Continuous monitoring of aerial density and circadian rhythms of flying insects in a semi-urban environment
Document Type
Article
Publication Date
11-1-2021
Abstract
Although small in size, insects are a quintessential part of terrestrial ecosystems due to their large number and diversity. While captured insects can be thoroughly studied in laboratory conditions, their population dynamics and abundance in the wild remain largely unknown due to the lack of accurate methodologies to count them. Here, we present the results of a field experiment where the activity of insects has been monitored continuously over 3 months using an entomological stand-off optical sensor (ESOS). Because its near-infrared laser is imperceptible to insects, the instrument provides an unbiased and absolute measurement of the aerial density (flying insect/m3) with a temporal resolution down to the minute. Multiple clusters of insects are differentiated based on their wingbeat frequency and ratios between wing and body optical cross-sections. The collected data allowed for the study of the circadian rhythm and daily activities as well as the aerial density dynamic over the whole campaign for each cluster individually. These measurements have been compared with traps for validation of this new methodology. We believe that this new type of data can unlock many of the current limitations in the collection of entomological data, especially when studying the population dynamics of insects with large impacts on our society, such as pollinators or vectors of infectious diseases.
Identifier
85119621829 (Scopus)
Publication Title
Plos One
External Full Text Location
https://doi.org/10.1371/journal.pone.0260167
e-ISSN
19326203
PubMed ID
34793570
Issue
11 November
Volume
16
Grant
R21AI153732
Fund Ref
National Institute of Allergy and Infectious Diseases
Recommended Citation
Genoud, Adrien P.; Williams, Gregory M.; and Thomas, Benjamin P., "Continuous monitoring of aerial density and circadian rhythms of flying insects in a semi-urban environment" (2021). Faculty Publications. 3700.
https://digitalcommons.njit.edu/fac_pubs/3700