Socioeconomic differentials in the temperature-mortality relationship in Sao Paulo, Brazil

被引:140
作者
Gouveia, N [1 ]
Hajat, S [1 ]
Armstrong, B [1 ]
机构
[1] FMUSP, Dept Med Prevent, BR-01246903 Sao Paulo, SP, Brazil
关键词
temperature; heat; cold; mortality; socioeconomic position; epidemiology;
D O I
10.1093/ije/dyg077
中图分类号
R1 [预防医学、卫生学];
学科分类号
1004 ; 120402 ;
摘要
Background We investigated the impact of environmental temperature on mortality in Sao Paulo, Brazil, and examined differences in the temperature-mortality relationship with respect to cause, age group, and socioeconomic position (SEP). Methods Generalized additive Poisson regression models adjusted for non-temperature related seasonal factors (including air pollution) were used to analyse daily mortality counts for selected causes from 1991 to 1994. Individuals were classified by the aggregate SEP of their area of residency. These were analysed as potential modifiers of the temperature-mortality relationship. Results Among the elderly we observed a 2.6% increase in all-cause mortality per degree increase in temperature above 20degreesC, and a 5.5% increase per degree drop in temperature below 20degreesC, after adjustment for confounding. Relationships were similar in children, but somewhat weaker in adults. Cold effects were present for deaths due to cardiovascular disease (CVD), respiratory, and other causes, with effects being greatest in the respiratory group. Heat effects were not found for CVD deaths in adults, but otherwise varied little by cause of mortality. There was little evidence for a modification of the mortality effects of cold or heat by SEP. Conclusions These findings show that the U-shaped pattern of the temperature-mortality relationship found in cooler northern countries occurs also in a sub-tropical city. In addition, the relative effects of temperature were similar in each socioeconomic grouping.
引用
收藏
页码:390 / 397
页数:8
相关论文
共 33 条
[1]   Mortality as a function of temperature. A study in Valencia, Spain, 1991-1993 [J].
Ballester, F ;
Corella, D ;
PerezHoyos, S ;
Saez, M ;
Hervas, A .
INTERNATIONAL JOURNAL OF EPIDEMIOLOGY, 1997, 26 (03) :551-561
[2]   Temperature and mortality in 11 cities of the eastern United States [J].
Curriero, FC ;
Heiner, KS ;
Samet, JM ;
Zeger, SL ;
Strug, L ;
Patz, JA .
AMERICAN JOURNAL OF EPIDEMIOLOGY, 2002, 155 (01) :80-87
[3]  
DOMINICI F, 2000, J R STAT SOC A 2, V163
[4]   Cold related mortalities and protection against cold in Yakutsk, eastern Siberia: observation and interview study [J].
Donaldson, GC ;
Ermakov, SP ;
Komarov, YM ;
McDonald, CP ;
Keatinge, WR .
BRITISH MEDICAL JOURNAL, 1998, 317 (7164) :978-982
[5]   Winter mortality and cold stress in Yekaterinburg, Russia: interview survey [J].
Donaldson, GC ;
Tchernjavskii, VE ;
Ermakov, SP ;
Bucher, K ;
Keatinge, WR .
BRITISH MEDICAL JOURNAL, 1998, 316 (7130) :514-518
[6]   Seasonal variation in mortality in Scotland [J].
Gemmell, I ;
McLoone, P ;
Boddy, FA ;
Dickinson, GJ ;
Watt, GCM .
INTERNATIONAL JOURNAL OF EPIDEMIOLOGY, 2000, 29 (02) :274-279
[7]   Time series analysis of air pollution and mortality: effects by cause, age and socioeconomic status [J].
Gouveia, N ;
Fletcher, T .
JOURNAL OF EPIDEMIOLOGY AND COMMUNITY HEALTH, 2000, 54 (10) :750-755
[8]   The potential impacts of climate variability and change on health impacts of extreme weather events in the United States [J].
Greenough, G ;
McGeehin, M ;
Bernard, SM ;
Trtanj, J ;
Riad, J ;
Engelberg, D .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2001, 109 :191-198
[9]  
GRUBB M, 2001, BRIT MED J, V321, P1170
[10]   Fossil fuels, transport, and public health - Policy goals for physical activity and emission controls point the same way [J].
Haines, A ;
McMichael, T ;
Anderson, R ;
Houghton, J .
BRITISH MEDICAL JOURNAL, 2000, 321 (7270) :1168-1169