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Bernard Clot

Showing results (1-10 of 16) with videos related to

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Frontiers in Allergy|April 7, 2022
50 Years of Pollen Monitoring in Basel (Switzerland) Demonstrate the Influence of Climate Change on Airborne PollenRegula Gehrig, Bernard Clot
Ebiomedicine|February 22, 2023
Climate change, airborne allergens, and three translational mitigation approachesPaul J Beggs, Bernard Clot, Mikhail Sofiev, et al.
International Archives of Allergy and Immunology|November 20, 2013
Effects of airborne birch pollen levels on clinical symptoms of seasonal allergic rhinoconjunctivitisDenis Caillaud, Sylvie Martin, Claire Segala, et al.
The Science of the Total Environment|January 23, 2025
Relationship between antihistamine residues in wastewater and airborne pollen concentrations: Insights into population-scale pollinosis responseStephan Baumgartner, Michelle Salvisberg, Bernard Clot, et al.
Aerobiologia|November 24, 2025
Operational pollen classification using digital holography and fluorescenceBenoît Crouzy, Marie-Pierre Meurville, Bernard Clot, et al.
Scientific Data|May 13, 2025
Pollen holographic images and light-induced fluorescence measurements at the species levelSophie Erb, Alexis Berne, Bernard Clot, et al.
Aerobiologia|May 20, 2024
Automatic real-time monitoring of fungal spores: the case of <i>Alternaria</i> sppSophie Erb, Alexis Berne, Nina Burgdorfer, et al.
Clinical and Translational Allergy|May 2, 2021
The need for Pan-European automatic pollen and fungal spore monitoring: A stakeholder workshop position paperFiona Tummon, Lucas Alados Arboledas, Maira Bonini, et al.
The Science of the Total Environment|August 18, 2023
Designing an automatic pollen monitoring network for direct usage of observations to reconstruct the concentration fieldsMikhail Sofiev, Jeroen Buters, Fiona Tummon, et al.
The Science of the Total Environment|November 16, 2019
Building an automatic pollen monitoring network (ePIN): Selection of optimal sites by clustering pollen stationsJose Oteros, Mikhail Sofiev, Matt Smith, et al.
Pageof 2

Showing results (1-10 of 16) with videos related to

Sort By:
Pageof 2
Frontiers in Allergy|April 7, 2022
50 Years of Pollen Monitoring in Basel (Switzerland) Demonstrate the Influence of Climate Change on Airborne PollenRegula Gehrig, Bernard Clot
Ebiomedicine|February 22, 2023
Climate change, airborne allergens, and three translational mitigation approachesPaul J Beggs, Bernard Clot, Mikhail Sofiev, et al.
International Archives of Allergy and Immunology|November 20, 2013
Effects of airborne birch pollen levels on clinical symptoms of seasonal allergic rhinoconjunctivitisDenis Caillaud, Sylvie Martin, Claire Segala, et al.
The Science of the Total Environment|January 23, 2025
Relationship between antihistamine residues in wastewater and airborne pollen concentrations: Insights into population-scale pollinosis responseStephan Baumgartner, Michelle Salvisberg, Bernard Clot, et al.
Aerobiologia|November 24, 2025
Operational pollen classification using digital holography and fluorescenceBenoît Crouzy, Marie-Pierre Meurville, Bernard Clot, et al.
Scientific Data|May 13, 2025
Pollen holographic images and light-induced fluorescence measurements at the species levelSophie Erb, Alexis Berne, Bernard Clot, et al.
Aerobiologia|May 20, 2024
Automatic real-time monitoring of fungal spores: the case of <i>Alternaria</i> sppSophie Erb, Alexis Berne, Nina Burgdorfer, et al.
Clinical and Translational Allergy|May 2, 2021
The need for Pan-European automatic pollen and fungal spore monitoring: A stakeholder workshop position paperFiona Tummon, Lucas Alados Arboledas, Maira Bonini, et al.
The Science of the Total Environment|August 18, 2023
Designing an automatic pollen monitoring network for direct usage of observations to reconstruct the concentration fieldsMikhail Sofiev, Jeroen Buters, Fiona Tummon, et al.
The Science of the Total Environment|November 16, 2019
Building an automatic pollen monitoring network (ePIN): Selection of optimal sites by clustering pollen stationsJose Oteros, Mikhail Sofiev, Matt Smith, et al.
Pageof 2