6.
Trewin B, Pagendam D, Johnson B, Paton C, Snoad N, Ritchie S
. Mark-release-recapture of male Aedes aegypti (Diptera: Culicidae): Use of rhodamine B to estimate movement, mating and population parameters in preparation for an incompatible male program. PLoS Negl Trop Dis. 2021; 15(6):e0009357.
PMC: 8183986.
DOI: 10.1371/journal.pntd.0009357.
View
7.
David C, Kennedy J, Ludlow A, Perry J, Wall C
. A reappraisal of insect flight towards a distant point source of wind-borne odor. J Chem Ecol. 2014; 8(9):1207-15.
DOI: 10.1007/BF00990753.
View
8.
Carde R, Willis M
. Navigational strategies used by insects to find distant, wind-borne sources of odor. J Chem Ecol. 2008; 34(7):854-66.
DOI: 10.1007/s10886-008-9484-5.
View
9.
Reynolds D, Chapman J, Harrington R
. The migration of insect vectors of plant and animal viruses. Adv Virus Res. 2006; 67:453-517.
DOI: 10.1016/S0065-3527(06)67012-7.
View
10.
Meikle W, Patt J
. The effects of temperature, diet, and other factors on development, survivorship, and oviposition of Aethina tumida (Coleoptera: Nitidulidae). J Econ Entomol. 2011; 104(3):753-63.
DOI: 10.1603/ec10364.
View
11.
Grilli M, Fachinetti R
. The Role of Sex and Mating Status in the Expansion Process of Arhopalus rusticus (Coleoptera: Cerambycidae)-an Exotic Cerambycid in Argentina. Environ Entomol. 2017; 46(3):714-721.
DOI: 10.1093/ee/nvx066.
View
12.
Tobin P, Robinet C
. Advances in understanding and predicting the spread of invading insect populations. Curr Opin Insect Sci. 2022; 54:100985.
DOI: 10.1016/j.cois.2022.100985.
View
13.
Ellis Jr J, Neumann P, Hepburn R, Elzen P
. Longevity and reproductive success of Aethina tumida (Coleoptera: Nitidulidae) fed different natural diets. J Econ Entomol. 2002; 95(5):902-7.
DOI: 10.1603/0022-0493-95.5.902.
View
14.
Idrissou F, Huang Q, Yanez O, Neumann P
. International beeswax trade facilitates small hive beetle invasions. Sci Rep. 2019; 9(1):10665.
PMC: 6650460.
DOI: 10.1038/s41598-019-47107-6.
View
15.
Renault D, Laparie M, McCauley S, Bonte D
. Environmental Adaptations, Ecological Filtering, and Dispersal Central to Insect Invasions. Annu Rev Entomol. 2017; 63:345-368.
DOI: 10.1146/annurev-ento-020117-043315.
View
16.
Jervis M, Ellers J, Harvey J
. Resource acquisition, allocation, and utilization in parasitoid reproductive strategies. Annu Rev Entomol. 2007; 53:361-85.
DOI: 10.1146/annurev.ento.53.103106.093433.
View
17.
Jensen A, Aronstein K, Flores J, Vojvodic S, Palacio M, Spivak M
. Standard methods for fungal brood disease research. J Apic Res. 2013; 52(1).
PMC: 3816652.
DOI: 10.3896/IBRA.1.52.1.13.
View
18.
Evenden M, Whitehouse C, Sykes J
. Factors influencing flight capacity of the mountain pine beetle (Coleoptera: Curculionidae: Scolytinae). Environ Entomol. 2013; 43(1):187-96.
DOI: 10.1603/EN13244.
View
19.
Jahant-Miller C, Miller R, Parry D
. Size-dependent flight capacity and propensity in a range-expanding invasive insect. Insect Sci. 2021; 29(3):879-888.
DOI: 10.1111/1744-7917.12950.
View
20.
Stohlgren T, Schnase J
. Risk analysis for biological hazards: what we need to know about invasive species. Risk Anal. 2006; 26(1):163-73.
DOI: 10.1111/j.1539-6924.2006.00707.x.
View