Predicting Body Weight in Pre-Weaned Holstein–Friesian Calves Using Morphometric Measurements

Author:

Silva Flávio G.1234ORCID,Carreira Emanuel23,Ramalho Joana M.5,Correia Tomás6,Meira Marília3,Conceição Cristina23ORCID,Silva Severiano R.1ORCID,Pereira Alfredo M. F.23ORCID,Cerqueira Joaquim L.14ORCID

Affiliation:

1. Veterinary and Animal Research Centre (CECAV) and Associate Laboratory for Animal and Veterinary Sciences (AL4AnimalS), Department of Animal Science, Universidade de Trás-os-Montes e Alto Douro, Quinta de Prados, 5000-801 Vila Real, Portugal

2. MED-Mediterranean Institute for Agriculture, Environment and Development and CHANGE-Global Change and Sustainability Institute, Universidade de Évora, Pólo da Mitra, Ap. 94, 7006-554 Évora, Portugal

3. Department of Animal Science, Universidade de Évora, Pólo da Mitra, Ap. 94, 7006-554 Évora, Portugal

4. Center for Research and Development in Agrifood Systems and Sustainability (CISAS), Instituto Politécnico de Viana do Castelo, Agrarian School of Ponte de Lima, Rua D. Mendo Afonso, 4990-706 Ponte de Lima, Portugal

5. Department of Veterinary Medicine, Universidade de Évora, Pólo da Mitra, Ap. 94, 7006-554 Évora, Portugal

6. Independent Researcher, Malagueira, 7000-407 Évora, Portugal

Abstract

Regularly weighing calves helps to assess the efficiency of the rearing period and contributes to animal welfare by allowing more precise feeding and medication application in dairy farming, but many farmers do not weigh their calves regularly. Improving the feasibility of this process is, therefore, important. The use of morphometric measurements has been used to estimate the weight of cattle. However, many studies have focused on adult animals or used a wide age range. As calves experience allometric tissue growth, specific models for certain ranges might be more accurate. Therefore, the aim of this work was to develop a weight estimation model specific for pre-weaned Holstein–Friesian calves using morphometric measurements and to compare the model with another equation previously validated for the same breed with young and adult animals. From four dairy farms, 237 measurements of body weight, heart girth, abdominal girth, hip height, withers height, and body length were taken from Holstein–Friesian male and female calves. Linear and non-linear regression analysis was used to test the relationship between body weight and morphometric measurements, with age, sex, and farm as possible explanatory variables. Selected models were compared with goodness of fit and agreement tests. The final model was able to accurately predict body weight (R2 = 0.96) with a mean difference of −1.4 ± 3.24 kg. Differences in the relationship between body weight and morphometric traits were observed between farms, but not between males and females. The genetics of the animal population at farm level may be responsible for this variability and further studies are needed to understand this variability and improve weight prediction models. The developed model was able to perform better in the agreement tests than the previously validated model for Holstein–Friesian animals, suggesting that different equations should be used depending on the growth phase the animal is in. In addition, a web application has been developed to facilitate the use of the developed model by farmers. This avoids the use of calibrated weight bands, which are usually calibrated for a broader age range or for beef cattle.

Funder

FCT—Foundation for Science and Technology

Publisher

MDPI AG

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