Infrared light sensors permit rapid recording of wingbeat frequency and bioacoustic species identification of mosquitoes

Author:

Kim Dongmin,DeBriere Terry J.,Cherukumalli Satish,White Gregory S.,Burkett-Cadena Nathan D.

Abstract

AbstractRecognition and classification of mosquitoes is a critical component of vector-borne disease management. Vector surveillance, based on wingbeat frequency and other parameters, is becoming increasingly important in the development of automated identification systems, but inconsistent data quality and results frequently emerge from different techniques and data processing methods which have not been standardized on wingbeat collection of numerous species. We developed a simple method to detect and record mosquito wingbeat by multi-dimensional optical sensors and collected 21,825 wingbeat files from 29 North American mosquito species. In pairwise comparisons, wingbeat frequency of twenty six species overlapped with at least one other species. No significant differences were observed in wingbeat frequencies between and within individuals of Culex quinquefasciatus over time. This work demonstrates the potential utility of quantifying mosquito wingbeat frequency by infrared light sensors as a component of an automated mosquito identification system. Due to species overlap, wingbeat frequency will need to integrate with other parameters to accurately delineate species in support of efficient mosquito surveillance, an important component of disease intervention.

Funder

American Mosquito Control Association

TrakitNow, LLC

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference47 articles.

1. World Health Organization and UNICEF/UNDP/World Bank/WHO Special Programme for Research and Training in Tropical Diseases Global Vector Control Response 2017–2030, p. 51 (World Health Organization, 2017).

2. Fonkwo, P. N. Pricing infectious disease: the economic and health implications of infectious diseases. EMBO Rep. 9(S1), S13–S17 (2008).

3. United Nations Development Programme. A socio-economic impact assessment of the Zika virus in Latin America and the Caribbean: with a focus on Brazil (UNDP, 2017).

4. Benelli, G. Research in mosquito control: current challenges for a brighter future. Parasitol. Res. 114(8), 2801–2805 (2015).

5. Rund, S. S. et al. MIReAD, a minimum information standard for reporting arthropod abundance data. Sci. Data 6(1), 1–8 (2019).

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