Unmanned aircraft systems as a new source of disturbance for wildlife: A systematic review M Mulero-Pázmány, S Jenni-Eiermann, N Strebel, T Sattler, JJ Negro, ... PloS one 12 (6), e0178448, 2017 | 323 | 2017 |
Remotely piloted aircraft systems as a rhinoceros anti-poaching tool in Africa M Mulero-Pázmány, R Stolper, LD Van Essen, JJ Negro, T Sassen PloS one 9 (1), e83873, 2014 | 287 | 2014 |
Drones for conservation in protected areas: Present and future J Jiménez López, M Mulero-Pázmány Drones 3 (1), 10, 2019 | 275 | 2019 |
Unmanned aircraft systems for studying spatial abundance of ungulates: relevance to spatial epidemiology JA Barasona, M Mulero-Pázmány, P Acevedo, JJ Negro, MJ Torres, ... PloS one 9 (12), e115608, 2014 | 124 | 2014 |
The eye in the sky: combined use of unmanned aerial systems and GPS data loggers for ecological research and conservation of small birds A Rodríguez, JJ Negro, M Mulero, C Rodríguez, J Hernández-Pliego, ... PLoS One 7 (12), e50336, 2012 | 117 | 2012 |
Adapting astronomical source detection software to help detect animals in thermal images obtained by unmanned aerial systems SN Longmore, RP Collins, S Pfeifer, SE Fox, M Mulero-Pázmány, ... International Journal of Remote Sensing 38 (8-10), 2623-2638, 2017 | 88 | 2017 |
Unmanned Aircraft Systems complement biologging in spatial ecology studies JJ Mulero-Pázmány, M., Barasona, J.A., Acevedo, P., Vicente, J., Negro Ecology and Evolution, 2015 | 58* | 2015 |
Remote water sampling using flying robots M Schwarzbach, M Laiacker, M Mulero-Pazmany, K Kondak 2014 International Conference on Unmanned Aircraft Systems (ICUAS), 72-76, 2014 | 57 | 2014 |
Decoration Increases the Conspicuousness of Raptor Nests SF Canal D, Mulero-Pázmány M, Negro JJ PLoS ONE 11 (7), 2016 | 33 | 2016 |
Thermal-drones as a safe and reliable method for detecting subterranean peat fires C Burke, S Wich, K Kusin, O McAree, ME Harrison, B Ripoll, Y Ermiasi, ... Drones 3 (1), 23, 2019 | 31 | 2019 |
A low cost way for assessing bird risk hazards in power lines: Fixed-wing small unmanned aircraft systems M Mulero-Pázmány, JJ Negro, M Ferrer Journal of Unmanned Vehicle Systems 2 (1), 5-15, 2013 | 31 | 2013 |
Noninvasive technologies for primate conservation in the 21st century AK Piel, A Crunchant, IE Knot, C Chalmers, P Fergus, M Mulero-Pázmány, ... International Journal of Primatology, 1-35, 2022 | 27 | 2022 |
Ungulate behavioral responses to the heterogeneous road‐network of a touristic protected area in Africa M Mulero‐Pázmány, M D'Amico, M González‐Suárez Journal of Zoology 298 (4), 233-240, 2016 | 26 | 2016 |
The relevance of host overcrowding in wildlife epidemiology: A new spatially explicit aggregation index E Laguna, JA Barasona, R Triguero-Ocaña, M Mulero-Pázmány, JJ Negro, ... Ecological Indicators 84, 695-700, 2018 | 23 | 2018 |
Drones: una nueva tecnología para el estudio y monitoreo de fauna y hábitats. S Mandujano, M Pazmany, A Rísquez-Valdepeña Agroproductividad. 2017; 10: 79–84. 10 (10), 79-84, 2017 | 21 | 2017 |
Measuring disturbance at swift breeding colonies due to the visual aspects of a drone: a quasi-experiment study GP Mesquita, JD Rodríguez-Teijeiro, SA Wich, M Mulero-Pázmány Current Zoology 67 (2), 157-163, 2021 | 20 | 2021 |
Steps to build a DIY low-cost fixed-wing drone for biodiversity conservation GP Mesquita, JD Rodríguez-Teijeiro, RR de Oliveira, M Mulero-Pázmány PloS one 16 (8), e0255559, 2021 | 12 | 2021 |
Species’ Traits as Predictors of Avoidance towards Roads and Traffic GSM Duffett D., D’ Amico M., Mulero-Pázmány M Ecological Indicators 115 (106402), 2020 | 12 | 2020 |
A practical approach with drones, smartphones, and tracking tags for potential real-time animal tracking GP Mesquita, M Mulero-Pázmány, SA Wich, JD Rodríguez-Teijeiro Current Zoology 69 (2), 208-214, 2023 | 11 | 2023 |
Development of a fixed-wing drone system for aerial insect sampling M Mulero-Pázmány, JR Martínez-de Dios, AG Popa-Lisseanu, RJ Gray, ... Drones 6 (8), 189, 2022 | 10 | 2022 |