@article{fdi:010067087, title = {{T}rapping the tiger : efficacy of the novel bg-sentinel 2 with several attractants and carbon dioxide for collecting {A}edes albopictus ({D}iptera : {C}ulicidae) in {S}outhern {F}rance}, author = {{R}oiz, {D}avid and {D}uperier, {S}. and {R}oussel, {M}. and {B}ouss{\`e}s, {P}hilippe and {F}ontenille, {D}idier and {S}imard, {F}r{\'e}d{\'e}ric and {P}aupy, {C}hristophe}, editor = {}, language = {{ENG}}, abstract = {{T}argeted trapping of mosquito disease vectors plays an important role in the surveillance and control of mosquito-borne diseases. {T}he {A}sian tiger mosquito, {A}edes albopictus ({S}kuse), is an invasive species, which is spreading throughout the world, and is a potential vector of 24 arboviruses, particularly efficient in the transmission of chikungunya, dengue, and zika viruses. {U}sing a 4 x 4 {L}atin square design, we assessed the efficacy of the new {BG}-{S}entinel 2 mosquito trap using the attractants {BG}-lure and ({R})-1-octen-3-ol cartridge, alone or in combination, and with and without carbon dioxide, for the field collection of {A}e. albopictus mosquitoes. {W}e found a synergistic effect of attractant and carbon dioxide that significantly increased twofold to fivefold the capture rate of {A}e. albopictus. {I}n combination with carbon dioxide, {BG}-lure cartridge is more effective than ({R})-1-octen-3-ol in attracting females, while a combination of both attractants and carbon dioxide is the most effective for capturing males. {I}n the absence of carbon dioxide, {BG}-lure cartridge alone did not increase the capture of males or females when compared with an unbaited trap. {H}owever, the synergistic effect of carbon dioxide and {BG}-lure makes this the most efficient combination in attracting {A}e. albopictus.}, keywords = {{A}edes albopictus ; mosquito trapping ; {BG}-{S}entinel ; trap ; attractant ; {FRANCE}}, booktitle = {}, journal = {{J}ournal of {M}edical {E}ntomology}, volume = {53}, numero = {2}, pages = {460--465}, ISSN = {0022-2585}, year = {2016}, DOI = {10.1093/jme/tjv184}, URL = {https://www.documentation.ird.fr/hor/fdi:010067087}, }