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Effect of heavy-equipment aided environmental nebulization on Aedes aegypti vectors of Dengue, Zika and Chikungunya in São Paulo, Brazil

Published online by Cambridge University Press:  15 December 2016

R. Piovezan*
Affiliation:
Universidade Estadual Paulista, Departamento de Zoologia, Rio Claro, SP, Brazil
J. Paulo O. Acorinthe
Affiliation:
Department of the Environment-Prefeitura Municipal de Santa Bárbara d'Oeste, Santa Bárbara d'Oeste, SP, Brazil
A. Visockas
Affiliation:
Department of the Environment-Prefeitura Municipal de Santa Bárbara d'Oeste, Santa Bárbara d'Oeste, SP, Brazil
T.S. de Azevedo
Affiliation:
Universidade de São Paulo, Faculdade de Saúde Pública, São Paulo, SP, Brazil
C.J. Von Zuben
Affiliation:
Universidade Estadual Paulista, Departamento de Zoologia, Rio Claro, SP, Brazil
*
*Author for correspondence Phone : (55)19-43595900 Fax: (55)19-34595921 E-mail: piovezan.rafael@gmail.com

Abstract

The control of dengue constitutes a great challenge for public health; however, the methods normally used have shown themselves to be insufficient to keep the indices of infestation of Aedes aegypti under control. Recently, beyond the large number of cases and deaths associated with dengue, new risks have arisen such as those represented by chikungunya fever and Zika. In the light of the great significance of these problems within the public health context, two areas in a municipality in the interior of the State of São Paulo, Brazil were selected in 2014. One of them, Bairro Cidade Nova, was submitted to the conventional method of nebulization with portable equipment, and the other, Bairro Jardim Europa, received the application of the insecticide by means of heavy-equipment coupled to the vehicle. During the project, 1355 mosquito eggs were collected, 1105 of them in Bairro Cidade Nova and 205 in Bairro Jardim Europa. After the applications with heavy-equipment in the months of March and April, the number of cases of the disease reported in the month of April for Bairro Jardim Europa was less than half that of Bairro Cidade Nova, which had received the conventional treatment. The nebulization with the heavy-equipment may constitute a viable and effective strategy for achieving better results in the control of Ae. aegypti.

Type
Research Papers
Copyright
Copyright © Cambridge University Press 2016 

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References

Andrade, C.F.S. & Cabrini, I. (2010) Estratégias inócuas, estrambólicas ou inseguras para o controle do vetor da dengue. Revistas Vetores & Pragas 27, 2227.Google Scholar
Andrighetti, M.T.M., Marcoris, M.L.G., Takaku, L., Galvani, K.C., Cardoso, R.P., Scandar, S.S., Glasser, C.M., Wanderley, D.M.V. & Yang, H.M. (2013) Avaliação do efeito do inseticida Malathion aplicado sob a forma de ultra e baixo volume com equipamentos portátil e pesado sobre Aedes aegypti (Diptera: Culicidae). Rev Pat Tropical 42, 8195.Google Scholar
Andriotti, J.L.S. (2004) Fundamentos de Estatística e Geoestatística. Editora Unisinos. São Leopoldo, Editora do Vale do rio dos Sinos (UNISINOS), 165 p.Google Scholar
Brasil (2001) Ministério da Saúde. Fundação Nacional de Saúde. Dengue, instruções para o pessoal de combate ao vetor: Manual de Normas Técnicas 3a Edição. Ministério da Saúde.Google Scholar
Brasil (2002) Ministério da Saúde. Fundação Nacional de Saúde. Programa Nacional de Controle da Dengue. Ministério da Saúde.Google Scholar
Brasil (2015 a) Ministério da Saúde. Available online at http://www.brasil.gov.br/saude/2015/04/orcamento-2015-para-acoes-de-combate-a-dengue-cresce-37 (accessed 28 December 2015).Google Scholar
Brasil (2015 b) Ministério da Saúde. Available online at http://portalsaude.saude.gov.br/images/pdf/2015/dezembro/15/COESMicrocefaliasInformeEpidemiologicoSE4915dez201510h.pdf (accessed 28 December 2015).Google Scholar
Câmara, F.P., Theophilo, R.L.G., Santos, G.T., Pereira, S.R.F.G., Câmara, D.C. & Matos, R.R.C. (2007) Estudo retrospectivo (histórico) da dengue no Brasil: características regionais e dinâmicas. RevSocBrasMedTrop 40, 192196.Google Scholar
CDC – Centers for Diseases Control and Prevention (2016) Concludes Zika Causes Microcephaly and other birth defects. Available online at www.cdc.gov/media/releases/2016/s0413-zika-microcephaly.html (accessed: 06 June 2016).Google Scholar
CEPAGRI (2014) Centro de Pesquisas Meteorológicas e Climáticas Aplicadas à Agricultura. Clima dos Municípios Paulistas. Available online at: http://www.cpa.unicamp.br/index.html (accessed 17 April 2014).Google Scholar
Focks, D.A., Brenner, R.J., Hayes, J. & Daniels, E. (2000) Transmission thresholds for Dengue in terms of Aedes aegypti pupae per person with discussion of their utility in source reduction efforts. American Journal of Tropical Medicine and Hygiene 62, 1118.Google Scholar
Forattini, O.P. (2002) Culicidologia médica: identificação, biologia, epidemiologia. Vol. 2. São Paulo, Editora da Universidade de São Paulo, 860 p.Google Scholar
Golden Software INC (1995) Surfer for Windows v. 6: user's guide. Colorado, Golden Software, 340 p.Google Scholar
Gringarten, E. & Deutsch, C.V. (2001) Variogram interpretation and modeling. Mathematical Geology 33, 507534.Google Scholar
IBGE (2013) Instituto Brasileiro de Geografia e Estatística. Censo Demográfico. Available online at http://cidades.ibge.gov.br/xtras/home.php (accessed 14 April 2014).Google Scholar
Lima, V.L.C., Figueiredo, L.T.M., Correa, F.H.R., Leite, O.F., Rangel, O., Vido, A.A., Oliveira, S.S., Owa, M.A. & Carlucci, R.H. (1999) Dengue: Inquérito Sorológico pós-epidêmico em zona urbana do Estado de São Paulo (Brasil). Rev Saúde Pública 33, 566–74.Google Scholar
Marcondes, C.B. & Ximenes, M.F.F.M. (2015) Zika virus in Brazil and the danger of infestation by Aedes (Stegomyia) mosquitoes. Rev Soc Bras Med Tropical 49, 410.Google Scholar
Mlakar, J., Korva, M., Tul, N., Popovic, M., Poljsak-Prijatelj, M., Mraz, J., Kolenc, M., Rus, R.K., Vipotnik, T.V., Vodusek, V.F., Vizjak, A., Pizem, J., Petrovec, M. & Zupanc, T.A. (2016). Zika virus associated with microcephaly. New England Journal of Medicine 374, 951958.Google Scholar
PAHO-WHO (2016) Pan American Health – World Health Organization. Dengue, PAHO/WHO data, Maps and Statistics. Available online at: http://www.paho.org/hq/index.php?option=com_topics&view=readall&cid=3273&Itemid=40734&lang=pt (accessed 08 February 2016).Google Scholar
Pannatier, Y. (1996) Variowin – Software for Spatial data Analysis in 2D. New York, Spring-Verlag.Google Scholar
Pfeiffer, D.U., Robinson, T.P., Stevenson, M., Stevens, K.B., Rogers, D.J. & Clements, A.C.A. (2008) Spatial Analysis in Epidemiology (Eds). Oxford, Oxford University Press, 142 p.Google Scholar
Piovezan, R., Azevedo, T.S. & Von Zuben, C.J. (2012) Spatial evaluation of larvae of Culicidae (Diptera) from different breeding sites: application of a geospatial method and implications for vector control. RevBra Entomologia 56, 368376.Google Scholar
Piovezan, R., Azevedo, T.S., Acorinthe, J.P.O., Polizelli, N., Visockas, A., Canteiro, C.L. & Von Zuben, C.J. (2014) Perfil epidemiológico e análise espacial do risco da dengue da área urbana de Santa Bárbara d'Oeste – SP, durante o período de 1995 a 2010. Geografia 39, 525539.Google Scholar
Rasmussen, S.A., Jamieson, D.J., Honein, M.A. & Petersen, L.R. (2016). Zika virus and birth defects – Reviewing the Evidence for causality. New England Journal of Medicine 374, 19811987.Google Scholar
Strahler, A.N. & Strahler, A.H. (1989) Geografia Física, Editora Ômega, 551 p.Google Scholar
SUCEN. (2001) Superintendência de Controle de Endemias. Vigilância e controle do Aedes aegypti: Normas, orientações e recomendações técnicas. Plano de Intensificação das ações de controle de dengue no Estado de São Paulo. Secretaria de Estado da Saúde de São Paulo Governo do Estado de São Paulo.Google Scholar
SUCEN. (2010) Superintendência de Controle de Endemias. Coordenadoria de Controle de Doenças Programa de Vigilância e Controle da Dengue. Secretaria de Estado da Saúde de São Paulo Governo do Estado de São Paulo. Available online at http://www.cve.saude.sp.gov.br/htm/zoo/pdf/Programa10_Estadual_dengue.pdf (accessed 30 December 2015).Google Scholar
Zar, J.H. (2010) Biostatistical Analysis. 5th edn. New Jersey, Pearson.Google Scholar