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Eco-DREAMS-S: modelling the impact of climate change on milk performance in organic dairy farms

Published online by Cambridge University Press:  17 February 2015

A. Ruete
Affiliation:
ArtDatabanken, Swedish University of Agricultural Sciences, 750 07 Uppsala, Sweden
A. Velarde
Affiliation:
Animal Welfare Subprogram, IRTA, 17121 Monells, Girona, Spain
I. Blanco-Penedo*
Affiliation:
Animal Welfare Subprogram, IRTA, 17121 Monells, Girona, Spain
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Abstract

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Type
Full Paper
Copyright
© The Animal Consortium 2015 

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References

Berman, A 2005. Estimates of heat stress relief needs for Holstein dairy cows. Journal of Animal Sciences 83, 13771384.Google Scholar
Bertocchi, L, Vitali, A, Lacetera, N, Nardone, A, Varisco, G and Bernabucci, U 2014. Seasonal variations in the composition of Holstein cow’s milk and temperature humidity index relationship. Animal 8, 667674.Google Scholar
Blanco-Penedo, I, Perea, J, Cerqueira, JOL and Payan-Carreira, R 2013. Resetting priorities for a sustainable dairy farming under global changing (Chapter 2), ISBN: 978-1-62618-574-6. Nova Science Publishers Inc., New York 5390.Google Scholar
Cerqueira, JOL, Araújo, JP, Blanco-Penedo, I, Cantalapiedra, J, Silvestre, M and Silva, SR 2013. Estudio de indicadores fisiológicos como predictores de estrés térmico de vacas lecheras en Norte de Portugal (Study of physiological indicators as predictors of heat stress of dairy cows in Northern Portugal). In XV Jornadas sobre Producción Animal, Zaragoza (ed. JHC Lacosta, IC Pueyo, MJ Torrens, JA Rodriguez, LV Aguado, BP Doblao, CC Margolles and JB Teres). Tomo I 4042. Asociacion Interprofesional para el Desarrollo Agrario, Zaragoza, Spain. ISBN Tomo I: 978-84-695-7684-7.Google Scholar
Fiksel, J 2006. Sustainability and resilience: toward a systems approach. Sustainability: Science, Practice, and Policy 2, 1421.Google Scholar
Kadzere, CT, Murphy, MR, Silanikove, N and Maltz, E 2002. Heat stress in lactating dairy cows: a review. Livestock Production Science 77, 5991.Google Scholar
Koçak, Ö and Ekiz, B 2008. Comparison of different lactation curve models in Holstein cows raised on a farm in the south-eastern Anatolia region. Archiv Tierzucht, Dummerstorf 51, 329337.Google Scholar
Niggli, U, Slabe, A, Schmid, O and O’Connell, JM 2008. Food, fairness & ecology: an organic research agenda for a sustainable future. 16th IFOAM Organic World Congress, Modena, Italy, 16–20 June. Retrieved October 10, 2014, from http://www.orgprints.org/13513.Google Scholar
Pennington, JA and Van Devender, K 2004. Heat stress in dairy cattle. UACES Publications, University of Arkansas, Little Rock, AR, USA.Google Scholar
Sundrum, A 2001. Organic livestock farming: a critical review. Livestock Production Science 67, 207215.Google Scholar
Villagómez, AME, Castillo, RH, Villa-Godoy, A, Román, PH and Vázquez, PC 2000. Influencia estacional sobre el ciclo estral y el estro en hembras cebú mantenidas en clima tropical. Revista Técnica Pecuaria en México 38, 89103.Google Scholar
Vitali, A, Segnalini, M, Bertocchi, L, Bernabucci, U, Nardone, A and Lacetera, N 2009. Seasonal pattern of mortality and relationships between mortality and temperature-humidity index in dairy cows. Journal of Dairy Science 92, 37813790.Google Scholar
Wood, PDP 1967. Algebraic model of lactation curve in cattle. Nature 216, 164165.Google Scholar