|
Reference
|
|
Alexander, P., Moran, D., Rounsevell, M.D.A., Smith, P. (2013) Modelling the perennial energy crop market: the role of spatial diffusion. Journal of The Royal Society Interface, 10: 20130656
|
|
Almqvist, V., Berg, C., Hultgren, J. (2021) Reliability of remote post-mortem veterinary meat inspections in pigs using augmented-reality live-stream video software. Food Control, 125: 107940
|
|
Benjamin, M., Yik, S. (2019) Precision livestock farming in swine welfare: a review for swine practitioners. Animals, 9(4): 133
|
|
Berckmans, D. (2017) General introduction to precision livestock farming. Animal Frontiers, 7(1): 6-11
|
|
Blagojević, B., Nesbakken, T., Alvseike, O., Vågsholm, I., Antic, D., Johler, S., Houf, K., Meemken, D., Nastasijević, I., Vieira, P.M., Antunovic, B., Georgiev, M., Alban, L. (2021) Drivers, opportunities, and challenges of the European risk-based meat safety assurance system. Food Control, 124: 107870
|
|
Bohrer, B.M. (2017) Review: Nutrient density and nutritional value of meat products and non-meat foods high in protein. Trends in Food Science & Technology, 65: 103-112
|
|
Burciaga-Robles, L.O., Holland, B.P., Step, D.I., Krehbiel, C.R., Mcmillen, G.I., Richards, C.J., Sims, L.E., Jeffers, J.D., Namjou, K., Mccann, P.J. (2009) Evaluation of breath biomarkers and serum haptoglobin concentration for diagnosis of bovine respiratory disease in heifers newly arrived at a feedlot. American Journal of Veterinary Research, 70(10): 1291-1298
|
|
Carni Sostenibili (2020) The bioactive compounds of the meat. https://www.carnisostenibili.it/en/the-bioactivecompounds-of-meat/, accessed on August 23, 2021
|
|
Ciuris, C., Lynch, H.M., Wharton, C., Johnston, C.S. (2019) A comparison of dietary protein digestibility, based on DIAAS scoring, in vegetarian and non-vegetarian athletes. Nutrients, 11: 3016
|
|
Cole, M.B., Augustin, M.A., Robertson, M.J., Manners, J.M. (2018) The science of food security. NPJ Science of Food, 2(14)
|
|
Corrin, T., Papadopoulos, A. (2017) Understanding the attitudes and perceptions of vegetarian and plant-based diets to shape future health promotion programs. Appetite, 109: 40-47
|
|
ECDC (2017) Surveillance of antimicrobial resistance in Europe -Annual report of the European Antimicrobial Resistance Surveillance Network (EARS-Net) 2017. Stockholm, ISBN 978-92-9498-279-7
|
|
EFSA (2011) Technical specifications on harmonised epidemiological indicators for public health hazards to be covered by meat inspection of swine. EFSA Journal, 9(10): 2371
|
|
EFSA (2013) Scientific Opinion on the public health hazards to be covered by inspection of meat (solipeds). EFSA Journal, 11(6): 3263
|
|
EFSA (2020) Pathogenicity assessment of Shiga toxinproducing Escherichia coli (STEC) and the public health risk posed by contamination of food with STEC. EFSA Journal, 18(1): 5967
|
|
EFSA (2019) The European Union One Health 2018 Zoonoses Report. EFSA Journal, 17(12): 5926
|
|
el Idrisi, A.H., Dhingra, M., Larfaoui, F., Johnson, A., Pinto, J., Sumption, K. (2021) Digital technologies and implications for Veterinary Services. Revue scientifique et technique (International Office of Epizootics), 40(2): 1-24
|
|
Euromonitor (2020) Digital Traceability: A Future of Transparency in Food Sourcing. https://www.euromonitor.com/digital-traceability-afuture-of-transparency-in-food-sourcing/report, accessed on September 24, 2021
|
|
European Commission (2014) Commission regulation (EC) No 218/2014 of 7 March 2014 amending Annexes to Regulations (EC) No 853/2004 and (EC) No 854/2004 of the European Parliament and of the Council and Commission Regulation (EC) No 2074/2005. Official Journal of the European Union, 69: 95-98, http://eurlex.europa. eu
|
|
Fang, Z., Wu, W., Lu, X., Zeng, L. (2014) Lateral flow biosensor for DNA extraction-free detection of Salmonella based on aptamer mediated strand displacement amplification. Biosens Bioelectron, 56: 192-197
|
|
FAO (2020) Meat and Meat Products. http://www.fao.org/ag/againfo/themes/en/meat/home. html , accessed on August 23, 2021
|
1
|
FAO (2009) How to Feed the World in 2050. http://www.fao.org/fileadmin/templates/wsfs/docs/ex pert_paper/How_to_Feed_the_World_in_2050.pdf, accessed on September 23, 2021
|
|
Fend, R., Geddes, R., Lesellier, S., Vordermeier, H.-.M., Corner, L.A.L., Gormley, E., Costello, E., Hewinson, R.G., Marlin, D.J., Woodman, A.C., Chambers, M.A. (2005) Use of an electric nose to diagnose Mycobacterium bovis infection in badgers and cattle. Journal of Clinical Microbiology, 43(4): 1745-1751
|
|
Fernandes, A.F.A., Dórea, J.R.R., de Magalhães, R.G.J. (2020) Image analysis and Computer Vision Applications in Animal Sciences: An overview. Frontiers in Veterinary Science, 7: 551269
|
|
Halachmi, I. (2015) Precision livestock farming applications. Wageningen Academic Publishers, 328, ISBN: 978 90-8686-268-9
|
|
Herinaina, A.I., Bindelle, J., Mercatoris, B., Lebeau, F. (2016) A review on the use of sensors to monitor cattle jaw movements and behaviour when grazing. Biotechnology, Agronomy and Society and Environment, 23(S1): 273-286
|
|
Hill, A., Brouwer, A., Donaldson, N., Lambton, S., Buncic, S., Griffiths, I. (2013) A risk and benefit assessment for visual-only meat inspection of indoor and outdoor pigs in the United Kingdom. Food Control, 30: 255-264
|
|
Jakubowski, T. (2015) Temperature Monitoring in the Transportation of Meat Products. Journal of Food Processing & Technology, 6(10)
|
|
Knobloch, H., Kohler, H., Commander, N., Reinhold, P., Turner, C., Chambers, M., Pardo, M., Sberveglieri, G. (2009) Volatile organic compounds (VOC) analysis for disease detection: proof of principle for field studies detecting paratuberculosis and brucellosis. AIP Conference Proceedings, 195-197
|
|
Laca, E.A., Devries, M.F.W. (2000) Acoustic measurement of intake and grazing behaviour of cattle. Grass and Forage Science, 55(2): 97-104
|
|
Lalović, M., Krajišnik, T., Mašić, N. (2020) Body condition as an indicator of cow welfare. Acta agriculturae Serbica, vol. 25, br. 50, str. 187-192
|
|
Leopold, J.H., van Hooijdonk, R.T., Sterk, P.J., Abu-Hanna, A., Schultz, M.J., Bos, L.D. (2014) Glucose prediction by analysis of exhaled metabolites: A systematic review. BMC Anesthesiology, 14: 46
|
|
Loisel, J., Duret, S., Cornu'ejols, A., Cagnon, D., Tardet, M., Derens-Bertheau, E., Laguerre, O. (2021) Cold chain break detection and analysis: Can machine learning help?. Trends in Food Science & Technology, 112: 391-399
|
|
Manzano, M., Cecchini, F., Fontanot, M., et al. (2015) OLED-based DNA biochip for Campylobacter spp. detection in poultry meat samples. Biosensors and Bioelectronics, 66: 271-276
|
|
Martins, S.A.M., Martins, V.C., Cardoso, F.A., Germano, J., Rodrigues, M., Duarte, C., Bexiga, R., Cardoso, S., Freitas, P.P. (2019) Biosensors for On-Farm Diagnosis of Mastitis. Frontiers in Bioengineering and Biotechnology, 7(186): 1-19
|
|
Mason-D`croz, D., Bogard, J.R., Herrero, M., Robinson, S., Sulser, T.B., Wiebe, K., Willenbockel, D., Godfray, H.C.J. (2020) Modelling the global economic consequences of a major African swine fever outbreak in China. Nature Food, 1: 221-228
|
|
Mcafee, A.J., Mcsorley, E.M., Cuskelly, G.J., Moss, B.W., Wallace, J.M., Bonham, M.P., et al. (2010) Red meat consumption: An overview of the risks and benefits. Meat Science, 84(1): 1-13
|
|
Mohebi, E., Marquez, L. (2015) Intelligent packaging in meat industry: An overview of existing solutions. Journal of Food Science and Technology, 52(7): 3947-3964
|
|
Montrose, A., Creedon, N., Sayers, R., Barry, S., O`riordan, A. (2015) Novel single gold nanowire-based electrochemical immunosensor for rapid detection of bovine viral diarrhoea antibodies in serum. Journal of Biosensors and Bioelectronics, 6(3): 1-7
|
|
MSU (2018) Feeding the world in 2050 and beyond -Part 1: Productivity challenges. Michigan State University Extension, https://www.canr.msu.edu/news/feedingthe-world-in-2050-and-beyond-part-1, accessed on September 22, 2021
|
|
Nastasijevic, I., Veskovic, S., Milijasevic, M. (2020) Meat Safety: Risk based assurance systems and novel technologies. Meat Technology, 61(2): 97-119
|
|
Nastasijević, I., Milanov, D., Velebit, B., Djordjević, V., Swift, C., Painset, A., Lakićević, B. (2017) Tracking of Listeria monocytogenes in meat establishment using Whole Genome Sequencing as a food safety management tool: A proof of concept. International Journal of Food Microbiology, 257: 157-164
|
|
Nastasijević, I., Branković, L.I., Petrović, Z. (2019) Precision livestock farming in the context of meat safety assurance system. u: The 60 th International Meat Industry Conference MEATCON2019. IOP Conf. Series: Earth and Environmental Science, 333
|
|
Nastasijević, I., Proscia, F., Bošković, M., Glišić, M., Blagojević, B., Sorgentone, S., Kirbis, A., Ferri, M. (2020) The European Union control strategy for Campylobacter spp. in the broiler meat chain. Journal of Food Safety, 40(5)
|
|
Neethirajan, S., Tuteja, S.K., Huang, S.-.T., Kelton, D. (2017) Recent advancement in biosensors technology for animal and livestock health management. Biosensors and Bioelectronics, 98: 398-407
|
|
Neethirajan, S., Ragavan, K.V., Weng, X. (2018) Agro-defense: Biosensors for food from healthy crops and animals. Trends in Food Science & Technology, 73: 25-44
|
|
Neethirajan, S., Kemp, B. (2021) Digital Livestock Farming. Sensing and Bio-Sensing Research, 32: 100408
|
|
Norton, T., Chen, C., Larsen, M.L.V., Berckmans, D. (2019) Precision livestock farming: building 'digital representations' to bring the animals closer to the farmer. Animal, 13(12): 3009-3017
|
|
OECD (2016) Agricultural outlook 2016-2025. http://www.fao.org/3/a-BO100e.pdf, accessed on June 23, 2020
|
|
Raheem, D., Shishaev, M., Dikovitsky, V. (2019) Food System Digitalization as a Means to Promote Food and Nutrition Security in the Barents Region. Agriculture, 9(8): 168
|
|
Shang, L., Heckelei, T., Gerullis, M.K., Borner, J., Rasch, S. (2021) Adoption and diffusion of digital farming technologies - integrating farm-level evidence and system interaction. Agricultural Systems, 190: 103074
|
|
Sikorski, Z. (1990) Seafood: Resources, Nutritional, Composition, and Preservation. CRC Press, 1 st Edition, ISBN 9781003068419
|
|
Sofos, J. (2008) Challenges to meat safety in the 21st century. Meat Science, 78: 3-13
|
|
Tarasov, A., Gray, D.W., Tsai, M.Y., Shields, N., Montrose, A., Creedon, N., Lovera, P., O`riordan, A., Mooney, M.H., Vogel, E.M. (2016) A potentiometric biosensor for rapid on-site disease diagnostics. Biosensors and Bioelectronics, 79: 669-678
|
|
Torky, M., Hassanein, A.E. (2020) Integrating blockchain and the internet of things in precision agriculture: Analysis, opportunities, and challenges. Computers and Electronics in Agriculture, 178: 105476
|
|
Tullo, E., Finzi, A., Guarino, M. (2019) Review: Environmental impact of livestock farming and Precision Livestock Farming as a mitigation strategy. Science of the Total Environment, 650: 2751-2760
|
|
United Nations Department of Economic and Social Affairs (UNDESA) Population Division (2017) World population prospects: the 2017 revision, key findings and advanced tables. New York: UNDESA, Working paper No. ESA/P/WP/248, https://population.un.org/wpp/Publications/Files/WPP 2017_KeyFindings.pdf, accessed on September 22, 2021
|
|
Vidic, J., Manzano, M., Chang, C.M., Jaffrezic-Renault, N. (2017) Advanced biosensors for detection of pathogens related to livestock and poultry. Veterinary Research, 48(1): 1-22
|
|
Vongsawasdi, P., Noomhorm, A. (2015) Bioactive Compounds in Meat and their Functions. u: Noomhorm A., Ahmad I., Kumar A. [ur.] Functional Foods and Dietary Supplements: Processing Effects and Health Benefits, John Wiley & Sons, Ltd, 113-138
|
|
Wang, R., Wang, Y., Lassiter, K., Li, Y., Hargis, B., Tung, S., Berghman, L., Bottje, W. (2009) Interdigitated array microelectrode based impedance immunosensor for detection of avian influenza virus H5N1. Talanta, 79(2): 159-164
|
|
WHO (2020) Food safety. Key facts. http://www.who.int/news-room/factsheets/detail/food-safety, accessed on September 24, 2021
|
|
Wu, W., Zhao, S., Mao, Y., Fang, Z., Lu, X., Zeng, L. (2015) A sensitive lateral flow biosensor for Escherichia coli O157:H7 detection based on aptamer mediated strand displacement amplification. Analytica Chimica Acta, 25(861): 62-68
|
|
Yamaguchi, M., Matsuda, Y., Sasaki, S., Sasaki, M., Kadoma, Y., Imai, Y., Niwa, D., Shetty, V. (2013) Immunosensor with fluid control mechanism for salivary cortisol analysis. Biosensors and Bioelectronics, 41: 186-191
|
|
Yang, M., Caterer, N.R., Xu, W., Goolia, M. (2015) Development of a multiplex lateral flow strip test for foot-and-mouth disease virus detection using monoclonal antibodies. Journal of Virological Methods, 221: 119-126
|
|
Yoo, S.M., Lee, S.Y. (2016) Optical biosensors for the detection of pathogenic microorganisms. Trends in Biotechnology, 34: 7-25
|
|
|
|