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5. Referencias y bibliografía

 
  • Comisión Europea. 2014. Especies Exóticas Invasoras: La respuesta de la Unión Europea. Luxemburgo: Oficina de Publicaciones de la Unión Europea. 28 pp. doi:10.2779/32006.
  • Simberloff, D. (2009). The role of propagule pressure in biological invasions. Annual Review of Ecology, Evolution and Systematics, 40 (1), 81-102.
  • Zalasiewicz, J., Williams, M., Steffen, W., & Crutzen, P. (2010). The Anthropocene, following the lost world of the Holocene, holds challenges for both science and society. Environment, Science and Technology, 44 (7), 2228-2231.
  • Haubrock, P. J., Turbelin, A. J., Cuthbert, R. N., Novoa, A., Taylor, N. G., Angulo, E., ... & Courchamp, F. (2021). Economic costs of invasive alien species across Europe. NeoBiota, 67, 153-190.
  • Angulo, E., Ballesteros-Mejia, L., Novoa, A., Duboscq-Carra, V. G., Diagne, C., & Courchamp, F. (2021). Economic costs of invasive alien species in Spain.NeoBiota, 67, 267-297.
  • Schindler, S., Staska, B., Adam, M., Rabitsch, W., & Essl, F. (2015). Alien species and public health impacts in Europe: a literature review.NeoBiota, (27).
  • Vilà, M., Basnou, C., Gollasch, S., Josefsson, M., Pergl, J., Scalera, R. (2009). One Hundred of the Most Invasive Alien Species in Europe. In: Handbook of Alien Species in Europe. Invading Nature - Springer Series in Invasion Ecology, vol 3. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-8280-1_12
  • Perrings, C., Fenichel, E., & Kinzig, A. (2010).Globalization and invasive alien species: trade, pests, and pathogens (pp. 43-55). Oxford University Press: New York, NY, USA.
  • Capdevila-Argüelles L., B. Zilletti y V.A. Suárez Álvarez. 2011. Cambio climático y especies exóticas invasoras en España. Diagnóstico preliminar y bases de conocimiento sobre impacto y vulnerabilidad. Documento de síntesis. Oficina Española de Cambio Climático, Ministerio de Medio Ambiente y Medio Rural y Marino. Madrid, 17 pág.
  • Eritja, R., Escosa, R., Lucientes, J., Marques, E., Roiz, D., & Ruiz, S. (2005). Worldwide invasion of vector mosquitoes: present European distribution and challenges for Spain. Biological invasions,7(1), 87-97.
  • Baldacchino, F., Caputo, B., Chandre, F., Drago, A., della Torre, A., Montarsi, F. & Rizzoli, A. (2015) Control methods against invasive Aedes mosquitoes in Europe: a review. Pest Manag Sci, 71, 1471-1485.
  • Manni, M., Guglielmino, C.R., Scolari, F., Vega-Rúa, A., Failloux A.B., Somboon, P., Lisa, A., Savini, G., Bonizzoni, M., Gomulski, L.M., Malacrida, A.R., & Gasperi, G. (2017) Genetic evidence for a worldwide chaotic dispersion pattern of the ardovirus vector, Aedes albopictus. PLOS Neglected Tropical Diseases 11, e0005332 
  • Lucati, F., Delacour, S., Palmer, J. R., Caner, J., Oltra, A., Paredes-Esquivel, C., ... & Ventura, M. (2022). Multiple invasions, Wolbachia and human-aided transport drive the genetic variability of Aedes albopictus in the Iberian Peninsula. Scientific Reports, 12(1), 1-15. 
  • Sherpa, S., Blum, M.G.B., Capblancq, T., Cumer, T., Rioux, D., & Després, L. (2019) Unravelling the invasion history of the Asian tiger mosquito in Europe. Molecular Ecology, Early View 29 April 2019
  • Scholte EJ, Dijkstra E, Ruijs H, Jacobs F, Takken W, Hofhuis A, et al. The Asian tiger mosquito in the Netherlands: should we worry? . Proceed Section Exp Appl Entomol. 2007;18 131-6.
  • Gatt P, Deeming JC, Schaffner F. First records of Aedes (Stegomyia) albopictus (Skuse) (Diptera: Culicidae) in Malta. Eu Mosq Bull. 2009;27 56-64.
  • Sherpa, S., Rioux, D., Pougnet-Lagarde, C., & Després, L. (2018) Genetic diversity and distribution differ between long-established and recently introduced populations in the invasive mosquito Aedes albopictus. Infection, Genetics and Evolution 58, 145-156
  • Eritja, R., Palmer, J.R., Roiz, D., Sanpera-Calbet, I., & Bartumeus, F. (2017) Direct Evidence of adult Aedes albopictus dispersal by car. Scientific Reports 7, 14399
  • Aranda, C., Eritja, R., & Roiz, D. (2006). First record and establishment of the mosquito Aedes albopictus in Spain. Medical and veterinary entomology, 20(1), 150-152.
  • Paupy C, Delatte H, Bagny L, Corbel V, Fontenille D (2009) Aedes albopictus, an arbovirus vector: from the darkness to the light. Microbes and infection / Institut Pasteur 11 (14–15): 1177–1185. pmid:19450706
  • Becker, N., Petric, D., Zgomba, M., Boase, C., Madon, M., Dahl, C., & Kaiser, A. (2010). Mosquitoes and their control. Springer Science & Business Media.
  • Jung SH, Kim D, Jung KS, Lee DK. 2021. Color preference for host-seeking activity of Aedes albopictus and Culex pipiens (Diptera: Culicidae). Journal of Medical Entomology tjab100
  • Pereira-dos-Santos T, Roiz D, Lourenço-de-Oliveira R, Paupy C. 2020. A systematic review: Is Aedes albopictus an efficient bridge vector for zoonotic arboviruses? Pathogens 9: 266
  • Joaquín Muñoz, Roger Eritja, Miguel Alcaide, Tomás Montalvo, Ramón C. Soriguer, Jordi Figuerola, Host-Feeding Patterns of Native Culex pipiens and Invasive Aedes albopictus Mosquitoes (Diptera: Culicidae) in Urban Zones From Barcelona, Spain, Journal of Medical Entomology, Volume 48, Issue 4, 1 July 2011, Pages 956 960, https://doi.org/10.1603/ME11016
  • Comissió Interinstitucional per a la Prevenció o Control del Mosquit Tigre a Catalunya. Estratègia per a la prevenció i el control del mosquit tigre a Catalunya. Abril 2011. 
    https://www.ecdc.europa.eu/en/disease-vectors/facts/mosquito-factsheets/aedes-albopictus
  • Leta S, Beyene TJ, De Clercq EM, Amenu K, Kraemer MUG, Revie CW. Global risk mapping for major diseases transmitted by Aedes aegypti and Aedes albopictus. Int J Infect Dis. 2018;67:25–35.
  • Lwande, O. W., Obanda, V., Lindström, A., Ahlm, C., Evander, M., Näslund, J., & Bucht, G. (2020). Globe-trotting Aedes aegypti and Aedes albopictus: risk factors for arbovirus pandemics. Vector-Borne and Zoonotic Diseases, 20(2), 71-81. https://www.ecdc.europa.eu/en/climate-change/climate-change-europe/vector-borne-diseases
  • Ministerio de Sanidad Servicios Sociales e Igualdad (MSSSI) (2016). Ministerio de Sanidad, Servicios Sociales e Igualdad. Plan Nacional de Preparación y Respuesta Frente a Enfermedades Transmitidas Por Vectores. Parte I: Dengue, Chikungunya y Zika. 77.
  • Agència de Salut Pública de Catalunya. (2022). Protocol per a la Vigilància i el Control de les Arbovirosis Transmeses per Mosquits a Catalunya. General Catalunya, 1–69.
  • Dente, M. G., Riccardo, F., Van Bortel, W., Marrama, L., Mollet, T., Derrough, T., ... & Declich, S. (2020). Enhancing preparedness for arbovirus infections with a One Health approach: the development and implementation of multisectoral risk assessment exercises. BioMed research international, 2020.
  • Bonnefoy, X., Kampen, H., and Sweeney, K. (2008). Public Health Significance of UrbanPests. Copenhagen: World Health Organization.
  • Montalvo T, Valsecchi A, Peracho V, Realp E. La vigilància i control de mosquits a Barcelona. Any 2021.Barcelona: Agència de Salut Pública de Barcelona; 2022.
  • Bueno-Marí, R., Drago, A., Montalvo, T., Dutto, M., & Becker, N. (2022). Classic and novel tools for mosquito control worldwide. In Ecology and Control of Vector-borne Diseases (pp. 234-238). Wageningen Academic Publishers.
     

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