Traidl-Hoffmann, C. et al. Impact of pollen on human health: More than allergen carriers?. Int. Arch. Allergy Immunol. 131, 1–13 (2003).
Google Scholar
Nicolaou, N., Siddique, N. & Custovic, A. Allergic disease in urban and rural populations: Increasing prevalence with increasing urbanization. Allergy Eur. J. Allergy Clin. Immunol. 60, 1357–1360 (2005).
Google Scholar
Biedermann, T. et al. Birch pollen allergy in Europe. Allergy Eur. J. Allergy Clin. Immunol. 74, 1237–1248 (2019).
Google Scholar
D’Amato, G. et al. Meteorological conditions, climate change, new emerging factors, and asthma and related allergic disorders. A statement of the World Allergy Organization. World Allergy Organ. J. 8, 1–52 (2015).
Google Scholar
Braun-Fahrländer, C. et al. No further increase in asthma, hay fever and atopic sensitisation in adolescents living in Switzerland. Eur. Respir. J. 23, 407–413 (2004).
Google Scholar
Ziska, L. H. et al. Temperature-related changes in airborne allergenic pollen abundance and seasonality across the northern hemisphere: A retrospective data analysis. Lancet Planet. Health 3, e124–e131 (2019).
Google Scholar
Ziello, C. et al. Changes to airborne pollen counts across Europe. PLoS ONE 7, e34076 (2012).
Google Scholar
Wolkovich, E. M. et al. Warming experiments underpredict plant phenological responses to climate change. Nature 485, 494–497 (2012).
Google Scholar
Sierra-Heredia, C. et al. Aeroallergens in Canada: Distribution, public health impacts, and opportunities for prevention. Int. J. Environ. Res. Public Health 15, 1577 (2018).
Google Scholar
Reed, S. D., Lee, T. A. & McCrory, D. C. The economic burden of allergic rhinitis: A critical evaluation of the literature. Pharmacoeconomics 22, 345–361 (2004).
Google Scholar
Ziter, C. D., Pedersen, E. J., Kucharik, C. J. & Turner, M. G. Scale-dependent interactions between tree canopy cover and impervious surfaces reduce daytime urban heat during summer. Proc. Natl. Acad. Sci. U. S. A. 116, 7575–7580 (2019).
Google Scholar
Akbari, H. & Konopacki, S. Calculating energy-saving potentials of heat-island reduction strategies. Energy Policy 33, 721–756 (2005).
Google Scholar
World Health Organization. Urban Green Spaces and Health: a Review of Evidence. (2016).
Keddem, S. et al. Mapping the urban asthma experience: Using qualitative GIS to understand contextual factors affecting asthma control. Soc. Sci. Med. 140, 9–17 (2015).
Google Scholar
Lovasi, G. S. et al. Urban tree canopy and asthma, wheeze, rhinitis, and allergic sensitization to tree pollen in a New York city birth cohort. Environ. Health Perspect. 121, 494–500 (2013).
Google Scholar
Buters, J. T. M. et al. Release of Bet v 1 from birch pollen from 5 European countries. Results from the HIALINE study. Atmos. Environ. 55, 496–505 (2012).
Google Scholar
Asam, C., Hofer, H., Wolf, M., Aglas, L. & Wallner, M. Tree pollen allergens—An update from a molecular perspective. Allergy Eur. J. Allergy Clin. Immunol. 70, 1201–1211 (2015).
Google Scholar
D’Amato, G. et al. Allergenic pollen and pollen allergy in Europe. Allergy Eur. J. Allergy Clin. Immunol. 62, 976–990 (2007).
Google Scholar
Weber, R. W. Patterns of pollen cross-allergenicity. J. Allergy Clin. Immunol. 112, 229–239 (2003).
Google Scholar
Damialis, A., Traidl-Hoffmann, C. & Treudler, R. Climate Change and Pollen Allergies. In Biodiversity and Health in the Face of Climate Change (eds. Marselle, M., Stadler, J., Korn, H., Irvine, K. & Bonn, A.) 47–66 (Springer, Cham, 2019).
Sousa-Silva, R., Smargiassi, A., Paquette, A., Kaiser, D. & Kneeshaw, D. Exactly what do we know about tree pollen allergenicity?. Lancet Respir. Med. 6, 1869–1876 (2020).
Radauer, C. & Breiteneder, H. Pollen allergens are restricted to few protein families and show distinct patterns of species distribution. J. Allergy Clin. Immunol. 117, 141–147 (2006).
Google Scholar
Gassner, M., Schmid-Grendelmeier, P. & Clot, B. Ash pollen allergy and aerobiology. Allergo J. Int. 28, 289–298 (2019).
Google Scholar
Imhof, K., Probst, E., Seifert, B., Regenass, S. & Schmid-Grendelmeier, P. Ash pollen allergy: Reliable detection of sensitization on the basis of IgE to Ole e 1. Allergo J. Int. 23, 78–83 (2014).
Google Scholar
Lin, R. Y., Clauss, A. E. & Bennett, E. S. Hypersensitivity to common tree pollens in New York city patients. Allergy Asthma Proc. 23, 253–258 (2002).
Google Scholar
Ribeiro, H. et al. Pollen allergenic potential nature of some trees species: A multidisciplinary approach using aerobiological, immunochemical and hospital admissions data. Environ. Res. 109, 328–333 (2009).
Google Scholar
Yun, Y. Y., Ko, S. H., Park, J. W. & Hong, C. S. IgE immune response to Ginkgo biloba pollen. Ann. Allergy Asthma Immunol. 85, 298–302 (2000).
Google Scholar
Hruska, K. Assessment of urban allergophytes using an allergen index. Aerobiologia 19, 107–111 (2003).
Google Scholar
Cariñanos, P., Casares-Porcel, M. & Quesada-Rubio, J. M. Estimating the allergenic potential of urban green spaces: A case-study in Granada, Spain. Landsc. Urban Plan. 123, 134–144 (2014).
Google Scholar
Friedman, J. & Barrett, S. C. H. Wind of change: New insights on the ecology and evolution of pollination and mating in wind-pollinated plants. Ann. Bot. 103, 1515–1527 (2009).
Google Scholar
Kasprzyk, I., Wójcik, T., Cariñanos, P., Borycka, K. & Ćwik, A. Evaluation of the allergenicity of various types of urban parks in a warm temperate climate zone. Aerobiologia 35, 57–71 (2019).
Google Scholar
Jochner-Oette, S., Stitz, T., Jetschni, J. & Cariñanos, P. The influence of individual-specific plant parameters and species composition on the allergenic potential of urban green spaces. Forests 9, 284 (2018).
Google Scholar
Zong, H., Yao, M., Tang, Y. & Chen, H. Assessing the composition, diversity, and allergenic risk of street trees in Qingyang District of Chengdu City. Urban For. Urban Green. 54, 126747 (2020).
Google Scholar
Cariñanos, P., Adinolfi, C., DíazdelaGuardia, C., De Linares, C. & Casares-Porcel, M. Characterization of allergen emission sources in urban areas. J. Environ. Qual. 45, 244–252 (2016).
Google Scholar
Lai, Y. & Kontokosta, C. E. The impact of urban street tree species on air quality and respiratory illness: A spatial analysis of large-scale, high-resolution urban data. Health Place 56, 80–87 (2019).
Google Scholar
Baxi, S. N. & Phipatanakul, W. The role of allergen exposure and avoidance in asthma. Adolesc. Med. State Art Rev. 21, 57–71 (2010).
Google Scholar
Cariñanos, P. & Casares-Porcel, M. Urban green zones and related pollen allergy: A review. Some guidelines for designing spaces with low allergy impact. Landsc. Urban Plan. 101, 205–214 (2011).
Google Scholar
Lara, B. et al. Impact of plane tree abundance on temporal and spatial variations in pollen concentration. Forests 11, 817 (2020).
Google Scholar
Alcázar, P. et al. Airborne plane-tree (Platanus hispanica) pollen distribution in the city of Córdoba, South-western Spain, and possible implications on pollen allergy. J. Investig. Allergol. Clin. Immunol. 14, 238–243 (2004).
Google Scholar
AAAAI. Allergies & Gardening. (2020). https://www.aaaai.org/conditions-and-treatments/library/allergy-library/allergy-friendly-gardening. Accessed 11th Oct 2020.
Ortolani, C. et al. Allergenicità delle piante arboree e arbustive destinate al verde urbano italiano. Revisione Sistematica e Raccomandazioni basate sull’evidenza. Eur. J. Aerobiol. Environ. Med. XI, (2015).
Cecchi, L. Introduction. In Allergenic Pollen: A Review of the Production, Release, Distribution and Health Impacts, Vol. 9789400748, 1–7 (Springer Netherlands, 2013).
Mossabeb, R., Kraft, D. & Valenta, R. Evaluation of the allergenic potential of Ginkgo biloba extracts. Wien. Klin. Wochenschr. 113, 580–587 (2001).
Google Scholar
Sercombe, J. K. et al. London Plane Tree bioaerosol exposure and allergic sensitization in Sydney. Australia. Ann. Allergy Asthma Immunol. 107, 493–500 (2011).
Google Scholar
Lo, F., Bitz, C. M., Battisti, D. S. & Hess, J. J. Pollen calendars and maps of allergenic pollen in North America. Aerobiologia 35, 613–633 (2019).
Google Scholar
Hanski, I. et al. Environmental biodiversity, human microbiota, and allergy are interrelated. Proc. Natl. Acad. Sci. USA. 109, 8334–8339 (2012).
Google Scholar
Haahtela, T. A biodiversity hypothesis. Allergy Eur. J. Allergy Clin. Immunol. 74, 1445–1456 (2019).
CDC & National Center for Health Statistics. FastStats – Allergies and Hay Fever. U.S. Department of Health & Human Services (2014). https://www.cdc.gov/nchs/fastats/allergies.htm. Accessed: 27th April 2020.
American College of Allergy Asthma and Immunology. Allergy Facts. (2018).
Bousquet, J. et al. Allergic rhinitis and its impact on asthma (ARIA) 2008 update (in collaboration with the World Health Organization, GA2LEN and AllerGen). Allergy Eur. J. Allergy Clin. Immunol. 63, 8–160 (2008).
Google Scholar
Bastl, K., Berger, M., Bergmann, K. C., Kmenta, M. & Berger, U. The medical and scientific responsibility of pollen information services. Wien. Klin. Wochenschr. 129, 70–74 (2017).
Google Scholar
van Velthoven, M. H. & Smith, C. Some considerations on digital health validation. npj Digit. Med. 2, 1–2 (2019).
Google Scholar
Roman, L. A. et al. Beyond ‘trees are good’: Disservices, management costs, and tradeoffs in urban forestry. Ambio 50, 615–630 (2021).
Google Scholar
Vogt, J. et al. Citree: A database supporting tree selection for urban areas in temperate climate. Landsc. Urban Plan. 157, 14–25 (2017).
Google Scholar
Eisenman, T. S. et al. Urban trees, air quality, and asthma: An interdisciplinary review. Landsc. Urban Plan. 187, 47–59 (2019).
Google Scholar
van Dorn, A. Urban planning and respiratory health. Lancet Respir. Med. 5, 781–782 (2017).
Google Scholar
Poland, T. M. & McCullough, D. G. Emerald ash borer: Invasion of the urban forest and the threat to North America’s ash resource. J. For. 104, 118–124 (2006).
Ahern, J. From fail-safe to safe-to-fail: Sustainability and resilience in the new urban world. Landsc. Urban Plan. 100, 341–343 (2011).
Google Scholar
Conway, T. M. & Vander Vecht, J. Growing a diverse urban forest: Species selection decisions by practitioners planting and supplying trees. Landsc. Urban Plan. 138, 1–10 (2015).
Google Scholar
Konijnendijk, C. C., Ricard, R. M., Kenney, A. & Randrup, T. B. Defining urban forestry—A comparative perspective of North America and Europe. Urban For. Urban Green. 4, 93–103 (2006).
Google Scholar
Katz, D. S. W. & Batterman, S. A. Urban-scale variation in pollen concentrations: A single station is insufficient to characterize daily exposure. Aerobiologia (Bologna). 36, 417–431 (2020).
Google Scholar
Weinberger, K. R. et al. Levels and determinants of tree pollen in New York City. J. Expo. Sci. Environ. Epidemiol. 28, 119–124 (2018).
Google Scholar
Zimmermann, B. & Kohler, A. Infrared spectroscopy of pollen identifies plant species and genus as well as environmental conditions. PLoS ONE 9, e95417 (2014).
Google Scholar
Bell, K. L. et al. Pollen DNA barcoding: Current applications and future prospects. Genome 59, 629–640 (2016).
Google Scholar
California Department of Public Health (CDPH). Strategic Plan for Asthma in California, 2015–2019. (2015).
Giguère, M. Mesures de lutte aux îlots de chaleur urbains. Revue de littérature. (2009).
Ogren, T. L. The Allergy-Fighting Garden: Stop Asthma and Allergies with Smart Landscaping. (2015).
RNSA. Guide d’information de la végétation en ville. (2016).
Pollen.com. About Pollen.com. (2020). https://www.pollen.com/help/about. Accessed 20 Apr 2020.
Nock, C. A., Paquette, A., Follett, M., Nowak, D. J. & Messier, C. Effects of urbanization on tree species functional diversity in eastern North America. Ecosystems 16, 1487–1497 (2013).
Google Scholar
Tuomisto, H. Commentary: Do we have a consistent terminology for species diversity? Yes, if we choose to use it. Oecologia 167, 903–911 (2011).
Google Scholar
R Core Team. R: A Language and Environment for Statistical Computing. (2019).
Chamberlain, S. A. & Szöcs, E. Taxize: Taxonomic search and retrieval in R. 2, (2013).
Oksanen, J. et al. vegan: Community Ecology Package. (2017).
Green, B. J. et al. Landscape plant selection criteria for the allergic patient. J. Allergy Clin. Immunol. Pract. 6, 1869–1876 (2018).
Google Scholar
Asselin, S., Bachand, S., Christin, C. & Bonvalot, Y. Liens entre les pollens allergènes, leur mesure et les symptômes ressentis. (1998).
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