, WHO, 2015.

, WHO, 2014.

J. L. Gallup and J. D. Sachs, The economic burden of malaria, Am J Trop Med Hyg, vol.64, pp.85-96, 2001.

P. E. Duffy and D. C. Kaslow, A novel malaria protein, Pfs28, and Pfs25 are genetically linked and synergistic as falciparum malaria transmission-blocking vaccines, Infect Immun, vol.65, pp.1109-1113, 1997.

R. C. Muirhead-thomson, Factors determining the true reservoir of infection of Plasmodium falciparum and Wuchereria bancrofti in a West African village, Trans R Soc Trop Med Hyg, vol.48, pp.208-225, 1954.

R. C. Muirhead-thomson, The malarial infectivity of an African village population to mosquitoes (Anopheles gambiae); a random xenodiagnostic survey, Am J Trop Med Hyg, vol.6, pp.971-979, 1957.

A. K. Githeko, A. D. Brandling-bennett, M. Beier, F. Atieli, M. Owaga et al., The reservoir of Plasmodium falciparum malaria in a holoendemic area of western Kenya, Trans R Soc Trop Med Hyg, vol.86, pp.355-358, 1992.

Y. T. Toure, O. Doumbo, A. Toure, M. Bagayoko, M. Diallo et al., Gametocyte infectivity by direct mosquito feeds in an area of seasonal malaria transmission: implications for Bancoumana, Mali as a transmission-blocking vaccine site, Am J Trop Med Hyg, vol.59, pp.481-486, 1998.

A. C. Gamage-mendis, J. Rajakaruna, R. Carter, and K. N. Mendis, Infectious reservoir of Plasmodium vivax and Plasmodium falciparum malaria in an endemic region of Sri Lanka, Am J Trop Med Hyg, vol.45, pp.479-487, 1991.

P. M. Graves, T. R. Burkot, R. Carter, J. A. Cattani, M. Lagog et al., Measurement of malarial infectivity of human populations to mosquitoes in the Madang area, Parasitology, vol.96, pp.251-263, 1988.

H. P. Awono-ambene, L. Diawara, and V. Robert, Comparison of direct and membrane feeding methods to infect Anopheles arabiensis with Plasmodium falciparum, Am J Trop Med Hyg, vol.64, pp.32-34, 2001.

S. Bonnet, L. C. Gouagna, R. E. Paul, I. Safeukui, J. Y. Meunier et al., Estimation of malaria transmission from humans to mosquitoes in two neighbouring villages in south Cameroon: evaluation and comparison of several indices, Trans R Soc Trop Med Hyg, vol.97, pp.53-59, 2003.

M. Diallo, Evaluation and optimization of membrane feeding compared to direct feeding as an assay for infectivity, Malar J, vol.7, p.248, 2008.

R. C. Team, A Language and Environment for Statistical Computing, 2015.

V. Russell, Response-surface methods in R, using RSM, J Stat Softw, pp.1-17, 2009.

D. Bates, M. Maechler, B. Bolker, and S. Walker, Fitting linear mixed-effects models using lme4, J Stat Softw, pp.1-48, 2015.

M. Van-der-kolk, S. J. De-vlas, and R. W. Sauerwein, Reduction and enhancement of Plasmodium falciparum transmission by endemic human sera, Int J Parasitol, vol.36, pp.1091-1095, 2006.

M. Van-der-kolk, D. Vlas, S. J. Saul, A. Van-de-vegte-bolmer, M. Eling et al., Evaluation of the standard membrane feeding assay (SMFA) for the determination of malaria transmission-reducing activity using empirical data, Parasitology, vol.130, pp.13-22, 2005.

T. Bousema, T. S. Churcher, I. Morlais, and R. R. Dinglasan, Can fieldbased mosquito feeding assays be used for evaluating transmission-blocking interventions?, Trends Parasitol, vol.29, pp.53-59, 2013.

T. Bousema, Mosquito feeding assays to determine the infectiousness of naturally infected Plasmodium falciparum gametocyte carriers, PLoS One, vol.7, p.42821, 2012.

A. Ouedraogo, A protocol for membrane feeding assays to determine the infectiousness of P. falciparum naturally infected individuals to Anopheles gambiae, MWJ, vol.4, p.16, 2013.

M. G. Novak, W. J. Berry, and W. A. Rowley, Comparison of four membranes for artificially bloodfeeding mosquitoes, J Am Mosq Control Assoc, vol.7, pp.327-329, 1991.

M. Harada, H. Matsuoka, and S. Suguri, A convenient mosquito membrane feeding method, Medical and Entomological Zoology, pp.103-105, 1996.

D. T. Mourya, M. D. Gokhale, P. V. Barde, and V. S. Padbidri, A simple artificial membrane-feeding method for mosquitoes, Trans R Soc Trop Med Hyg, vol.94, p.460, 2000.

M. Tseng, A simple parafilm M-based method for bloodfeeding Aedes aegypti and Aedes albopictus (Diptera: Culicidae), J Med Entomol, vol.40, pp.588-589, 2003.

C. Montes, C. Cuadrillero, and D. Vilella, Maintenance of a laboratory colony of Cimex lectularius (Hemiptera: Cimicidae) using an artificial feeding technique, J Med Entomol, vol.39, pp.675-679, 2002.

F. Hawking, The 24-hour periodicity of microfilariae: Biological mechanisms responsible for its production and control, Proc R Soc Lond B Biol Sci, vol.169, pp.59-76, 1967.

A. M. Khan, P. Dutta, S. Das, A. K. Pathak, P. Sarmah et al., Microfilarial periodicity of Wuchereria bancrofti in Assam, northeast India, J Vector Borne Dis, vol.52, pp.208-212, 2015.

L. Braack, R. Hunt, L. Koekemoer, A. Gericke, G. Munhenga et al., Biting behavior of African malaria vectors: where do the main vector species bite on the human body? Parasite Vectors, vol.8, p.76, 2015.

S. M. Magesa, Y. K. Mdira, J. A. Akida, I. C. Bygbjerg, and P. H. Jakobsen, Observations on the periodicity of Plasmodium falciparum gametocytes in natural human infections, Acta Trop, vol.76, pp.239-246, 2000.

, OPTIMIZING MOSQUITO FEEDING ASSAYS