Bibliography

337

21

Fay, R., Perry, A, (1965)

Laboratory studies of ovipositional preferences of Aedes aegypti, Mosquito News, 1965; 25(3):276-281.

22

Alves J, Gomes B, Rodrigues R, Silva J, Arez AP and Pinto J, (2010)

Mosquito fauna on the Cape Verde Islands (West Africa): an update on species distribution and a new finding, Journal of Vector Ecology 35: 307–312,

https://doi:10.1111/j.1948-7134.2010.00087.X.

23

Leal SDV, Fernandes Varela IB, Lopes Gonçalves AAL, Sousa Monteiro DD, Ramos de Sousa CM, Lima Mendonça MDL, De Pina AJ, Alves MJ, Osório HC,

(2020)

Abundance and Updated Distribution of Aedes aegypti (Diptera: Culicidae) in Cabo Verde Archipelago: A Neglected Threat to Public Health, Int J Environ

Res Public Health, 2020 Feb 17, 17(4):1291, DOI:10.3390/ijerph17041291.

24

Regis L, Monteiro AM, Melo-Santos MA, Silveira JC Jr, Furtado AF, Acioli RV, Santos GM, Nakazawa M, Carvalho MS, Ribeiro PJ Jr, Souza WV, (2008)

Developing new approaches for detecting and preventing Aedes aegypti population outbreaks: basis for surveillance, alert and control system, Mem Inst

Oswaldo Cruz, 2008, 103(1):50-9, DOI:10.1590/s0074-02762008000100008.

25

Barbosa RM, Regis LN, (2011)

Monitoring temporal fluctuations of Culex quinquefasciatus using oviposition traps containing attractant and larvicide in an urban environment in Recife,

Brazil, Mem Inst Oswaldo Cruz, 2011 Jun, 106(4):451-5, DOI:10.1590/s0074-02762011000400011.

26

Barbosa RM, Souto A, Eiras AE, Regis L, (2007)

Laboratory and field evaluation of an oviposition trap for Culex quinquefasciatus (Diptera: Culicidae), Mem Inst Oswaldo Cruz, 2007 Jun, 102(4):523-9,

DOI:10.1590/s0074-02762007005000058.

27

Xavier MN, Santos EM, Silva AP, Gomes Júnior PP, Barbosa RM, Oliveira CM, (2018)

Field evaluation of sticky BR-OVT traps to collect culicids eggs and adult mosquitoes inside houses, Rev Soc Bras Med Trop, 2018, 51:297-303.

28

Alvarado-Castro V, Paredes-Solís S, Nava-Aguilera E, Morales-Pérez A, Alarcón-Morales L, Balderas-Vargas NA, Andersson N, (2017)

Assessing the effects of interventions for Aedes aegypti control: systematic review and meta-analysis of cluster randomised controlled trials, BMC Public

Health, 2017 May 30, 17(Suppl 1):384, DOI:10.1186/s12889-017-4290-z.

29

Bouzid M, Brainard J, Hooper L, Hunter PR, (2016)

Public Health Interventions for Aedes Control in the Time of Zikavirus- A Meta-Review on Effectiveness of Vector Control Strategies, PLoS Negl Trop Dis,

2016 Dec 7, 10(12):e0005176, DOI:10.1371/journal.pntd.0005176.

30

Achee NL, Gould F, Perkins TA, Reiner RC Jr, Morrison AC, Ritchie SA, Gubler DJ, Teyssou R, Scott TW, (2015)

A critical assessment of vector control for dengue prevention, PLoS Negl Trop Dis, 2015 May 7, 9(5):e0003655, DOI:10.1371/journal.pntd.

0003655.

31

Wilke ABB, Beier JC, Benelli G, (2019)

Complexity of the relationship between global warming and urbanization - an obscure future for predicting increases in vector-borne infectious diseases, Curr

Opin Insect Sci, 2019 Oct;35, 1-9. DOI:10.1016/j.cois.2019.06.002.

32

Otmani Del Barrio M, Simard F, Caprara A, (2018)

Supporting and strengthening research on urban health interventions for the prevention and control of vector-borne and other infectious diseases of poverty:

scoping reviews and research gap analysis, Infect Dis Poverty, 2018 Sep 3, 7(1):94, DOI:10.1186/s40249-018-0462-z.

33

Schiøler KL, Alifrangis M, Kitron U, Konradsen F, (2016)

Insecticidal Paints: A Realistic Approach to Vector Control?, PLoS Negl Trop Dis, 2016 Apr 21, 10(4):e0004518, DOI:10.1371/journal.pntd.

0004518.

34

Mosqueira B, Duchon S, Chandre F, Hougard JM, Carnevale P, Mas-Coma S, (2010)

Efficacy of an insecticide paint against insecticide susceptible and resistant mosquitoes - part 1: laboratory evaluation, Malar J., 2010,25;9:340, DOI:10.

1186/1475-2875-9-340.

35

World Health Organization, (2006)

Guidelines for testing mosquito adulticides for indoor residual spraying and treatment of mosquito nets, 2006, https://apps.who.int/iris/handle/

10665/69296.