Clarke, John Frederick Gates (1986). "Pyralidae and Microlepidoptera of the Marquesas Archipelago". Smithsonian Contributions to Zoology. 416 (416): 1–485. doi:10.5479/si.00810282.416.
Jia, Feng-You; Greenfield, Michael D.; Collins, Robert D. (2001). "Ultrasonic Signal Competition Between Male Wax Moths". Journal of Insect Behavior. 14 (1): 19–33. doi:10.1023/A:1007893411662. S2CID2391275.
Spangler, Hayward G. (1984). "Silence as a defense against predatory bats in two species of calling insects". The Southwestern Naturalist. 29 (4): 481–488. doi:10.2307/3671001. JSTOR3671001.
Jang, Yikweon; Greenfield, Michael D. (1996). "Ultrasonic communication and sexual selection in wax moths: female choice based on energy and asynchrony of male signals". Animal Behaviour. 51 (5): 1095–1106. doi:10.1006/anbe.1996.0111. S2CID53174298.
Greenfield, Michael D. (1981). "Moth Sex Pheromones: An Evolutionary Perspective". The Florida Entomologist. 64 (1): 4–17. doi:10.2307/3494597. JSTOR3494597.
Greenfield, Michael D.; Medlock, Chelsea (2007). "Temperature coupling as an emergent property: parallel thermal effects on male song and female response do not contribute to species recognition in an acoustic moth". Evolution. 61–7 (7): 1590–1599. doi:10.1111/j.1558-5646.2007.00140.x. PMID17598742. S2CID22700544.
Burges, H.D.; Bailey, L. (1968). "Control of the Greater and Lesser Wax Moths (Galleria mellonella and Achroia grisella) with Bacillus thuringiensis". Journal of Invertebrate Pathology. 11 (2): 184–195. doi:10.1016/0022-2011(68)90148-1. PMID5672009.
Spangler, Hayward G. (1984). "Silence as a defense against predatory bats in two species of calling insects". The Southwestern Naturalist. 29 (4): 481–488. doi:10.2307/3671001. JSTOR3671001.
Greenfield, Michael D. (1981). "Moth Sex Pheromones: An Evolutionary Perspective". The Florida Entomologist. 64 (1): 4–17. doi:10.2307/3494597. JSTOR3494597.
Greenfield, Michael D.; Medlock, Chelsea (2007). "Temperature coupling as an emergent property: parallel thermal effects on male song and female response do not contribute to species recognition in an acoustic moth". Evolution. 61–7 (7): 1590–1599. doi:10.1111/j.1558-5646.2007.00140.x. PMID17598742. S2CID22700544.
Burges, H.D.; Bailey, L. (1968). "Control of the Greater and Lesser Wax Moths (Galleria mellonella and Achroia grisella) with Bacillus thuringiensis". Journal of Invertebrate Pathology. 11 (2): 184–195. doi:10.1016/0022-2011(68)90148-1. PMID5672009.
Jia, Feng-You; Greenfield, Michael D.; Collins, Robert D. (2001). "Ultrasonic Signal Competition Between Male Wax Moths". Journal of Insect Behavior. 14 (1): 19–33. doi:10.1023/A:1007893411662. S2CID2391275.
Jang, Yikweon; Greenfield, Michael D. (1996). "Ultrasonic communication and sexual selection in wax moths: female choice based on energy and asynchrony of male signals". Animal Behaviour. 51 (5): 1095–1106. doi:10.1006/anbe.1996.0111. S2CID53174298.
Greenfield, Michael D.; Medlock, Chelsea (2007). "Temperature coupling as an emergent property: parallel thermal effects on male song and female response do not contribute to species recognition in an acoustic moth". Evolution. 61–7 (7): 1590–1599. doi:10.1111/j.1558-5646.2007.00140.x. PMID17598742. S2CID22700544.