Heat waves in the United States: mortality risk during heat waves and effect modification by heat wave characteristics in 43 U.S. communities.

G Brooke Anderson, Michelle L Bell
Author Information
  1. G Brooke Anderson: Environmental Engineering Program, Yale University, New Haven, Connecticut, USA.

Abstract

BACKGROUND: Devastating health effects from recent heat waves, and projected increases in frequency, duration, and severity of heat waves from climate change, highlight the importance of understanding health consequences of heat waves.
OBJECTIVES: We analyzed mortality risk for heat waves in 43 U.S. cities (1987-2005) and investigated how effects relate to heat waves' intensity, duration, or timing in season.
METHODS: Heat waves were defined as ≥ 2 days with temperature ≥ 95th percentile for the community for 1 May through 30 September. Heat waves were characterized by their intensity, duration, and timing in season. Within each community, we estimated mortality risk during each heat wave compared with non-heat wave days, controlling for potential confounders. We combined individual heat wave effect estimates using Bayesian hierarchical modeling to generate overall effects at the community, regional, and national levels. We estimated how heat wave mortality effects were modified by heat wave characteristics (intensity, duration, timing in season).
RESULTS: Nationally, mortality increased 3.74% [95% posterior interval (PI), 2.29-5.22%] during heat waves compared with non-heat wave days. Heat wave mortality risk increased 2.49% for every 1°F increase in heat wave intensity and 0.38% for every 1-day increase in heat wave duration. Mortality increased 5.04% (95% PI, 3.06-7.06%) during the first heat wave of the summer versus 2.65% (95% PI, 1.14-4.18%) during later heat waves, compared with non-heat wave days. Heat wave mortality impacts and effect modification by heat wave characteristics were more pronounced in the Northeast and Midwest compared with the South.
CONCLUSIONS: We found higher mortality risk from heat waves that were more intense or longer, or those occurring earlier in summer. These findings have implications for decision makers and researchers estimating health effects from climate change.

References

  1. Epidemiology. 2007 May;18(3):369-72 [PMID: 17435447]
  2. JAMA. 2006 Mar 8;295(10):1127-34 [PMID: 16522832]
  3. N Engl J Med. 2002 Jun 20;346(25):1978-88 [PMID: 12075060]
  4. Environ Res. 1975 Aug;10(1):1-13 [PMID: 1175573]
  5. JAMA. 2008 May 14;299(18):2172-9 [PMID: 18477784]
  6. Epidemiology. 2008 Sep;19(5):711-9 [PMID: 18520615]
  7. J Epidemiol Community Health. 2002 May;56(5):367-72 [PMID: 11964434]
  8. Scand J Public Health. 2008 Jul;36(5):516-23 [PMID: 18567653]
  9. Epidemiology. 2009 Mar;20(2):205-13 [PMID: 19194300]
  10. Environ Res. 1976 Aug;12(1):38-48 [PMID: 954707]
  11. Am J Epidemiol. 2008 Apr 15;167(8):986-97 [PMID: 18303005]
  12. Epidemiology. 2006 Nov;17(6):632-8 [PMID: 17003686]
  13. N Engl J Med. 1996 Jul 11;335(2):84-90 [PMID: 8649494]
  14. Eur Respir J. 2009 Feb;33(2):245-51 [PMID: 18799511]
  15. Eur J Public Health. 2006 Dec;16(6):592-9 [PMID: 16644927]
  16. Epidemiology. 2005 Sep;16(5):613-20 [PMID: 16135936]
  17. Environ Res. 1970 Nov;3(4):277-84 [PMID: 5489820]
  18. Am J Public Health. 1997 Sep;87(9):1515-8 [PMID: 9314806]
  19. Environ Res. 1978 Jun;15(3):504-12 [PMID: 679906]
  20. J Urban Health. 2005 Jun;82(2):191-7 [PMID: 15888640]
  21. Am J Prev Med. 2008 Nov;35(5):429-35 [PMID: 18929969]
  22. Epidemiology. 2001 Nov;12(6):662-7 [PMID: 11679794]
  23. JAMA. 2004 Nov 17;292(19):2372-8 [PMID: 15547165]
  24. Environ Res. 1972 Mar;5(1):59-75 [PMID: 5032925]
  25. Epidemiology. 2006 Jan;17(1):75-9 [PMID: 16357598]
  26. Am J Public Health. 2007 Apr;97 Suppl 1:S158-62 [PMID: 17413056]
  27. Experientia. 1993 Nov 15;49(11):969-79 [PMID: 8253171]
  28. Epidemiology. 2005 Jan;16(1):67-72 [PMID: 15613947]
  29. Am J Public Health Nations Health. 1969 Dec;59(12):2232-42 [PMID: 5389506]
  30. Arch Environ Health. 1975 Mar;30(3):130-6 [PMID: 1115538]
  31. Science. 2004 Aug 13;305(5686):994-7 [PMID: 15310900]
  32. Int J Biometeorol. 1998 Aug;42(1):44-50 [PMID: 9780845]
  33. Am J Public Health. 2002 May;92(5):830-3 [PMID: 11988455]
  34. Int Arch Occup Environ Health. 2002 Mar;75(3):163-70 [PMID: 11954983]

Grants

  1. R01 ES012054/NIEHS NIH HHS
  2. ES012054-03/NIEHS NIH HHS

MeSH Term

Climate Change
Hot Temperature
Mortality
United States

Word Cloud

Created with Highcharts 10.0.0heatwavewavesmortalityeffectsdurationriskHeatintensity2dayscomparedhealthtimingseasoncommunitynon-heateffectcharacteristicsincreasedPIclimatechange43US1estimated3everyincrease95%summermodificationBACKGROUND:DevastatingrecentprojectedincreasesfrequencyseverityhighlightimportanceunderstandingconsequencesOBJECTIVES:analyzedcities1987-2005investigatedrelatewaves'METHODS:definedtemperature95thpercentileMay30SeptembercharacterizedWithincontrollingpotentialconfounderscombinedindividualestimatesusingBayesianhierarchicalmodelinggenerateoverallregionalnationallevelsmodifiedRESULTS:Nationally74%[95%posteriorinterval29-522%]49%1°F038%1-dayMortality504%06-706%firstversus65%14-418%laterimpactspronouncedNortheastMidwestSouthCONCLUSIONS:foundhigherintenselongeroccurringearlierfindingsimplicationsdecisionmakersresearchersestimatingUnitedStates:communities

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