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    المصدر: Journal MVZ Cordoba; Vol. 27 No. 1 (2022): Journal MVZ Cordoba; 27(1) January-April 2022; e2121 ; Revista MVZ Córdoba; Vol. 27 Núm. 1 (2022): Revista MVZ Córdoba; 27(1) Enero-abril 2022; e2121 ; 1909-0544 ; 0122-0268 ; 10.21897/rmvz.v27.n1.2022

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    Book

    المساهمون: Alexandrino, Emerson

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    Relation: COSTA, Alan Feliciano Castro da. Utilização da Silagem de Capim Mombaça na Alimentação de Bovinos em Recria. 2017. 21 f. TCC (Graduação) - Curso Zootecnia, Universidade Federal do Tocantins, Araguaína, 2017.; http://hdl.handle.net/11612/5859

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    Dissertation/ Thesis

    المؤلفون: Montoya Uribe, Sebastián

    المساهمون: Barahona Rosales, Rolando, Correa Londoño, Guillermo Antonio, Biotecnología Animal, Barahona Rosales, Rolando 0000-0002-4246-7835, Correa Londoño, Guillermo Antonio 0000-0001-7020-2546

    جغرافية الموضوع: Colombia

    وصف الملف: 140 páginas; application/pdf

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Biometeorol. 64, 881–888.; Calle, Z., Murgueitio, E., Chará, J. 2012 Integrating forestry, sustainable cattle-ranching and landscape restoration. In: Unasylva, The Power of Forests. Food and Agriculture Organization of the United Nations (FAO) Vol 63/239:31-40, Rome.; Chara J, Reyes E, Peri P, Otte J, Arce E, Schneider F (2019). Silvopastoral Systems and their Contribution to Improved Resource Use and Sustainable Development Goals. Evidence from Latin America. FAO, CIPAV. Editorial CIPAV. Cali. Columbia.; Gamarra, ´E.L., Morais, M.G., Almeida, R.G., Paludetto, N.A., Pereira, M., Oliveira, C.C., 2017. Beef cattle production in established integrated systems. Semin. Cienc. Agrar. 38 (5), 3241–3252.; Giro, A., Pezzopane, J.R.M., Barioni Jr., W., et al., 2019. Behaviour and body Surface temperature of beef cattle in integrated crop-livestock systems with or without tree shading. Sci. Total Environ. 684, 587–596.; Huertas, S. M., Bobadilla, P. E., Bueno, H. J., Cesar, D., Piaggio, J. M., Gil, A. D. 2018. Environmental Conditions in a Temperate Weather Silvopastoral System vs. Natural Grassland and their Impact on Animal Beef Production. Biomed. J. Sci. Tech. Res. 3:1–2.; Karvatte Junior, N., Myage, E.S., de Oliveira, C.C., Barreto, C.D., Mastelaro, A.P., Bungenstab, D.J., Alves, F.V., 2020. Infrared thermography for microclimate assessment in agroforestry systems. Sci. Total Environ. 731; Lopes, L.B., Eckstein, C., Pina, D.S., Carnevalli, R.A., 2016. The influence of trees on the thermal environment and behaviour of grazing heifers in Brazilian Midwest. Trop. Anim. Health Prod. 48, 755–761.; Morales, A. M. T., Ceballos, M. C., Londoño, G. C., Cardona, C. A. C., Ramírez, J. F. N., da Costa, M. J. R. P. 2017. Welfare of cattle kept in intensive silvopastoral systems: A case report. Rev. Bras. Zootec. 46:478–488.; Souza, C.F., Tinˆoco, I.F.F., Baˆeta, F.C., et al., 2002. Evaluation of the alternative materials to make a globe thermometer. Ciˆenc. agrotec. 26 (1), 157–164. ISSN: 1413-7054.; Oliveira, C.C., Villela, S.D., de Almeida, R.G., Alves, F.V., Behling-Neto, A., Martins, P.G. M. de A., 2014. Performance of Nellore heifers, forage mass, and structural and nutritional characteristics of Brachiaria brizantha grass in integrated production systems. Trop. Anim. Health Prod. 46 (1), 167–172.; Uribe F., Zuluaga A.F., Valencia L., Murgueitio E., Zapata A., Solarte L., et al. Establecimiento y manejo de sistemas silvopastoriles. Manual 1, Proyecto Ganadería Colombiana Sostenible. GEF, BANCO MUNDIAL, FEDEGAN, CIPAV, FONDO ACCION, TNC. Bogotá, Colombia. 78p.; Vizzotto, E.F., Fischer, V., ThalerNeto, A., Abreu, A.S., Stumpf, M.T., Werncke, D., Schmidt, F.A., McManus, C.M., 2015. Access to shade changes behavioural and physiological attributes of dairy cows during the hot season in the subtropics. Animal 9, 1559–1566. https://doi.org/10.1017/S1751731115000877.; Albright, J. L., 1982. Dairy industry developments that improved the welfare of dairy cows and veal production. Feedstuffs 54(15):23.; Albright, J. L., 1987. Dairy Animal Welfare: Current and Needed Research. Journal of Dairy Science, 70(12). https://doi.org/10.3168/jds.S0022-0302(87)80345-4; Albright, J. L., 1993. Nutrition, feeding and calves. Feeding behavior of dairy cattle. Journal of Dairy Science, v.76, n.2, p.485-498.; Albright, J. L., Stricklin, W. R., 1989. Recent developments in the provision for cattle welfare. New Techniques in Cattle Production. C.J.C. Phillips, Ed. Butterworths, London, Engl., 149.; Allden, W. G., McDWhittaker, I. A., 1970. The determinants of herbage intake by grazing sheep: The interrelationship of factors influencing herbage intake and availability. Australian Journal of Agricultural Research, 21(5). https://doi.org/10.1071/AR9700755; Almeida, R. G., Barbosa, R. A., Zimmer, A. H., Kichel, A. N., et al., 2019. Forage in integrated cattle production systems. In: Bungenstab, D.J. (Ed.), ICLF: Innovation With Crop, Livestock and Forest Integration. Embrapa, Brasília, DF, p. 835.; Alvarenga, C. A. F., Euclides, V. P. B., Montagner, D. B., Sbrissia, A. F., Barbosa, R. A., Araújo, A. R. 2020. Animal performance and sward characteristics of Mombaça guine a grass pastures subjected to two grazing frequencies. Trop. Grassl. Forrajes Trop. 8, 1–10. https://doi.org/10.17138/tgft(8)1-10.; Andrade, C., Carneiro, J., Valentim, J., 2002. Efeito do sombreamento sobre as taxas de acumulaçao de matéria seca de quartas gramíneas forrageiras. Anais Da Reuniao Annual Da Sociedade Brasileira de Zootecnia 39.; Andrade, A.S., Santos, P.M., Pezzopane, J.R.M., De Araujo, L.C., Pedreira, B.C., Pedreira, C.G.S., Marin, F.R., Lara, A.S., 2015. Simulating tropical forage growth and biomass accumulation: an overview of model development application. Grass and Forage Science. 71(1): 54-65.; Ansell, R. H., 1981. 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Reservas de carbono y diversidad de árboles en sistemas silvopastoriles de árboles dispersos en Chiapas, México. Sistema Agrofor 93:213–227; Baliscei, M. A., et al., 2012. Comportamiento del ganado vacuno y el microclima con y sin sombra. Acta Sci. 34 (4), 409-415.; Balch, C. C., 1955. Sleep in ruminants. Nature (Lond.) 175:940.; Bareille, N., Beaudeau, F., Billon, S., Robert, A., Faverdin, P., 2003. Effects of health disorders on feed intake and milk production in dairy cows. Livestock Production Science, 83(1). https://doi.org/10.1016/S0301-6226(03)00040-X; Bargo, F., Muller, L. D., Kolver, E. S., Delahoy, J. E., 2003. Invited review: Production and digestion of supplemented dairy cows on pasture. In Journal of Dairy Science (Vol. 86, Issue 1). https://doi.org/10.3168/jds.S0022-0302(03)73581-4; Barreto, C. D., Alves, F. V., de Oliveira Ramos, C. E. C., De Paula Leite, M. C., Leite, L. C., Junior, N. K., 2020. Infrared thermography for evaluation of the environmental thermal comfort for livestock. International Journal of Biometeorology, 64(5). https://doi.org/10.1007/s00484-020-01878-0; Bassham, J. A., Benson, A. A., Calvin, M., 1950. The path of carbon in photosynthesis viii. the rôle of malic acid. The Path of Carbon in Photosynthesis VIII. The Role of MalicAcid, 185(2).; Bielharz, R. G., 1983. Social dominance: reply to G. 1. and L. A. Syme. Letter to the Editor. Appl. Anim. Ethol. 11:67.; Bond, T. E., Kelly, C. F., 1955. The globe thermometer in agricultural research. Agricultural Engineering, 36(4).; Bransby, D. I., Matches, A. G., Krause, G. F., 1977. Disk Meter for Rapid Estimation of Herbage Yield in Grazing Trials 1. Agronomy Journal, 69(3). https://doi.org/10.2134/agronj1977.00021962006900030016x; Briske, D. D., 1991. Developmental morphology and physiology of grasses. Grazing Management: An Ecological Perspective.; Brownlee, A., 1950. 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