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Estudo dos fatores clim?ticos e ambientais associados ? ocorr?ncia de carrapatos Amblyomma sculptum (Acari: Ixodidae) adultos na mesorregi?o metropolitana do Rio de Janeiro / Analysis of climatic and environmental factors associated to the occurrence of adult ticks Amblyomma sculptum (Acari: Ixodidae) in Rio de Janeiro Metropolitan mesoregion

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Previous issue date: 2015-02-23 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico - CNPq / This study evaluates the influence of climatic variables on the occurrence distribution of Amblyomma sculptum adult ticks in four sample areas in Serop?dica and Mangaratiba, two municipalities in Rio de Janeiro Metropolitan mesoregion. The data used is relative to tick sampling between the spring of 2008 and the winter of 2012. The climatic variables included in the study were mean temperature, relative humidity and rainfall, in the day of sampling and in the 15 days prior to each sampling. For the statistical analysis, four types of generalized linear models were used: Poisson, Negative Binomial, Quasi Poisson (?2) and Zero Inflated Poisson (ZIP). A total of 574 ticks were found, most of them in the autumn. The bivariate analysis between each one of the independent variables and the response variable, tick count, showed seven variables that were significant at least in two types of models (being ZIP one of them): temperature in the day before sampling, temperature between the 4th and 6th days prior to sampling, temperature between the 11th and 15th days prior, humidity in the day before sampling, humidity in 5th day before, humidity between the 9th and 12th days prior and rainfall in the 12th day prior to sampling. These variables were combined in the multivariate analysis, therewith, nine models were fitted. Analyzing the prevalence ratio (PR), Akaike Information Criterion (AIC), mean square of residuals (MSR) and correlation between expected Y and observed Y (Corr), the best model was chosen, with the following variables (PR [CI 90%]): temperature between the 11th and 15th days prior to sampling (1,06 [1,01; 1,11]), humidity in the day before (1,04 [1,02; 1,05]) and rainfall in the 12th day prior to sampling (0,97 [0,94; 0,99]). Regarding the fitted models, it was possible to notice that the most satisfactory parameters were presented by ZIP models, in which the MSR values were the lowest and Corr values were the highest. The bivariate analyzes performed as of ZIP models contrasted the fact that temperature acts as a protection factor for the occurrence of A. sculptum adult ticks in the day of sampling and in the two days before, but it acts as a risk factor form the 3rd to the 15thday before. Humidity and rainfall act as protection factors for tick occurrence as from the 3rd and the 5th day prior to sampling, respectively. In the days closer to sampling, these two latter variables did not show a definite conduct of risk or protection with respect to the studied tick occurrence. Within this context, we conclude that understanding the parameters responsible for controlling the life cycle of A. sculptum is essential to generate risk models of disease transmission / O presente estudo avalia a influ?ncia de vari?veis clim?ticas sob a distribui??o de ocorr?ncia de carrapatos Amblyomma sculptum adultos em quatro ?reas amostrais nos munic?pios de Serop?dica e Mangaratiba, na mesorregi?o Metropolitana do Rio de Janeiro. Foram utilizados dados referentes a coletas de carrapatos realizadas entre a primavera de 2008 e o inverno de 2012. As vari?veis clim?ticas consideradas foram temperatura m?dia, umidade relativa do ar e volume de precipita??o, no dia das coletas e nos 15 dias anteriores a cada coleta. Para a an?lise estat?stica, foram utilizados quatro tipos de modelos de regress?o lineares generalizados: Poisson, Binomial Negativa, Extra Poisson (?2) e Poisson Inflacionada de Zeros. Foram coletados, ao todo, 574 carrapatos, sendo a maioria no outono. A an?lise bivariada entre cada uma das vari?veis explicativas e a vari?vel de desfecho, contagem de carrapatos, apresentou sete vari?veis significativas em pelo menos dois modelos (sendo um deles o ZIP): temperatura no dia anterior ? coleta, temperatura entre o 4? e o 6? dia anterior, temperatura entre o 11? e o 15? dia anterior, umidade no dia anterior ? coleta, umidade no 5? dia anterior, umidade entre o 9? e o 12? dia anterior e precipita??o no 12? dia anterior ? coleta. Essas vari?veis foram combinadas na an?lise multivariada, com isso, nove modelos foram ajustados. Atrav?s da an?lise da raz?o de preval?ncia (RP), Akaike Information Criterion (AIC), quadrado m?dio dos res?duos (QMR) e correla??o entre Y esperado e Y observado (Corr), foi escolhido o melhor modelo, com as seguintes vari?veis (RP [IC 90%]): temperatura entre o 11? e o 15? dia antes da coleta (1,06 [1,01; 1,11]), umidade no dia anterior ? coleta (1,04 [1,02; 1,05]) e precipita??o no 12? dia anterior (0,97 [0,94; 0,99]). Considerando-se os modelos ajustados, foi poss?vel observar que os par?metros mais satisfat?rios foram apresentados pelos modelos ZIP, em que os valores de QMR foram os mais baixos, e os valores de Corr, os mais elevados. As an?lises bivariadas realizadas a partir do modelo ZIP destacaram o fato de que a temperatura se apresenta como fator de prote??o para a ocorr?ncia de A. sculptum adultos no dia da coleta e nos dois dias anteriores, mas como fator de risco a partir do 3? dia anterior at? o 15?. J? umidade e precipita??o apresentam-se como fatores de prote??o para a ocorr?ncia de carrapatos a partir do 3? e do 5? dia anterior ? coleta, respectivamente, at? o 15?. Nos dias mais pr?ximos ? coleta, essas duas ?ltimas vari?veis n?o apresentam um comportamento definido de risco ou prote??o em rela??o ? ocorr?ncia dos carrapatos em estudo. Dentro desse contexto, conclui-se que entender os par?metros que controlam o ciclo de vida de A. sculptum ? essencial para a gera??o de modelos de risco de transmiss?o de doen?as

Identiferoai:union.ndltd.org:IBICT/oai:localhost:jspui/1751
Date23 February 2015
CreatorsPedro, Thiago Bernardo
ContributorsTassinari, Wagner de Souza, Silveira, Andrea Kill, Prata, M?rcia Cristina de Azevedo, Gon?alves, Antonio Carlos
PublisherUniversidade Federal Rural do Rio de Janeiro, Programa de P?s-Gradua??o em Ci?ncias Veterin?rias, UFRRJ, Brasil, Instituto de Veterin?ria
Source SetsIBICT Brazilian ETDs
LanguagePortuguese
Detected LanguageEnglish
Typeinfo:eu-repo/semantics/publishedVersion, info:eu-repo/semantics/masterThesis
Formatapplication/pdf
Sourcereponame:Biblioteca Digital de Teses e Dissertações da UFRRJ, instname:Universidade Federal Rural do Rio de Janeiro, instacron:UFRRJ
Rightsinfo:eu-repo/semantics/openAccess
Relation4 REFER?NCIAS BIBLIOGR?FICAS ARAG?O, H.B. Ixodidas brasileiros e de alguns paizes limitrophes. Mem?rias do Instituto Oswaldo Cruz, v. 31, p. 759-844, 1936. BARROS-BATTESTI, D.M.; ARZUA, M.; BECHARA, G.H. Carrapatos de Import?ncia M?dico-veterin?ria da Regi?o Neotropical: Um Guia Ilustrado para Identifica??o de Esp?cies. S?o Paulo: Vox/ICTTD-3/Butantan, 2006, 223 p. BEATI, L.; NAVA, S.; BURKMAN, E.J.; BARROS-BATTESTI, D.; LABRUNA, M.B.; GUGLIELMONE, A.A.; C?CERES, A.G.; GUZMAN CORNEJO, C.; L?ON, R.; DURDEN, L.A.; FACCINI, J.L.H. Amblyomma cajennense (Fabricius, 1787) (Acari: Ixodidae), the Cayenne tick: phylogeography and evidence for allopatric speciation. BMC Evolutionay Biology, v. 13, p. 267, 2013. BECK, D.L.; ZAVALA, J.; MONTALVO, E.O.; QUINTANA, F.G. Meteorological indicators for Amblyomma cajennense and population dynamics in the Tamaulipan Biotic Province in Texas. Journal of Vector Ecology, v. 36, p. 135-146, 2011. BELOZEROV, V.N. Diapause and Biological Rhythms in Ticks. In: OBENCHAIN, F.D.; GALUN, R. Physiology of Ticks. Oxford: Pergamon, 1982, p. 469-500. BELOZEROV, V.N. Dormancy in the Life Cycle of Ixodid Ticks and their Adaptations to Predictable and Unpredictable Environmental Changes. In: NEEDHAM, G.R. Acarology IX, vol. 2. Columbus: Ohio Biological Survey, 1999, p. 53-56. B?HNING, D. Zero-inflated Poisson models and C.A.MAN: a tutorial collection of evidence. Biometrical Journal, v. 40, p. 833-843, 1998. BOLFARINE, H.; SANDOVAL, M. Introdu??o ? Infer?ncia Estat?stica. Sociedade Brasileira de Matem?tica, 2001. BOYARD, C.; BARNOUIN, J.; GASQUI, P.; VOURC?H, G. Local environmental factors characterizing Ixodes ricinus nymph abundance in grazed permanent pastures for cattle. Parasitology, v. 134, p. 987-994, 2007. BRASIL, SECRETARIA DE VIGIL?NCIA EM SA?DE. Guia de Vigil?ncia Epidemiol?gica ? Febre Maculosa. Bras?lia: MS/SVS, 2009, 14 p. 21 BROWNSTEIN, J.S.; HOLFORD, T.R.; FISH, D. A climate-based model predicts the spatial distribution of the Lyme disease vector Ixodes scapularis in the United States. Environmental Health Perspectives, v. 111, p. 1152-1157, 2003. CARVALHO, D.F. Dados climatol?gicos. Dispon?vel em: http://www.ufrrj.br/institutos /it/deng/daniel/dadosclimaticos Acesso em 11 de set. 2014. CHAC?N, S.C.; CORREIA, P.G.; BARBIERI, F.S.; DAEMON, E.; FACCINI, J.L.H. Efeito de tr?s temperaturas constantes sobre a fase n?o parasit?ria de Amblyomma cajennense (Fabricius, 1787) (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v. 12, p. 13-20, 2003. DANTAS-TORRES, F. Rocky Mountain spotted fever. The Lancet Infectious Diseases, v. 7, p. 724-732, 2007. DANTAS-TORRES, F.; AL?SSIO, F.M.; SIQUEIRA, D.B.; MAUFFREY, J.F.; MARVULO, M.F.V.; MARTINS, T.F.; MORAES-FILHO, J.; CAMARGO, M.C.G.O.; D?AURIA, S.R.N.; LABRUNA, M.B.; SILVA, J.C.R. Exposure of small mammals to ticks and Rickettsiae in Atlantic Forest patches in the metropolitan area of Recife, north-eastern Brazil. Parasitology, v. 139, n. 1, p. 83-91, 2012. DOBSON, A.J. An Introduction to Generalized Linear Models. New York: Chapman and Hall, 2? ed., 1990, 174 p. ESTRADA-PE?A, A. Forecasting habitat suitability for ticks and prevention of tick-borne diseases. Veterinary Parasitology, v. 98, p. 111-132, 2001. ESTRADA-PE?A, A.; GUGLIELMONE, A.A.; MANGOLD, A.J. The distribution and ecological ?preferences? of the tick Amblyomma cajennense (Acari: Ixodidae), an ectoparasite of humans and other mammals in the Americas. Annals of Tropical Medicine and Parasitology, v. 98, p. 283-292, 2004. FACCINI, J.L.H.; BARROS-BATTESTI, D.M. Aspectos Gerais da Biologia e Identifica??o de Carrapatos. In: BARROS-BATTESTI, D.M.; ARZUA, M.; BECHARA, G.H. Carrapatos de Import?ncia M?dico-veterin?ria da Regi?o Neotropical: Um guia Ilustrado para Identifica??o de Esp?cies. S?o Paulo: Vox/ICTTD-3/Butantan, 2006, p. 5-10. FARIAS, N.A.; STOBBE, N.S.; CHRISTOV?O, M.L.; PERRI, S.H.V.; COSTA, A.J. Influ?ncia das condi??es clim?ticas da regi?o Noroeste do estado de S?o Paulo, Brasil, sobre os est?gios n?o-parasit?rios do carrapato Boophilus microplus (Canestrini, 1887) (Acari: Ixodidae). Revista Brasileira de Parasitologia Veterin?ria, v. 4, p. 67-77, 1995. 22 FERNANDES, M.M.; PEREIRA, M.G.; MAGALH?ES, L.M.S.; CRUZ, A.R.; GI?COMO, R.G. Aporte e decomposi??o de serapilheira em ?reas de floresta secund?ria, plantio de sabi? (Mimosa caesalpiniaefolia Benth.) e andiroba (Carapa guianensis Aubl.) na Flona M?rio Xavier, RJ. Ci?ncia Florestal, v. 16, p. 163-175, 2006. FERREIRA, P.M. Uso do geoprocessamento na identifica??o de ?reas de risco para a infesta??o humana pelo Amblyomma cajennense (Acari: Ixodidae) no munic?pio de Piracicaba, SP. 2006, 94 f. Tese (Doutorado em Medicina Veterin?ria) ? Faculdade de Medicina Veterin?ria e Zootecnia, Universidade de S?o Paulo, S?o Paulo, 2006. GALV?O, M.A.M. Febre maculosa em Minas Gerais: um estudo sobre a distribui??o da doen?a no estado e seu comportamento em ?rea de foco peri-urbano. 1996, 84 f. Tese (Doutorado em Medicina Tropical) ? Faculdade de Medicina, Universidade Federal de Minas Gerais, Belo Horizonte, 1996. GRAY, J.S. Review: the ecology of ticks transmitting Lyme borreliosis. Experimental and Applied Acarology, v. 22, p. 249-258, 1998. GUGLIELMONE, A.A.; BEATI, L.; BARROS-BATTESTI, D.M.; LABRUNA, M.B.; NAVA, S.; VENZAL, J.M.; MANGOLD, A.J.; SZAB?, M.P.J.; MARTINS, J.R.; GONZ?LEZ-ACUN?, D.; ESTRADA-PE?A, A. Ticks (Ixodidae) on humans in South America. Experimental and Applied Acarology, v. 40, p. 83-100, 2006. GUGLIELMONE, A.A.; ESTRADA-PE?A, A.; KEIRANS, J.E.; ROBBINS, R.G. Ticks (Acari. Ixodida) of the Neotropical Zoogeographic Region ? Special Publication of the International Consortium on Ticks and Tick-borne Diseases. Atlanta: Houten, 2003, 174 p. GUGLIELMONE, A.A.; MANGOLD, A.J.; AGUIRRE, D.H.; GAIDO, A.B. Ecological aspects of four species of ticks found on cattle in Salta, Northwest Argentina. Veterinary Parasitology, v. 35, p. 93-101, 1990. INSTITUTO BRASILEIRO DE GEOGRAFIA E ESTAT?STICA (IBGE). Divis?o regional. Dispon?vel em: http://biblioteca.ibge.gov.br/visualizacao/livros/liv47603_cap4_pt4.pdf Acesso em 11 de set. 2014. JONGEJAN, F.; UILENBERG, G. The global importance of ticks. Parasitology, v. 129, supplement S1, S3-S14, 2004. LABRUNA, M.B.; AMAKU, M.; METZNER, J.A.; PINTER, A.; FERREIRA, F. Larval behavioral diapause regulates life cycle of Amblyomma cajennense (Acari: Ixodidae) in Southeast Brazil. Journal of Medical Entomology, v. 40, p. 170-178, 2003. 23 LABRUNA, M.B.; CAMARGO, L.M.; TERRASSINI, F.A.; FERREIRA, F.; SCHUMAKER, T.S.; CAMARGO, E.P. Ticks (Acari: Ixodidae) from the state of Rond?nia, western Amazon, Brazil. Systematic and Applied Acarology, v. 10, p. 17-32, 2005. LABRUNA, M.B.; KASAI, N.; FERREIRA, F.; FACCINI, J.L.H.; GENNARI, S.M. Seasonal dynamics of ticks (Acari: Ixodidae) on horses in the state of S?o Paulo, Brazil. Veterinary Parasitology, v. 105, p. 65-77, 2002. LABRUNA, M.B.; SOARES, J.F.; MARTINS, T.F.; SOARES, H.S.; CABRERA, R.R. Cross-mating experiments with geographically different populations of Amblyomma cajennense (Acari: Ixodidae). Experimental Applied Acarology, v. 54, p. 41-49, 2011. LAMBERT, D. Zero-inflated Poisson regression, with an application to defects in manufacturing. Technometrics, v. 34, p. 1-14, 1992. LEMOS, E.R.S.; MACHADO, R.D.; COURA, J.R.; GUIMAR?ES, M.A.A.; SERRA-FREIRE, N.M.; AMORIM, M.; GAZETA, G.S. Epidemiological aspects of the brazilian spotted fever: seasonal activity of ticks collected in an endemic area in S?o Paulo, Brazil. Revista da Sociedade Brasileira de Medicina Tropical, v. 30 , n. 3, p. 181-185, 1997. MANGOLD, A.J.; AGUIRRE, D.H.; GAIDO, A.B.; GUGLIELMONE, A.A. Seasonal variation of ticks (Ixodoidea) in Bos taurus X Bos indicus cattle under rotational grazing in forested and deforested habitats in northwestern Argentina. Veterinary Parasitology, v. 54, p. 389-395, 1994. MASTROPAOLO, M.; NAVA, S.; GUGLIELMONE, A.A.; MANGOLD, A.J. Biological differences between two allopatric populations of Amblyomma cajennense (Acari: Ixodidae) in Argentina. Experimental Applied Acarology, v. 53, p. 371-375, 2011. MEDRONHO, R.; BLOCH, K.V.; LUIZ, R.R.; WERNECK, G.L. Epidemiologia. S?o Paulo: Atheneu, 2008, 790 p. MENEZES, L.F.T.; ARA?JO, D.S.D. Forma??es Vegetais da Ilha da Marambaia. In: Hist?ria Natural da Marambaia. Serop?dica: Editora da Universidade Federal Rural do Rio de Janeiro, 2005, p. 67-120. MONTEIRO, S.G. Metastigmata ? Carrapatos. In: Parasitologia na Medicina Veterin?ria. S?o Paulo: Roca, 2010, p. 15-29. 24 NAVA, S; BEATI, L.; LABRUNA, M.B.; C?CERES, A.G.; MANGOLD, A.J.; GUGLIELMONE, A.A. Reassessment of the taxonomic status of Amblyomma cajennense (Fabricius, 1787) with the description of three new species, Amblyomma tonelliae n. sp., Amblyomma interandinum n. sp. and Amblyomma patinoi n. sp., and reinstatement of Amblyomma mixtum Koch, 1844, and Amblyomma sculptum Berlese, 1888 (Ixodida: Ixodidae). Ticks and Tick-borne Diseases, v. 5, p. 252-276, 2014. NEEDHAM, G.R.; TEEL, P.D. Off-host physiological ecology of Ixodid ticks. Annual Review of Entomology, v. 36, p. 659-681, 1991. NELDER, J.; WEDDERBURN, R. Generalized linear models. Journal of the Royal Statistical Society A, v. 135, p. 370-384, 1972. OLIVEIRA, P.R.; BORGES, L.M.F.; LEITE, R.C.; FREITAS, C.M. Seasonal dynamics of the Cayenne tick, Amblyomma cajennense, on horses in Brazil. Medical and Veterinary Entomology, v. 17, p. 412-416, 2003. OLIVEIRA, P.R.; BORGES, L.M.F.; LOPES, C.M.L.; LEITE, R.C. Population dynamics of the free-living stages of Amblyomma cajennense (Fabricius, 1787) (Acari: Ixodidae) on pastures of Pedro Leopoldo, Minas Gerais State, Brazil. Veterinary Parasitology, v. 92, p. 295-301, 2000. OOREBEEK, M.; KLEINDORFER, S. Climate or host availability: what determines the seasonal abundance of ticks? Parasitology Research, v. 103, p. 871-875, 2008. PEREZ, C.A.; ALMEIDA, A.F.; ALMEIDA, A.; CARVALHO, V.H.B.; BALESTRIN, D.C.; GUIMAR?ES, M.S.; COSTA, J.C.; RAMOS, L.A.; ARRUDA-SANTOS, A.D.; M?XIMO-ESP?NDOLA, C.P.; BARROS-BATTESTI, D.M. Carrapatos do g?nero Amblyomma (Acari: Ixodidae) e suas rela??es com os hospedeiros em ?rea end?mica para febre maculosa no estado de S?o Paulo. Revista Brasileira de Parasitologia Veterin?ria, v. 17, n. 4, p. 210-217, 2008. RANDOLPH, S.E. Ticks ecology: processes and patterns behind the epidemiological risk posed by ixodid ticks as vectors. Parasitology, v. 129, p. 37-65, 2004. SERRA FREIRE, N.M. Epidemiologia de Amblyomma cajennense: ocorr?ncia estacional e comportamento dos est?dios n?o parasit?rios em pastagens do estado do Rio de Janeiro. Arquivos da Universidade Federal Rural do Rio de Janeiro, v. 5, p. 179-186, 1982. 25 SILVEIRA, A.K; FONSECA, A.H. Caracteriza??o de ambientes com potencial para ocorr?ncia de carrapatos transmissores de agentes patog?nicos para humanos: boletim do PARNA ITATIAIA ? n?mero 13. Itatiaia, 2011, 87 p. SILVEIRA, A.K.; FONSECA, A.H. Distribui??o, diversidade e sazonalidade de carrapatos em ambientes institucionais com diferentes graus de interven??o humana no estado do Rio de Janeiro. Revista Brasileira de Medicina Veterin?ria, v. 35 (suppl. 2), p. 1-12, 2013. SONENSHINE, D.E. Biology of Ticks. New York: Oxford University Press, 1993, 465 p. SONENSHINE, D.E.; MATHER, T.N. Ecological Dynamics of Tick-borne Zoonosis. Oxford: Oxford University Press, 1994, 464 p. SOUZA, A.P.; SERRA-FREIRE, N.M. Varia??o sazonal da fase n?o-parasit?ria de Amblyomma cajennense e Boophilus microplus no munic?pio de Paracambi, estado do Rio de Janeiro. Revista da Universidade Rural, Ser. Cienc. Vida, v. 16, p. 57-65, 1994. STREY, O.F.; TEEL, P.D.; LONGNECKER, M.T.; NEEDHAM, G.R. Survival and water-balance characteristics of unfed adult Amblyomma cajennense (Acari: Ixodidae). Journal of Medical Entomology, v. 33, p. 63-73, 1996. SZAB?, M.P.J.; LABRUNA, M.B.; GARCIA, M.V.; PINTER, A.; CASTAGNOLLI, K.C.; PACHECO, R.C.; CASTRO, M.B.; VERONEZ, V.A.; MAGALH?ES, G.M.; VOGLIOTTI, A; DUARTE, J.M.B. Ecological aspects of the free-living ticks (Acari: Ixodidae) on animal trails within Atlantic rainforest in south-eastern Brazil. Annals of Tropical Medicine and Parasitology, v. 103, p. 57-72, 2009. VELOSO, H.P.; RANGEL-FILHO, A.L.R.; LIMA, J.C.A. Classifica??o da Vegeta??o Brasileira, Adaptada a um Sistema Universal. Rio de Janeiro: Instituto Brasileiro de Geografia e Estat?stica, 1991, 124p. ZEILEIS, A.; KLEIBER, C.; JACKMAN, S. Regression models for count data in R. Journal of Statistical Software, v. 27, p. 1-25, 2008. ZUUR, A.F.; IENO, E.N.; WALKER, N.J.; SAVELIEV, A.A.; SMITH, G.M. Zero-truncated and Zero-inflated Models for Count Data. In: Mixed Effects Models and Extensions in Ecology with R. New York: Springer, 2009, p. 261-293 4 REFER?NCIAS BIBLIOGR?FICAS ALEKSEEV, E.; GLAZER, I.; SAMISH, M. Effect of soil texture and moisture on the activity of entomopathogenic nematodes against female Boophilus annulatus ticks. BioControl, v. 51, p. 507-518, 2006. ARAG?O, H.B. Ixodidas brasileiros e de alguns paizes limitrophes. Mem?rias do Instituto Oswaldo Cruz, v. 31, p. 759-844, 1936. BECK, D.L.; ZAVALA, J.; MONTALVO, E.O.; QUINTANA, F.G. Meteorological indicators for Amblyomma cajennense and population dynamics in the Tamaulipan Biotic Province in Texas. Journal of Vector Ecology, v. 36, p. 135-146, 2011. BROWNSTEIN, J.S.; HOLFORD, T.R.; FISH, D. A climate-based model predicts the spatial distribution of the Lyme disease vector Ixodes scapularis in the United States. Environmental Health Perspectives, v. 111, p. 1152-1157, 2003. BUNNEL, J.E.; PRICE, S.D.; DAS, A.; SHIELDS, T.M.; GLASS, G.E. Geographic information systems and spatial of adult Ixodes scapularis (Acari: Ixodidae)c in the middle Atlantic Region of the U.S.A. Journal of Medical Entomology, v. 40, n. 4, p. 570-576, 2003. DANIEL, M.; KOLAR, J.; ZERNAN, P.; PAVELKA, K.; SADLO, J. Predictive map of Ixodes ricinus high-incidence habitats and a tick-borne encephalitis risk assessment using satellite data. Experimental and Applied Acarology, v. 22, p. 417-433, 1998. DANTAS-TORRES, F.; AL?SSIO, F.M.; SIQUEIRA, D.B.; MAUFFREY, J.F.; MARVULO, M.F.V.; MARTINS, T.F.; MORAES-FILHO, J.; CAMARGO, M.C.G.O.; D?AURIA, S.R.N.; LABRUNA, M.B.; SILVA, J.C.R. Exposure of small mammals to ticks and Rickettsiae in Atlantic Forest patches in the metropolitan area of Recife, north-eastern Brazil. Parasitology, v. 139, n. 1, p. 83-91, 2012. ENNEM, J.R.; QUALLS, C.P. Distribution and habitat utilization of the gopher tortoise tick (Amblyomma tuberculatum) in Southern Mississipi. Journal of Parasitology, v. 97, n. 2, p. 202-206, 2011. ESTRADA-PE?A, A. Climate, niche, ticks, and models: what they are and how we should interpret them. Parasitology Research, v. 103, p. S87-S95, 2008. 38 ESTRADA-PE?A, A. Diluting the dilution effect: a spatial Lyme model provides evidence for the importance of habitat fragmentation with regard to the risk of infection. Geospatial Health, v. 3, n. 2, p. 143-155, 2009. ESTRADA-PE?A, A. Forecasting habitat suitability for ticks and prevention of tick-borne diseases. Veterinary Parasitology, v. 98, p. 111-132, 2001. FERNANDES, M.M.; PEREIRA, M.G.; MAGALH?ES, L.M.S.; CRUZ, A.R.; GI?COMO, R.G. Aporte e decomposi??o de serapilheira em ?reas de floresta secund?ria, plantio de sabi? (Mimosa caesalpiniaefolia Benth.) e andiroba (Carapa guianensis Aubl.) na Flona M?rio Xavier, RJ. Ci?ncia Florestal, v. 16, p. 163-175, 2006. FERREIRA, P.M. Uso do geoprocessamento na identifica??o de ?reas de risco para a infesta??o humana pelo Amblyomma cajennense (Acari: Ixodidae) no munic?pio de Piracicaba, SP. 2006, 94 f. Tese (Doutorado em Medicina Veterin?ria) ? Faculdade de Medicina Veterin?ria e Zootecnia, Universidade de S?o Paulo, S?o Paulo, 2006. HOOGSTRAAL, H.; AESCHLIMANN, A. Tick host specificity. Bulletin of the Suisse Entomological Society, v. 55, p. 5-32, 1982. INSTITUTO BRASILEIRO DE GEOGRAFIA E ESTAT?STICA (IBGE). Divis?o regional. Dispon?vel em: http://biblioteca.ibge.gov.br/visualizacao/livros/liv47603_cap4_pt4.pdf Acesso em 11 de set. 2014. ILLOLDI-RANGEL, P.; RIVALDI, C.L.; SISSEL, B.; FRYXELL, R.T.; GORDILLO-P?REZ, G.; RODR?GUEZ-MORENO, A.; WILLIAMSON, P.; MONTIEL-PARRA, G.; S?NCHEZ-CORDERO, V.; SARKAR, S. Species distribution models and ecological suitability analysis for potential tick vectors of Lyme disease in Mexico. Journal of Tropical Medicine, v. 2012, n. 2012, p. 1-10, 2012. JACKSON, L.E.; HILBORN, E.D.; THOMAS, J.C. Towards landscape design guidelines for reducing Lyme disease risk. International Journal of Epidemiology, v. 35, p. 315-322, 2006. JAMES, M.C.; BOWMAN, A.S.; FORBES, K.J.; LEWIS, F.; MCLEOD, J.E.; GILBERT, L. Environmental determinants of Ixodes ricinus ticks and the incidence of Borrelia burgdorferi sensu lato, the agent of Lyme borreliosis, in Scotland. Parasitology, v. 140, n. 2, p. 237?246, 2013. KITRON, U.; KAZMIERCZAK, J.J. Spatial analysis of the distribution of Lyme disease in Wisconsin. American Journal of Epidemiology, v. 145, p. 558-566, 1997. 39 KITRON, U. Landscape ecology and epidemiology of vector-borne diseases: tools for spatial analysis. Journal of Medical Entomology, v. 35, p. 435-445, 1998. KLOMPEN, J.S.H.; BLACK, W.C.I.V.; KEIRANS, J.E.; OLIVER JR, J.H. Evolution of ticks. Annual Review of Entomology, v. 41, p. 141-161, 1996. LABRUNA, M.B.; KERBER, C.E.; FERREIRA, F.; FACCINI, J.L.H.; DE WAAL, D.T.; GENNARI, S.M. Risk factors to tick infestations and their occurrence on horses in the state of S?o Paulo, Brazil. Veterinary Parasitology, v. 97, p. 1-14, 2001. LAMBIN, E.F.; TRAN, A.; VANWAMBEKE, S.O.; LINARD, C.; SOTI, V. Pathogenic landscapes: interactions between land, people, disease vectors, and their animal hosts. International Journal of Health Geographics, v. 9, p. 1-13, 2010. LINARD, C.; LAMARQUE, P.; HEYMAN P.; DUCOFFRE, G.; LUYASU, V.; TERSAGO, K.; VANWAMBEKE, S.O.; LAMBIN, E.F. Determinants of the geographic distribution of Puumala virus and Lyme borreliosis infections in Belgium. International Journal of Health Geographics, v. 6, p.15, 2007. NORRIS, D. Mosquito-borne diseases as a consequence of land use change. EcoHealth, v. 1, p. 19-24, 2004. OGRZEWALSKA, M.; UEZU, A.; JENKINS, C.N.; LABRUNA, M.B. Effect of forest fragmentation on tick infestations of birds and tick infection rates by Rickettsia in the Atlantic Forest of Brazil. Ecohealth, v. 8, n. 3, p. 320?331, 2011. PEREIRA, M.C.; LABRUNA, M.B. Febre maculosa: aspectos cl?nico-epidemiol?gicos. Cl?nica Veterin?ria, v. 3, p. 19-23, 1998. SERRA FREIRE, N.M. Epidemiologia de Amblyomma cajennense: ocorr?ncia estacional e comportamento dos est?dios n?o parasit?rios em pastagens do estado do Rio de Janeiro. Arquivos da Universidade Federal Rural do Rio de Janeiro, v. 5, p. 179-186, 1982. SILVEIRA, A.K. Distribui??o espacial e flutua??o sazonal de carrapatos e modelo geoambiental sobre a favorabilidade de ocorr?ncia de Hydrochoerus hydrochaeris e Amblyomma cajennense. 2014. 63 p. Tese (Doutorado em Ci?ncias Veterin?rias, Sanidade Animal). Instituto de Veterin?ria, Departamento de Parasitologia Veterin?ria, Universidade Federal Rural do Rio de Janeiro, Serop?dica, RJ, 2014. 40 SILVEIRA, A.K; FONSECA, A.H. Caracteriza??o de ambientes com potencial para ocorr?ncia de carrapatos transmissores de agentes patog?nicos para humanos: boletim do PARNA ITATIAIA ? n?mero 13. Itatiaia, 2011, 87 p. SILVEIRA, A.K.; FONSECA, A.H. Distribui??o, diversidade e sazonalidade de carrapatos em ambientes institucionais com diferentes graus de interven??o humana no estado do Rio de Janeiro. Revista Brasileira de Medicina Veterin?ria, v. 35 (suppl. 2), p. 1-12, 2013. SMITH, M.W. Some aspects of the ecology and life cycle of Amblyomma cajennense (Fabricius, 1787) in Trinidad and their influence on tick control measures. Annals of Tropical Medicine and Parasitology, v. 69, p. 121-129, 1975. SZAB?, M.P.J.; LABRUNA, M.B.; GARCIA, M.V.; PINTER, A.; CASTAGNOLLI, K.C.; PACHECO, R.C.; CASTRO, M.B.; VERONEZ, V.A.; MAGALH?ES, G.M.; VOGLIOTTI, A; DUARTE, J.M.B. Ecological aspects of the free-living ticks (Acari: Ixodidae) on animal trails within Atlantic rainforest in south-eastern Brazil. Annals of Tropical Medicine and Parasitology, v. 103, p. 57-72, 2009. VANWAMBEKE, S.O.; SUMILO, D.; BORMANE, A.; LAMBIN, E.F.; RANDOLPH, S.E. Landscape predictors of tick-borne encephalitis in Latvia: land cover, land use and land ownership. Vector-borne and Zoonotic Diseases, v. 10, p. 497-506, 2010. VELOSO, H.P.; RANGEL-FILHO, A.L.R.; LIMA, J.C.A. Classifica??o da Vegeta??o Brasileira, Adaptada a um Sistema Universal. Rio de Janeiro: Instituto Brasileiro de Geografia e Estat?stica, 1991, 124p. VENABLES, W.N.; RIPLEY, B.D. Modern Applied Statistics with S. New York: Springer, 2002. VERONEZ, V.A.; FREITAS, B.Z.; OLEG?RIO, M.M.M.; CARVALHO, W.M.; PASCOLI, G.V.T.; THORGA, K.; GARCIA, M.V.; SZAB?, M.P.J. Ticks (Acari: Ixodidae) within various phytophysiognomies of a Cerrado reserve in Uberl?ndia, Minas Gerais, Brazil. Experimental Applied Acarology, v. 50, p. 169-179, 2010. ZUUR, A.F.; IENO, E.N.; WALKER, N.J.; SAVELIEV, A.A.; SMITH, G.M. Zero-truncated and Zero-inflated Models for Count Data. In: Mixed Effects Models and Extensions in Ecology with R. New York: Springer, 2009, p. 261-293.

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