Abstract
The use of heating systems for new-born piglets can prevent major losses in the first 5 weeks of life. The present study had the objective of evaluating three heating systems in creeps for new-born piglets, being: floor-heated floor with circulating water (HF), incandescent lamp type SPOT 40 W (L) and incandescent lamp type SPOT 40 W plus black metal plate (LP). The variables evaluated were piglet performance (total weight gain and mortality), bioclimatic data (temperature and relative air humidity), animal behaviour and economic revenue. Bioclimatic data were recorded in the external environment, in the maternity and in the interior of each shelter/creep for 21 days, three times a day, as well as the capture of photographic images for analysis of the animals’ disposal. The mean temperature of the retractors, the weight at weaning and the weight gain were higher in the HF treatment. Treatment HF improved the percentage of dispersed animals and provided the best thermal environment and the highest revenue at the time of the commercialization of the piglets.
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References
ABPA, Associação Brasileira de Proteína Animal. Relatório Anual (2015) http://abpa-br.com.br/setores/avicultura/publicacoes/relatorios-anuais/2015. Accessed 04 August 2015
Bortolozzo FP, Kummer ABHP, Lesskiu PE, Wentz I (2011) Estratégias de redução do catabolismo lactacional manejando a ambiência na maternidade. https://www.yumpu.com/pt/document/view/5513889/estrategias-de-reducao-do-catabolismo-lactacional-suinotec. Accessed 04 August 2015
Damasceno FA, Soares CM, Oliveira CEA, Oliveira JL, Oliveira MCTB (2017) Evaluation of behavior in piglets using digital image processing. ASABE Annual International Meeting. https://doi.org/10.13031/aim.201700246
Damgaard BM, Malmkvist J, Pedersen LJ, Jensen KH, Thodberg K, Jørgensen E, Juul-Madsen HR (2009) The effects of floor heating on body temperature, water consumption, stress response and immune competence around parturition in loose-housed sows. Res Vet Sci 86(1):136–145. https://doi.org/10.1016/j.rvsc.2008.05.003
Edwards AS, Baxter EM (2014) Piglet mortality: causes and prevention. In: Farmer C (ed) The gestating and lactating sow. Wageningen Academic, Wageningen, p 253
Fernandes FC, Moreira RF, Longui FC, Rinaldi PC, Siqueira WC (2011) Efeito do aquecimento e resfriamento de pisos no desempenho de matrizes e leitões. Rev Ceres 58:701–709. https://doi.org/10.1590/S0034-737X2011000600004
Ferreira RA (2015) Maior produção com melhor ambiente: Para aves, suínos e bovinos. Viçosa
Ferreira RA, Chiquieri J, Mendonça PP, Melo TV, Cordeiro MD, Soares RTRN (2007) Comportamento e parâmetros fisiológicos de leitões nas primeiras 24 horas de vida. Ciênc agrotec 31:1845–1849. https://doi.org/10.1590/S1413-70542007000600036
Freitas LCSR, Campos AT, Schiassi L, Yanagi-Junior T, Cecchin D (2017) Fuzzy index for swine thermal comfort at nursery stage based on behavior. DYNA 84(203):201–207. https://doi.org/10.15446/dyna.v84n203.56698
Geers R, Goedseels V, Parduyns G, Vercruysse G (1986) The group postural behaviour of growing pigs in relation to air velocity, air and floor temperature. Appl Anim Behav Sci 16:353–362. https://doi.org/10.1016/0168-1591(86)90007-9
Herpin P, Damon M, Dividich JL (2002) Development of thermoregulation and neonatal survival in pigs. Livest Prod Sci 78:25–45. https://doi.org/10.1016/S0301-6226(02)00183-5
Hrupka BJ, Leibbrandt VD, Crenshaw TD, Benevenga NJ (2000) The effect of thermal environment and age on neonatal pig behavior. J Anim Sci 78:583–591
Kirkden RD, Broom DM, Andersen IL (2014) Piglet mortality: management solutions. J Anim Sci 91:3361–3389. https://doi.org/10.2527/jas2012-5637
Laureano DF, Volpato A, Simon LB, Grosskopf RK, Lima J, Oltramari CE, Nunes MLA, Müller LKF (2014) Avaliação fisiológica de leitões em diferentes sistemas de Aquecimento de escamoteador. XXIV Congresso Brasileiro de Zootecnia. Vitória-ES
Machado ST, Nääs IA, Reis JGM, Caldara FR, Santos RC (2016) Sows and piglets thermal comfort: a comparative study of the tiles used in the farrowing housing. Eng Agríc 36(6):996–1004. https://doi.org/10.1590/1809-4430-eng.agric.v36n6p996-1004/2016
Mendes AS, Moura DJ, Nääs IA, Bender JR (2013) Natural ventilation and surface temperature distribution of piglet crate heated floors. Arq Bras Med Vet Zootec 65:477–484. https://doi.org/10.1590/S0102-09352013000200025
MME (2011) Ministério de Minas e Energia. http://www.mme.gov.br. Accessed 4 August 2015
Moi M, Nääs IA, Caldara FR, Paz ICLA, Garcia RG, Cordeiro AFS, Seno LO (2013) Vocalization as a welfare indicative for pigs subjected to stress situations. Arq Bras Med Vet Zootec 67(3):837–845. https://doi.org/10.1590/1678-4162-7056
Pandorfi H, Silva IJO, Moura DJ, Sevegnani KB (2004) Análise de Imagem Aplicada ao Estudo do Comportamento de Leitões em Abrigo Escamoteador. Eng. Agríc. 24:274–284. https://doi.org/10.1590/S0100-69162004000200005
Pandorfi H, Silva IJO, Moura DJ, Sevegnani KB (2005) Microclima de abrigos escamoteadores para leitões submetidos a diferentes sistemas de aquecimento no período de inverno. Rev bras eng agric ambient 9:99–106. https://doi.org/10.1590/S1415-43662005000100015
Pandorfi H, Silva IJO, Guiselini C, Piedade SMS (2007) Uso da lógica fuzzy na caracterização do ambiente produtivo para matrizes gestantes. Eng Agríc 27(1):83–92. https://doi.org/10.1590/S0100-69162007000100001
Pedersen LJ, Malmkvist J, Jørgensen E (2007) The use of a heated floor area by sows and piglets in farrowing pens. Appl Anim Behav Sci 103(1–2):1–11. https://doi.org/10.1016/j.applanim.2006.03.015
Pedersen LJ, Berg P, Jorgensen G, Andersen IL (2011) Neonatal piglet traits of importance for survival in crates and indoor pens. J Anim Sci 89:1207–1218. https://doi.org/10.2527/jas.2010-3248
Pedersen LJ, Malmkvist J, Jørgensen E (2006) The use of a heated floor area by sows and piglets in farrowing pens. Appl Anim Behav Sci 103:1–11. https://doi.org/10.1016/j.applanim.2006.03.015
R CORE TEAM (2016) R: A language and environment for statistical computing. R Foundation for statistical computing, Vienna, Austria. https://www.Rproject.org/. Accessed 27 June 2015
Sabino LA, Abreu PG, Sousa VR Jr, Abreu VMN, Lopes LS (2012) Comparação de dois modelos de escamoteadores sobre o desempenho dos leitões. Acta Sci Anim Sci 34:21–25. https://doi.org/10.4025/actascianimsci.v34i1.11675
Sabino LA, Abreu PG, Sousa VR Jr, Abreu VMN, Coldebella A (2015) Construction material interference on air temperature and humidity inside the piglet creep area. Energ Agric 30:338–343. https://doi.org/10.17224/EnergAgric.2015v30n4p338-343
Santiago PR, Martínez-Burnes J, Mayagitia AL, Ramírez-Necoechea R, Mota-Rojas D (2018) Relationship of vitality and weight with the temperature of newborn piglets born to sows of different parity. Liv sci 220:26–31. https://doi.org/10.1016/j.livsci.2018.12.011
Sarubbi J, Rossi LA, Moura DJO, Rafael A, David E (2010) Utilização de energia elétrica em diferentes sistemas de aquecimento para leitões desmamados. Eng Agríc 30(6):1003–1011. https://doi.org/10.1590/S0100-69162010000600002
Schormann R, Hoy S (2006) Effects of room and nest temperature on the preferred lying place of piglets. Appl Anim Behav Sci 101:369–374. https://doi.org/10.1016/j.applanim.2006.02.003
Silva IJO, Pandorfi H, Piedade SMS (2005) Uso da Zootecnia de Precisão na Avaliação do Comportamento de Leitões Lactentes Submetidos a Diferentes Sistemas de Aquecimento. R Bras Zootec 34:220–229. https://doi.org/10.1590/S1516-35982005000100026
Sobestiansky J, Wentz I, Silveira PRS, Sesti LAC (2008) Suinocultura Intensiva: Produção, Manejo e Saúde do Rebanho. Embrapa, Brasília
St-Pierre NR, Cobanov B, Schnitkey G (2003) Economic losses from heat stress by US livestock industries. J Dairy Sci 86:E52–E77. https://doi.org/10.3168/jds.S0022-0302(03)74040-5
Tummaruk P, Nuntapaitoon M, Muns R (2017) Management strategies to reduce piglet pre-weaning mortality. Thai J Vet Med Suppl 47:S17–S20
USDA, United States Department of Agriculture (2015) Livestock and poultry: World Markets and Trade. https://www.fas.usda.gov/data/livestock-and-poultry-world-markets-and-trade. Accessed 04 August 2015
Vasdal G, Wheeler EF, Boe KE (2009a) Effect of infrared temperature on thermoregulatory behaviour in suckling piglets. Animal 3:1449–1454. https://doi.org/10.1017/S1751731109990309
Vasdal G, Andersen IL, Pedersen LJ (2009b) Piglet use of the creep area—effects of breeding value and farrowing environment. Appl Anim Behav Sci 120:62–67. https://doi.org/10.1016/j.applanim.2009.05.014
Vasdal G, Glarum M, Melisova M, Boe KE, Broom DM, Andersen IL (2010) Increasing the piglets’ use of the creep area. Appl Anim Behav Sci 125:96–102. https://doi.org/10.1016/j.applanim.2010.04.010
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Appreciation to Fundação Araucária for the scholarship granted to the fourth author.
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Sulzbach, J.J., Mendes, A.S., Possenti, M.A. et al. Evaluation of different heating systems for new-born swine. Int J Biometeorol 64, 1473–1479 (2020). https://doi.org/10.1007/s00484-020-01925-w
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DOI: https://doi.org/10.1007/s00484-020-01925-w