NEm(gaNEm)和 NEg(gaNEg)。此外,Brouwer 方程的 HP 需要对尿氮(UN)排泄量进行估计,这可以根据氮摄入量、血液尿素氮、UN 浓度和尿肌酐进行计算,也可以将其设为零。或者,也可以使用基于呼吸商的替代方程来计算 HP。使用 AHCS 进行能量实验,验证 pa 和 ga 衍生的膳食能量值之间的一致性提供了机会,并且以前没有进行过这种比较。因此,本实验的目的是评估使用 4 种不同方法计算的活体和胴体 paNEm 和 paNEg 与 gaNEm 和 gaNEg 之间的一致性。所采用的 4 种方法计算的 HP 没有差异(P=0.99),表明所有调查的选项都是合适的。活体 paNEm 和 paNEg 与 gaNEm 和 gaNEg 的一致性更高(Lin 的一致性相关系数 [CCC] = 0.91),而胴体值的一致性较低(CCC ≤ 0.84)。这些结果表明,研究人员可以实施 AHCS 为未受约束的育肥牛肉提供良好的饲料能量值估计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4f4/11221065/3b59d182f599/skae167_fig1.jpg

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