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应用三维成像技术估算生长奶牛杂交公牛活体及胴体化学成分。

Three-dimensional imaging to estimate in vivo body and carcass chemical composition of growing beef-on-dairy crossbred bulls.

机构信息

Ruminant Nutrition and Emissions, Agroscope, 1725 Posieux, Switzerland; PEGASE INRAE-Institut Agro Rennes-Angers, 16 Le Clos, 35590 Saint Gilles, France.

Ruminant Nutrition and Emissions, Agroscope, 1725 Posieux, Switzerland.

出版信息

Animal. 2024 Jun;18(6):101174. doi: 10.1016/j.animal.2024.101174. Epub 2024 Apr 25.

Abstract

The dynamics of cattle body chemical composition during growth and fattening periods determine animal performance and beef carcass quality. The aim of this study was to estimate the empty body (EB) and carcass chemical composition of growing beef-on-dairy crossbred bulls (Brown Swiss breed as dam with Angus, Limousin or Simmental as sire) using three-dimensional (3D) imaging. The 3D images of the cattle's external body shape were recorded in vivo on 48 bulls along growth trajectory (75-520 kg BW and 34-306 kg hot carcass weight [HCW]; set 1) and on 70 bulls at target market slaughter weight, including 18 animals from set 1 (average 517 ± 10 kg BW and 289 ± 10 kg HCW; set 2). The linear, circumference, curve, surface and volume measurements on the 3D body shape were determined. Those predictive variables were used in partial least square regressions, together with the effect of the sire breed whenever significant (P < 0.05), with leave-one-out cross-validation to estimate water, lipid, protein, mineral and energy mass or proportions in the EB and carcass. Mass and proportions were determined directly from postmortem grinding and chemical analyses (set 1) or indirectly using the 11 rib dissection method (set 2). In set 1, bulls' BW and HCW were estimated via 3D imaging, with root mean square error of prediction (RMSEP) of 12 kg and 6 kg, respectively. The EB and carcass chemical component proportions were estimated with RMSEP from 0.2% for EB minerals (observed mean 3.7 ± 0.2%) to 1.8% for EB lipid (11.6 ± 4.2%), close to the RMSEP found for the carcass. In set 2, the RMSEP for estimation via 3D imaging was 9 kg for BW and 6 kg for HCW. The EB energy and protein proportions were estimated, with RMSEP of 0.5 MJ/kg fresh matter (10.1 ± 0.8 MJ/DM) and 0.2% (18.7 ± 0.7%), respectively. Overall, the estimations of chemical component proportions from 3D imaging were slightly less precise for both sets than the mass estimations. The morphological traits from the 3D images appeared to be precise estimators of BW, HCW as well as EB and carcass chemical component masses and proportions.

摘要

牛体化学成分在生长和育肥期间的动态决定了动物的性能和牛肉胴体质量。本研究的目的是使用三维(3D)成像技术估算生长中的乳肉杂交公牛(母本为瑞士褐牛,父本为安格斯牛、利木赞牛或西门塔尔牛)的空体(EB)和胴体化学成分。在生长轨迹(75-520kgBW 和 34-306kg 热胴体重[HCW];集 1)上,对 48 头公牛的外部体型进行了 3D 图像记录,在目标市场屠宰体重时,对 70 头公牛进行了 3D 图像记录,其中 18 头来自集 1(平均 BW517±10kg 和 289±10kgHCW;集 2)。对 3D 体型进行了线性、周长、曲线、表面和体积测量。这些预测变量与父本品种的影响一起(当显著时[P<0.05]),使用偏最小二乘回归,与离开一个样本的交叉验证一起,用于估计 EB 和胴体中的水、脂肪、蛋白质、矿物质和能量质量或比例。质量和比例直接来自死后研磨和化学分析(集 1),或间接使用 11 肋解剖法(集 2)确定。在集 1 中,通过 3D 成像估计了公牛的 BW 和 HCW,预测均方根误差(RMSEP)分别为 12kg 和 6kg。使用 RMSEP 从 0.2%(EB 矿物质的观察平均值为 3.7±0.2%)到 1.8%(EB 脂肪的 11.6±4.2%)估算 EB 和胴体化学组分比例,接近胴体的 RMSEP。在集 2 中,通过 3D 成像估计的 RMSEP 为 BW9kg 和 HCW6kg。EB 能量和蛋白质比例的 RMSEP 分别为 0.5MJ/kg 鲜物质(10.1±0.8MJ/DM)和 0.2%(18.7±0.7%)。总体而言,两组的化学组分比例的估计值比质量估计值略低。3D 图像中的形态特征似乎是 BW、HCW 以及 EB 和胴体化学组分质量和比例的精确估计值。

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