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Patricola CM, Wehner MF. Anthropogenic influences on major tropical cyclone events. Nature 2018; 563: 339–46.

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Escobar LE, Ryan SJ, Stewart-Ibarra AM, et al. A global map of suitability for coastal Vibrio cholerae under current and future climate conditions. Acta Trop 2015; 149: 202–11.

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Baker-Austin C, Trinanes JA, Taylor NGH, Hartnell R, Siitonen A, Martinez-Urtaza J. Emerging Vibrio risk at high latitudes in response to ocean warming. Nat Clim Chang 2013; 3: 73–7.

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Smith CJ, Forster PM, Allen M, et al. Current fossil fuel infrastructure does not yet commit us to 1.5 °C warming. Nat Commun 2019; 10: 1–10.

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Hartwick MA, Urquhart EA, Whistler CA, Cooper VS, Naumova EN, Jones SH. Forecasting seasonal vibrio parahaemolyticus concentrations in new England shellfish. Int J Environ Res Public Health 2019; 16: 4341.

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Muhling BA, Jacobs J, Stock CA, Gaitan CF, Saba VS.  Projections of the future occurrence, distribution, and seasonality of three Vibrio species in the Chesapeake Bay under a high-emission climate change scenario . GeoHealth 2017; 1: 278–96.

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Deeb R, Tufford D, Scott GI, Moore JG, Dow K. Impact of Climate Change on Vibrio vulnificus Abundance and Exposure Risk. Estuaries and Coasts 2018; 41: 2289–303.

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Crimmins A, Balbus J, Gamble JL, et al. USGCRP, 2016: The Impacts of Climate Change on Human Health in the United States: A Scientific Assessment. Washington, D.C., 2016 https://health2016.globalchange.gov/low/ClimateHealth2016_FullReport_small.pdf.

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The State of the Air 2020. Am. Lung Assoc. State Air. 2020. https://www.stateoftheair.org/key-findings/ (accessed Oct 20, 2020).

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Assessing the U.S. Climate in 2019 | Warmest year on record for Alaska, second wettest for contiguous U.S. Natl. Centers Environ. Inf. . 2020; published online Jan 6. https://www.ncei.noaa.gov/news/national-climate-201912 (accessed Oct 20, 2020).