Unmanned aerial vehicles for surveillance and control of vectors of malaria and other vector-borne diseases

被引:16
作者
Mechan, Frank [1 ]
Bartonicek, Zikmund [2 ]
Malone, David [3 ]
Lees, Rosemary Susan [1 ,4 ]
机构
[1] Univ Liverpool Liverpool Sch Trop Med, Dept Vector Biol, Liverpool L3 5QA, England
[2] Univ Liverpool Liverpool Sch Trop Med, Innovat Vector Control Consortium IVCC, Liverpool L3 5QA, England
[3] Bill & Melinda Gates Fdn BMGF, 500 5th Ave N, Seattle, WA 98109 USA
[4] Univ Liverpool Liverpool Sch Trop Med, Innovat Impact I2I, Liverpool L3 5QA, England
关键词
Unmanned aerial vehicle (UAV); Unmanned aerial system (UAS); Mosquito control; Surveillance; Vector-borne diseases; Drones; Public health; REMOTELY-SENSED DATA; AEDES-AEGYPTI; AIRCRAFT; DRONES; UAV; DISPERSAL; HABITAT; IMAGERY; AFRICA; DENGUE;
D O I
10.1186/s12936-022-04414-0
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
The use of Unmanned Aerial Vehicles (UAVs) has expanded rapidly in ecological conservation and agriculture, with a growing literature describing their potential applications in global health efforts including vector control. Vector-borne diseases carry severe public health and economic impacts to over half of the global population yet conventional approaches to the surveillance and treatment of vector habitats is typically laborious and slow. The high mobility of UAVs allows them to reach remote areas that might otherwise be inaccessible to ground-based teams. Given the rapidly expanding examples of these tools in vector control programmes, there is a need to establish the current knowledge base of applications for UAVs in this context and assess the strengths and challenges compared to conventional methodologies. This review aims to summarize the currently available knowledge on the capabilities of UAVs in both malaria control and in vector control more broadly in cases where the technology could be readily adapted to malaria vectors. This review will cover the current use of UAVs in vector habitat surveillance and deployment of control payloads, in comparison with their existing conventional approaches. Finally, this review will highlight the logistical and regulatory challenges in scaling up the use of UAVs in malaria control programmes and highlight potential future developments.
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页数:11
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共 98 条
[51]   Safety and privacy regulations for unmanned aerial vehicles: A multiple comparative analysis [J].
Lee, Dasom ;
Hess, David J. ;
Heldeweg, Michiel A. .
TECHNOLOGY IN SOCIETY, 2022, 71
[52]   AN UNMANNED AERIAL VEHICLE-MOUNTED COLD MIST SPRAY OF PERMETHRIN AND TETRAMETHYLFLUTHRIN TARGETING AEDES ALBOPICTUS IN CHINA [J].
Li, Chun-Xiao ;
Zhang, Ying-Mei ;
Dong, Yan-De ;
Zhou, Ming-Hao ;
Zhang, Heng-Duan ;
Chen, Hong-Na ;
Tian, Ye ;
Yang, Wei-Fang ;
Wu, Xiao-Qun ;
Chu, Hong-Liang ;
Zhao, Tong-Yan .
JOURNAL OF THE AMERICAN MOSQUITO CONTROL ASSOCIATION, 2016, 32 (01) :59-62
[53]   A low-cost and open-source platform for automated imaging [J].
Lien, Max R. ;
Barker, Richard J. ;
Ye, Zhiwei ;
Westphall, Matthew H. ;
Gao, Ruohan ;
Singh, Aditya ;
Gilroy, Simon ;
Townsend, Philip A. .
PLANT METHODS, 2019, 15 (1)
[54]   Daily survival rates and dispersal of Aedes aegypti females in Rio de Janeiro, Brazil [J].
Maciel-De-Freitas, Rafael ;
Codeco, Claudia Torres ;
Lourenco-De-Oliveira, Ricardo .
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2007, 76 (04) :659-665
[55]  
MACONDO, NETW US DRON MAL VEC
[56]   On the Use of Unmanned Aerial Systems for Environmental Monitoring [J].
Manfreda, Salvatore ;
McCabe, Matthew F. ;
Miller, Pauline E. ;
Lucas, Richard ;
Madrigal, Victor Pajuelo ;
Mallinis, Giorgos ;
Ben Dor, Eyal ;
Helman, David ;
Estes, Lyndon ;
Ciraolo, Giuseppe ;
Mullerova, Jana ;
Tauro, Flavia ;
de Lima, M. Isabel ;
de Lima, Jao L. M. P. ;
Maltese, Antonino ;
Frances, Felix ;
Caylor, Kelly ;
Kohv, Marko ;
Perks, Matthew ;
Ruiz-Perez, Guiomar ;
Su, Zhongbo ;
Vico, Giulia ;
Toth, Brigitta .
REMOTE SENSING, 2018, 10 (04)
[57]   Comparison of Ground Release and Drone-Mediated Aerial Release of Aedes aegypti Sterile Males in Southern Mexico: Efficacy and Challenges [J].
Marina, Carlos F. ;
Liedo, Pablo ;
Bond, J. Guillermo ;
Osorio, Adriana R. ;
Valle, Javier ;
Angulo-Kladt, Roberto ;
Gomez-Simuta, Yeudiel ;
Fernandez-Salas, Ildefonso ;
Dor, Ariane ;
Williams, Trevor .
INSECTS, 2022, 13 (04)
[58]   Intercomparison of UAV, Aircraft and Satellite Remote Sensing Platforms for Precision Viticulture [J].
Matese, Alessandro ;
Toscano, Piero ;
Di Gennaro, Salvatore Filippo ;
Genesio, Lorenzo ;
Vaccari, Francesco Primo ;
Primicerio, Jacopo ;
Belli, Claudio ;
Zaldei, Alessandro ;
Bianconi, Roberto ;
Gioli, Beniamino .
REMOTE SENSING, 2015, 7 (03) :2971-2990
[59]   Field Effectiveness of Drones to Identify Potential Aedes aegypti Breeding Sites in Household Environments from Tapachula, a Dengue-Endemic City in Southern Mexico [J].
Mayela Valdez-Delgado, Kenia ;
Moo-Llanes, David A. ;
Danis-Lozano, Rogelio ;
Alberto Cisneros-Vazquez, Luis ;
Flores-Suarez, Adriana E. ;
Ponce-Garcia, Gustavo ;
Medina-De La Garza, Carlos E. ;
Diaz-Gonzalez, Esteban E. ;
Fernandez-Salas, Ildefonso .
INSECTS, 2021, 12 (08)
[60]   Assessment of the effect of larval source management and house improvement on malaria transmission when added to standard malaria control strategies in southern Malawi: study protocol for a cluster-randomised controlled trial [J].
McCann, Robert S. ;
van den Berg, Henk ;
Diggle, Peter J. ;
van Vugt, Michele ;
Terlouw, Dianne J. ;
Phiri, Kamija S. ;
Di Pasquale, Aurelio ;
Maire, Nicolas ;
Gowelo, Steven ;
Mburu, Monicah M. ;
Kabaghe, Alinune N. ;
Mzilahowa, Themba ;
Chipeta, Michael G. ;
Takken, Willem .
BMC INFECTIOUS DISEASES, 2017, 17