AMB_2024v14n2

Animal Molecular Breeding 2024, Vol.14, No.2, 187-195 http://animalscipublisher.com/index.php/amb 195 Palma-Molina P., Hennessy T., O'Connor A.H., Onakuse S., O'Leary N., Moran B., and Shalloo L., 2023, Factors associated with intensity of technology adoption and with the adoption of 4 clusters of precision livestock farming technologies in Irish pasture-based dairy systems, Journal of Dairy Science, 106(4): 2498-2509. Schillings J., Bennett R., and Rose D., 2021, Exploring the potential of precision livestock farming technologies to help address farm animal welfare, Frontiers in Animal Science, 2: 639678. https://doi.org/10.3389/fanim.2021.639678 Sharma A., Jain A., Gupta P., and Chowdary V., 2021, Machine learning applications for precision agriculture: a comprehensive review, IEEE Access, 9: 4843-4873. https://doi.org/10.1109/ACCESS.2020.3048415 Silva S.R., Sacarrão-Birrento L., Almeida M., Ribeiro D., Guedes C., Montaña J., Pereira A., Zaralis K., Geraldo A., Tzamaloukas O., Cabrera M., Castro N., Argüello A., Hernández-Castellano L., Alonso-Diez Á., Martín M., Cal-Pereyra L., Stilwell G., and Almeida A., 2022, Extensive sheep and goat production: the role of novel technologies towards sustainability and animal welfare, Animals, 12(7): 885. https://doi.org/10.3390/ani12070885 Șonea C., Gheorghe-Irimia R.A., Tăpăloagă D., Gurău M., Udrea L., and Tăpăloagă P., 2023, Optimizing animal nutrition and sustainability through precision feeding: a mini review of emerging strategies and technologies. annals of "valahia" university of târgovişte, Agriculture, 15(2): 7-11. https://doi.org/10.2478/agr-2023-0011 Stygar A.H., Gómez Y., Berteselli G.V., Costa E.D., Canali E., Niemi J.K., Llonch P., and Pastell M., 2021, A systematic review on commercially available and validated sensor technologies for welfare assessment of dairy cattle, Frontiers in Veterinary Science, 8: 634338. https://doi.org/10.3389/fvets.2021.634338 Tedeschi L.O., Greenwood P.L., and Halachmi I., 2021, Advancements in sensor technology and decision support intelligent tools to assist smart livestock farming, Journal of Animal Science, 99(2): skab038. https://doi.org/10.1093/jas/skab038 Tzanidakis C., Simitzis P., Arvanitis K., and Panagakis P., 2021, An overview of the current trends in precision pig farming technologies, Livestock Science, 249: 104530. https://doi.org/10.1016/J.LIVSCI.2021.104530 Vaintrub M.O., Levit H., Chincarini M., Fusaro I., Giammarco M., and Vignola G., 2020, Review: precision livestock farming, automats and new technologies: possible applications in extensive dairy sheep farming, Animal, 15(3): 100143. https://doi.org/10.1016/j.animal.2020.100143 Vranken E., and Berckmans D., 2017, Precision livestock farming for pigs, Animal Frontiers, 7: 32-37. https://doi.org/10.2527/AF.2017.0106 Werkheiser I., 2018, Precision livestock farming and farmers’ duties to livestock, Journal of Agricultural and Environmental Ethics, 31: 181-195. https://doi.org/10.1007/S10806-018-9720-0 Zhang M.J., Wang X.P., Feng H., Huang Q.H., Xiao X.Q., and Zhang X., 2021, Wearable internet of things enabled precision livestock farming in smart farms: A review of technical solutions for precise perception, biocompatibility, and sustainability monitoring, Journal of Cleaner Production, 312: 127712 https://doi.org/10.1016/J.JCLEPRO.2021.127712 Disclaimer/Publisher’s Note The statements, opinions, and data contained in all publications are solely those of the individual authors and contributors and do not represent the views of the publishing house and/or its editors. The publisher and/or its editors disclaim all responsibility for any harm or damage to persons or property that may result from the application of ideas, methods, instructions, or products discussed in the content. Publisher remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

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