Coordinated Sampling of Microorganisms Over Freshwater and Saltwater Environments Using an Unmanned Surface Vehicle (USV) and a Small Unmanned Aircraft System (sUAS)
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David G. Schmale | Linsey C. Marr | Regina Hanlon | Craig Powers | R. Hanlon | D. Schmale | L. Marr | A. Prussin | H. Grothe | Hinrich Grothe | Aaron J. Prussin | Craig W. Powers
[1] U. Pöschl,et al. Bioprecipitation: a feedback cycle linking Earth history, ecosystem dynamics and land use through biological ice nucleators in the atmosphere , 2014, Global change biology.
[2] Jean-Pierre Blanchet,et al. Modeling sea-salt aerosols in the atmosphere 1. Model development , 1997 .
[3] R. Bonney,et al. Citizen Science: A Developing Tool for Expanding Science Knowledge and Scientific Literacy , 2009 .
[4] G. Zeng,et al. A review on airborne microorganisms in particulate matters: Composition, characteristics and influence factors. , 2018, Environment international.
[5] Ulrich Pöschl,et al. Ice nucleation activity in the widespread soil fungus Mortierella alpina , 2015 .
[6] P. Chylek,et al. Contribution of sea salt aerosol to the planetary clear-sky albedo , 1997 .
[7] Stephan F. J. De Wekker,et al. Wind Estimation in the Lower Atmosphere Using Multirotor Aircraft , 2017 .
[8] W. F. Todd,et al. Evaluation of eight bioaerosol samplers challenged with aerosols of free bacteria. , 1992, American Industrial Hygiene Association journal.
[9] K. Yahara,et al. Population-genomic insights into emergence, crop adaptation and dissemination of Pseudomonas syringae pathogens , 2016, Microbial genomics.
[10] Noah Fierer,et al. Home Life: Factors Structuring the Bacterial Diversity Found within and between Homes , 2013, PloS one.
[11] C. Duarte,et al. Resolving the abundance and air-sea fluxes of airborne microorganisms in the North Atlantic Ocean , 2014, Front. Microbiol..
[12] Y. Cormier,et al. Comparison of Endotoxin Exposure Assessment by Bioaerosol Impinger and Filter-Sampling Methods , 2001, Applied and Environmental Microbiology.
[13] M. Keywood,et al. Cloud condensation nuclei over the Southern Ocean: wind dependence and seasonal cycles , 2016 .
[14] H. Antoun,et al. Ice Nucleation Activity in Fusarium acuminatum and Fusarium avenaceum , 1992, Applied and environmental microbiology.
[15] R. Jaenicke,et al. Primary biological aerosol particles in the atmosphere: a review , 2012 .
[16] G. Holland,et al. A Comparison of Vertical Atmospheric Wind Profiles Obtained from Monostatic Sodar and Unmanned Aerial Vehicle–Based Acoustic Tomography , 2017 .
[17] L. Raisi,et al. Size distribution of viable, cultivable, airborne microbes and their relationship to particulate matter concentrations and meteorological conditions in a Mediterranean site , 2013, Aerobiologia.
[18] Patrick Minnis,et al. Dust and Biological Aerosols from the Sahara and Asia Influence Precipitation in the Western U.S. , 2013, Science.
[19] S. Lindow. THE ROLE OF BACTERIAL ICE NUCLEATION IN FROST INJURY TO PLANTS , 1983 .
[20] D. Schmale,et al. Aerosolization of Two Strains (Ice+ and Ice–) of Pseudomonas syringae in a Collison Nebulizer at Different Temperatures , 2015 .
[21] M. Andreae,et al. Bioaerosols in the Earth system: Climate, health, and ecosystem interactions , 2016 .
[22] E. Geldreich,et al. A new medium for the enumeration and subculture of bacteria from potable water , 1985, Applied and environmental microbiology.
[23] H. Bauer,et al. Suspendable macromolecules are responsible for ice nucleation activity of birch and conifer pollen , 2012 .
[24] Clive Morgan. Monitoring for Health Hazards at Work , 2011 .
[25] S. Giovannoni,et al. Cultivation of the ubiquitous SAR11 marine bacterioplankton clade , 2002, Nature.
[26] D. Schmale,et al. Seasonal associations and atmospheric transport distances of fungi in the genus Fusarium collected with unmanned aerial vehicles and ground-based sampling devices , 2014 .
[27] Ian Joint,et al. Culturing marine bacteria – an essential prerequisite for biodiscovery , 2010, Microbial biotechnology.
[28] A. Foerster. Aerosol Science Technology And Applications , 2016 .
[29] Craig Powers,et al. Diversity and Ice Nucleation Activity of Microorganisms Collected With a Small Unmanned Aircraft System (sUAS) in France and the United States , 2018, Front. Microbiol..
[30] C. Morris,et al. The life history of the plant pathogen Pseudomonas syringae is linked to the water cycle , 2008, The ISME Journal.
[31] Helena Ribeiro,et al. Influence of atmospheric ozone, PM10 and meteorological factors on the concentration of airborne pollen and fungal spores , 2008 .
[32] K. Willeke,et al. Effect of Sampling Time on the Collection Efficiency of All-Glass Impingers , 1997 .
[33] David G. Schmale,et al. Tracking the potato late blight pathogen in the atmosphere using unmanned aerial vehicles and Lagrangian modeling , 2011 .
[34] James H. Vincent,et al. Aerosol Sampling: Science, Standards, Instrumentation and Applications , 1989 .
[35] C. Donati,et al. Legal immigrants: invasion of alien microbial communities during winter occurring desert dust storms , 2017, Microbiome.
[36] James K. M. Brown,et al. Aerial Dispersal of Pathogens on the Global and Continental Scales and Its Impact on Plant Disease , 2002, Science.
[37] P. Jonsson,et al. Bioaerosol Detection Technologies , 2014 .
[38] L R Maki,et al. Ice Nucleation Induced by Pseudomonas syringae , 1974, Applied microbiology.
[39] D. Griffin,et al. Atmospheric Movement of Microorganisms in Clouds of Desert Dust and Implications for Human Health , 2007, Clinical Microbiology Reviews.
[40] E. Yuliwati,et al. A Review , 2019, Current Trends and Future Developments on (Bio-) Membranes.
[41] Craig Powers,et al. Remote collection of microorganisms at two depths in a freshwater lake using an unmanned surface vehicle (USV) , 2018, PeerJ.
[42] Jean-Pierre Blanchet,et al. Modeling sea‐salt aerosols in the atmosphere: 2. Atmospheric concentrations and fluxes , 1997 .
[43] Patricia D Millner,et al. Bioaerosols associated with animal production operations. , 2009, Bioresource technology.
[44] D. Griffin,et al. Aerobiology and the global transport of desert dust. , 2006, Trends in ecology & evolution.
[45] C. Dellago,et al. Perspectives on the Future of Ice Nucleation Research: Research Needs and Unanswered Questions Identified from Two International Workshops , 2017 .
[46] M. Lawrence,et al. Bacteria in the global atmosphere – Part 1: Review and synthesis of literature data for different ecosystems , 2009 .
[47] D. Schmale,et al. Diversity and Abundance of Ice Nucleating Strains of Pseudomonas syringae in a Freshwater Lake in Virginia, USA , 2017, Front. Microbiol..
[48] D. Schmale,et al. Lagrangian coherent structures are associated with fluctuations in airborne microbial populations. , 2011, Chaos.