Modeling acute and cumulative erythemal sun exposure on vulnerable body sites during beach vacations utilizing behavior-encoded 3D body models

Author:

Schmalwieser Alois W.ORCID,Lohr Matthew A.,Daly Susan M.,Williams Joshua D.ORCID

Abstract

AbstractVacationers in a high-solar-intensity beach setting put themselves at risk of ultraviolet radiation (UV) over-exposure that can lead to acute and chronic health consequences including erythema, photoaging, and skin cancer. There is a current gap in existing dosimetry work on capturing detailed time-resolved anatomical distributions of UV exposure in the beach vacation setting. In this study, a radiative transfer model of the solar conditions of Tampa Bay, St. Petersburg, Florida, USA (27.8°N, 82.8°W) is combined with an in silico three-dimensional body model and data on typical beach vacation behaviors to calculate acute and cumulative body-site-specific UV exposure risk during a beach vacation. The resulting cumulative UV exposure calculated for a typical mix of clothing choices, settings, and activities during a week-long (7-day) beach vacation is 172.2 standard erythemal doses (SED) at the forearm, which is comparable with the average total annual UV exposure of European and North American residents and consistent with existing dosimetry studies. This model further estimates that vacationers choosing to spend a full day exclusively in the beach or pool setting can experience UV exposure in excess of 50 SED a day at multiple body sites. Such exposure indicates that significant sun protective measures would be required to prevent sunburn across all skin types in this setting. This work clarifies the significant role that beach vacations play in UV exposure and corresponding acute and cumulative health risks and highlights the importance of behavioral choices (including clothing, activity and photoprotection) as crucial factors in differentiating personal solar exposure risks. Graphical abstract

Funder

Johnson and Johnson

University of Veterinary Medicine Vienna

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry

Reference59 articles.

1. United States Lifesaving Association. (2019) National lifesaving statistics, 2021, http://arc.usla.org/Statistics/current.asp. Accessed May 2021.

2. EPA, Sun safety monthly average UV index. (2021) https://www.epa.gov/sunsafety/sun-safety-monthly-average-uv-index. Accessed May 2021.

3. Chen, C.-C., & Petrick, J. F. (2013). Health and wellness benefits of travel experiences – a literature review. Journal of Travel Research, 52, 709–719.

4. Calzavara-Pinton, P., Sala, R., Arisi, M. C., Bussoletti, C., & Celleno, L. (2013). Photobiology, photodermatology and sunscreens: a comprehensive overview. Part 1: damage from acute and chronic solar exposure. Giornale Italiano di Dermatologia e Venereologia: Organo Ufficiale, Societa Italiana di Dermatologia e Sifilografia, 148, 89–106.

5. Office of the Surgeon General. (2014) The surgeon general’s call to action to prevent skin cancer, U.S. Department of Health and Human Services, Bethesda, MD, https://www.hhs.gov/sites/default/files/call-to-action-prevent-skin-cancer.pdf. Accessed December 2021.

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