CHAPTERS IN BOOKS:
Scheifinger H., Belmonte J., Buters J., Celenk S., Damialis A., Déchamp Ch., García-Mozo H., Gehrig R., Grewling Ł., Halley JM., Hogda K-A., Jäger S., Karatzas K., Karlsen S-R., Koch R., Pauling A., Peel R., Šikoparija B., Smith M., Galán-Soldevilla C., Thibaudon M., Vokou D., de Weger L. 2013. Monitoring, Modelling and Forecasting of Pollen Information. In: Sofiev M., Bergmann K-Ch. (Eds.). Allergenic Pollen. A Review of the Production, Release, Distribution and Health Impacts. Springer.
Smith M., Matavulj P., Mimić G., Panić M., Grewling Ł., Sikoparija B. 2022. Why should we care about high temporal resolution monitoring of bioaerosols in ambient air? Science of the Total Environment 826:154231
Grewling Ł., Magyar D., Chłopek K., Grinn-Gofroń A., Gwiazdowska J., Siddiquee A., Ianovici N., Kasprzyk I., Wójcik M., Lafférsová J., Majkowska-Wojciechowska B., Myszkowska D., Rodinkova V., Bortnyk M., Malkiewicz M., Piotrowska-Weryszko K., Sulborska-Różycka A., Rybniček O., Ščevková J., Šikoparija B., Skjøth CA., Smith M., Bogawski P. 2022. Bioaerosols on the atmospheric super highway: An example of long distance transport of Alternaria spores from the Pannonian Plain to Poland. Science of the Total Environment, 819: 153148
Grewling Ł., Piosik Ł., Szkudlarz P. 2021. Morphophysiological characteristics of pollen grains produced by bisexual inflorescences of silver birch (Betula pendula Roth.). Aerobiologia 37:179–183
Damialis A., Gilles S., Sofiev M., Sofieva V., Kolek F., Bayr, D., Plaza MP., Leier-Wirtz, V., Kaschuba S., Ziska L.H., Bielory L., Makra L., del Mar Trigo M., COVID-19/POLLEN study group (Grewling Ł. i in.), Traidl-Hoffmann, C. 2021. Higher airborne pollen concentrations correlated with increased SARS-CoV-2 infection rates, as evidenced from 31 countries across the globe. Proceedings of the National Academy of Sciences of the United States of America 118 (12) e2019034118
Grewling Ł., Bogawski P., Szymańska A, Nowak M., Kostecki Ł., Smith M. 2020. Particle size distribution of the major Alternaria alternata allergen, Alt a 1, derived from airborne spores and subspore fragments. Fungal Biology 124, 3-4: 219-227
Grewling Ł., Bogawski P., Kostecki Ł., Nowak M., Szymańska A., Frątczak A. 2020. Atmospheric exposure to the major Artemisia pollen allergen (Art v 1): Seasonality, impact of weather, and clinical implications. Science of the Total Environment 713:136611
Grewling Ł., Bogawski P., Szymańska A, Nowak M., Kostecki Ł., Smith M. 2020. Particle size distribution of the major Alternaria alternata allergen, Alt a 1, derived from airborne spores and subspore fragments. Fungal Biology 124, 3-4: 219-227
Grewling Ł., Frątczak A., Kostecki Ł., Nowak M., Szymańska A., Bogawski P. 2019. Biological and chemical air pollutants in urban area of Central Europe: coexposure assessment. Aerosol and Air Quality Research 19:1526-1537
Grewling Ł., Bogawski P., Kryza M., Magyar D., Šikoparija B., Skjøth B., Udvardy O., Werner M., Smith M. 2019. Concomitant occurrence of anthropogenic air pollutants, mineral dust, and fungal spores during long-distance transport of ragweed pollen. Environmental Pollution 2019, 254(Part A): 112948
Grewling Ł., Nowak M., Szymańska A., Kostecki Ł, Bogawski P. 2019. Temporal variability in the allergenicity of airborne Alternaria spores. Medical Mycology 57, 4: 403-411
Grewling Ł., Jenerowicz D., Bogawski P., Smith M., Nowak M., Frątczak A., Czarnecka-Operacz M. 2018. Cross-sensitization to Artemisia and Ambrosia pollen allergens in an area located outside of the current distribution range of Ambrosia. Advances in Dermatology and Allergology XXXV(1):83-89