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A Rainfall- and Temperature-Driven Abundance Model for Aedes albopictus Populations

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  1. Mitchell, Parassitologia, 37, 109 (1995)
  2. Gratz N. G., Critical review of the vector status of Aedes albopictus, 10.1111/j.0269-283x.2004.00513.x
  3. European Network for Arthropod Vector Surveillance for Human Public Health (ECDC VBORNET)http://www.vbornet.eu/index.php?p=11
  4. Delaunay, Med. Trop., 67, 310 (2007)
  5. ECDC Guidelines for the Surveillance of Invasive Mosquitoes in Europehttp://ecdc.europa.eu/en/publications/Publications/TER-Mosquito-surveillance-guidelines.pdf
  6. Medlock Jolyon M., Hansford Kayleigh M., Schaffner Francis, Versteirt Veerle, Hendrickx Guy, Zeller Herve, Bortel Wim Van, A Review of the Invasive Mosquitoes in Europe: Ecology, Public Health Risks, and Control Options, 10.1089/vbz.2011.0814
  7. Rezza G, Nicoletti L, Angelini R, Romi R, Finarelli AC, Panning M, Cordioli P, Fortuna C, Boros S, Magurano F, Silvi G, Angelini P, Dottori M, Ciufolini MG, Majori GC, Cassone A, Infection with chikungunya virus in Italy: an outbreak in a temperate region, 10.1016/s0140-6736(07)61779-6
  8. La Ruche, Euro Surveill., 15 (2010)
  9. Grandadam Marc, Caro Valérie, Plumet Sébastien, Thiberge Jean-Michel, Souarès Yvan, Failloux Anna-Bella, Tolou Hugues J., Budelot Michel, Cosserat Didier, Leparc-Goffart Isabelle, Desprès Philippe, Chikungunya Virus, Southeastern France, 10.3201/eid1705.101873
  10. Neteler Markus, Roiz David, Rocchini Duccio, Castellani Cristina, Rizzoli Annapaola, Terra and Aqua satellites track tiger mosquito invasion: modelling the potential distribution of Aedes albopictus in north-eastern Italy, 10.1186/1476-072x-10-49
  11. 52 (2009)
  12. Otero Marcelo, Solari Hernán G., Schweigmann Nicolás, A Stochastic Population Dynamics Model for Aedes Aegypti: Formulation and Application to a City with Temperate Climate, 10.1007/s11538-006-9067-y
  13. Focks, J. Med. Entomol., 30, 1018 (1993)
  14. Chiroleu Frederic, Dumont Yves, Vector control for the Chikungunya disease, 10.3934/mbe.2010.7.313
  15. Moulay D., Aziz-Alaoui M.A., Cadivel M., The chikungunya disease: Modeling, vector and transmission global dynamics, 10.1016/j.mbs.2010.10.008
  16. Cailly Priscilla, Tran Annelise, Balenghien Thomas, L’Ambert Grégory, Toty Céline, Ezanno Pauline, A climate-driven abundance model to assess mosquito control strategies, 10.1016/j.ecolmodel.2011.10.027
  17. Carrieri Marco, Albieri Alessandro, Angelini Paola, Baldacchini Flavia, Venturelli Claudio, Zeo Silvia Mascali, Bellini Romeo, Surveillance of the chikungunya vector Aedes albopictus (Skuse) in Emilia-Romagna (northern Italy): organizational and technical aspects of a large scale monitoring system, 10.1111/j.1948-7134.2011.00147.x
  18. Carrieri Marco, Masetti Antonio, Albieri Alessandro, Maccagnani Bettina, Bellini Romeo, Larvicidal Activity and Influence of Bacillus thuringiensis Var. Israelensis on Aedes albopictus Oviposition in Ovitraps During A Two-Week Check Interval Protocol, 10.2987/08-5852.1
  19. Roiz David, Rosà Roberto, Arnoldi Daniele, Rizzoli Annapaola, Effects of Temperature and Rainfall on the Activity and Dynamics of Host-SeekingAedes albopictusFemales in Northern Italy, 10.1089/vbz.2009.0098
  20. Abramides Gisela Chebabi, Roiz David, Guitart Raimon, Quintana Salvador, Guerrero Irene, Giménez Nuria, Effectiveness of a multiple intervention strategy for the control of the tiger mosquito (Aedes albopictus) in Spain, 10.1016/j.trstmh.2011.01.003
  21. Matsuo, J. Kyoto Pref. Univ. Med., 81, 358 (1972)
  22. Encinas Grandes (1982)
  23. Delatte H., Gimonneau G., Triboire A., Fontenille D., Influence of Temperature on Immature Development, Survival, Longevity, Fecundity, and Gonotrophic Cycles ofAedes albopictus, Vector of Chikungunya and Dengue in the Indian Ocean, 10.1603/033.046.0105
  24. 39 (2011)
  25. Hawley, J. Am. Mosq. Control. Assoc. Suppl., 1, 1 (1988)
  26. Clements (2000)
  27. Lord, J. Med. Entomol., 35, 825 (1998)
  28. Jetten, 69 (1994)
  29. MARINI F., CAPUTO B., POMBI M., TARSITANI G., DELLA TORRE A., Study ofAedes albopictusdispersal in Rome, Italy, using sticky traps in mark-release-recapture experiments, 10.1111/j.1365-2915.2010.00898.x
  30. Tsuda, Trop. Med., 33, 41 (1991)
  31. Soti Valérie, Tran Annelise, Degenne Pascal, Chevalier Véronique, Lo Seen Danny, Thiongane Yaya, Diallo Mawlouth, Guégan Jean-François, Fontenille Didier, Combining Hydrology and Mosquito Population Models to Identify the Drivers of Rift Valley Fever Emergence in Semi-Arid Regions of West Africa, 10.1371/journal.pntd.0001795
  32. Shaman Jeffrey, Spiegelman Marc, Cane Mark, Stieglitz Marc, A hydrologically driven model of swamp water mosquito population dynamics, 10.1016/j.ecolmodel.2005.10.037
  33. Chan, Bull. World Health Organ., 44, 629 (1971)
  34. Ho, Bull. World Health Organ., 44, 635 (1971)
  35. Lourenco-de-Oliveira, J. Vector Ecol., 29, 94 (2004)
  36. Scilabhttp://www.scilab.org/
  37. Saltelli (2000)
  38. ROMI ROBERTO, SEVERINI FRANCESCO, TOMA LUCIANO, COLD ACCLIMATION AND OVERWINTERING OF FEMALE AEDES ALBOPICTUS IN ROMA, 10.2987/8756-971x(2006)22[149:caaoof]2.0.co;2
  39. Toma, J. Am. Mosq. Control. Assoc., 19, 19 (2003)
  40. Giatropoulos Αthanassios, Emmanouel Nickolaos, Koliopoulos George, Michaelakis Antonios, A Study on Distribution and Seasonal Abundance of Aedes albopictus (Diptera: Culicidae) Population in Athens, Greece, 10.1603/me11096
  41. Aranda C., Eritja R., Roiz D., First record and establishment of the mosquito Aedes albopictus in Spain, 10.1111/j.1365-2915.2006.00605.x
  42. Adhami, J. Am. Mosq. Control. Assoc., 14, 340 (1998)
  43. Urbanelli Sandra, Population structure of Aedes albopictus (Skuse): the mosquito which is colonizing Mediterranean countries, 10.1046/j.1365-2540.2000.00676.x
  44. Alto Barry W., Juliano Steven A., Precipitation and Temperature Effects on Populations ofAedes albopictus(Diptera: Culicidae): Implications for Range Expansion, 10.1603/0022-2585-38.5.646
  45. Hawley, J. Med. Entomol., 26, 122 (1989)
  46. Urbanski Jennifer M., Aruda Amalia, Armbruster Peter, A transcriptional element of the diapause program in the Asian tiger mosquito, Aedes albopictus, identified by suppressive subtractive hybridization, 10.1016/j.jinsphys.2010.03.008
  47. Toma, Jpn J. Sanit. Zool., 41, 195 (1990)
  48. Hanson, J. Am. Mosq. Control. Assoc., 11, 354 (1995)
  49. Hanson, J. Med. Entomol., 32, 599 (1995)
  50. Anon, Wkly. Epidemiol. Rec. World Health Organ., 47, 73 (1972)
  51. Breteau, Bull. World Health Organ., 11, 453 (1954)
  52. Carrieri M., Angelini P., Venturelli C., Maccagnani B., Bellini R., Aedes albopictus (Diptera: Culicidae) Population Size Survey in the 2007 Chikungunya Outbreak Area in Italy. I. Characterization of Breeding Sites and Evaluation of Sampling Methodologies, 10.1603/me10230
  53. Barker R. J., Cohen C. F., Mayer A., Photoflashes: A Potential New Tool for Control of Insect Populations, 10.1126/science.145.3637.1195
  54. Beach, Environ. Entomol., 8, 392 (1979)
  55. Labbé Pierrick, Berticat Claire, Berthomieu Arnaud, Unal Sandra, Bernard Clothilde, Weill Mylène, Lenormand Thomas, Forty Years of Erratic Insecticide Resistance Evolution in the Mosquito Culex pipiens, 10.1371/journal.pgen.0030205
  56. Marcombe Sébastien, Darriet Frédéric, Tolosa Michel, Agnew Philip, Duchon Stéphane, Etienne Manuel, Yp Tcha Marie Michèle, Chandre Fabrice, Corbel Vincent, Yébakima André, Pyrethroid Resistance Reduces the Efficacy of Space Sprays for Dengue Control on the Island of Martinique (Caribbean), 10.1371/journal.pntd.0001202
  57. Ponçon Nicolas, Tran Annelise, Toty Céline, Luty Adrian JF, Fontenille Didier, A quantitative risk assessment approach for mosquito-borne diseases: malaria re-emergence in southern France, 10.1186/1475-2875-7-147
  58. Chen Szu-Chieh, Hsieh Meng-Huan, Modeling the transmission dynamics of dengue fever: Implications of temperature effects, 10.1016/j.scitotenv.2012.05.012
  59. Linard Catherine, Ponçon Nicolas, Fontenille Didier, Lambin Eric F., A multi-agent simulation to assess the risk of malaria re-emergence in southern France, 10.1016/j.ecolmodel.2008.09.001
Référence bibliographique Tran, Annelise ; L'Ambert, Grégory ; Lacour, Guillaume ; Benoît, Romain ; Demarchi, Marie ; et. al. A Rainfall- and Temperature-Driven Abundance Model for Aedes albopictus Populations. In: International Journal of Environmental Research and Public Health, Vol. 10, no.5, p. 1698-1719 (2013)
Permalien http://hdl.handle.net/2078.1/128231