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6th Joint Meeting Acoustical Society of America and Acoustical Society of Japan

Activity: Presenting or Organising an EventConference, workshop, seminar or course

Description

4aABb9. Wax moths: ultrasonic hearing and potential pest control.
Lara Dıaz-Garcıa (Ctr. for Ultrasonic Eng., Univ. of Strathclyde, 99 George St., Glasgow G1 1RD, United Kingdom, [email protected]), Ryo Nakano (Inst. for Plant Protection, National Agriculture and Food Res. Or- ganization, Tsukuba, Japan), Andrew Reid, and James Windmill (Ctr. for Ultrasonic Eng., Univ. of Strathclyde, Glasgow, United Kingdom)
Both Galleria mellonella and Achroia grisella, known as greater and lesser wax moths, respectively, are damaging to the apiculture industry. Wax moths lay their eggs on bee hives and, upon hatching, their larvae feed on various products of the bee colony and dig tunnels, sometimes causing so much damage that the bees end up abandoning the hive completely. A sus- tainable but efficient pest control technique that does not harm bees or other non-targeted species is desirable for managing wax moth pests. Their ultra- sonic hearing, characteristic of both species and used for bat avoidance, is exploitable for pest control. Additionally, the lesser wax moth presents sound-mediated courtship and monoaural directional hearing, unusual in moths. Firstly, the greater wax moth’s (the most damaging of the two) neu- ral response is studied, using broadband ultrasound to determine peak sensi- tivity and common Japanese bats’ temporal patterns of echolocation; an optimal ultrasonic signal for deterrence is thus determined. Secondly, the lesser wax moth’s directional hearing is studied through finite element mod- elling, aiming to capture its essential features in a simplified model of its eardrum and explain its monoaural directional hearing. Both of these results contribute to a better understanding and management of wax moth pests.
Period4 Dec 2025
Event typeConference
LocationHonolulu, United StatesShow on map
Degree of RecognitionInternational

Keywords

  • wax moth
  • ultrasound
  • bioacoustics
  • pest control
  • insect hearing