Mortality rate attributed to household and ambient air pollution, age-standardized, male (per 100,000 male population)

Mortality rate attributed to household and ambient air pollution is the number of deaths attributable to the joint effects of household and ambient air pollution in a year per 100,000 population. The rates are age-standardized. Following diseases are taken into account: acute respiratory infections (estimated for all ages); cerebrovascular diseases in adults (estimated above 25 years); ischaemic heart diseases in adults (estimated above 25 years); chronic obstructive pulmonary disease in adults (estimated above 25 years); and lung cancer in adults (estimated above 25 years). Development relevance: Air pollution is one of the biggest environmental risks to health. According to the World Health Organization, the combined effects of ambient (outdoor) and household air pollution cause about 7 million premature deaths every year. Most deaths occur due to increased mortality from stroke, heart disease, chronic obstructive pulmonary disease, lung cancer and acute respiratory infections. The majority of the burden is borne by populations in low and middle income countries. Limitations and exceptions: Estimates of the joint effects of air pollution are constrained by limited knowledge on the distribution of the population exposed to both household and ambient air pollution, correlation of exposures at individual level as household air pollution is a contributor to ambient air pollution, and non-linear interactions Statistical concept and methodology: Burden of disease (or in the present case attributable mortality) is calculated by first combining information on the increased (or relative) risk of a disease resulting from exposure, with information on how widespread the exposure is in the population (e.g. the annual mean concentration of particulate matter to which the population is exposed). This allows calculation of the 'population attributable fraction' (PAF), which is the fraction of disease seen in a given population that can be attributed to the exposure (e.g in this case the annual mean concentration of particulate matter). Applying this fraction to the total burden of disease (e.g. cardiopulmonary disease expressed as deaths or DALYs), gives the total number of deaths or DALYs that results from exposure to that particular risk factor (in the example given above, to ambient air pollution). To estimate the combined effects of risk factors, a joint population attributable fraction is calculated, as described in Ezzati et al (2003).
Publisher
The World Bank
Origin
Global
Records
17024
Source
Mortality rate attributed to household and ambient air pollution, age-standardized, male (per 100,000 male population)
country_code year value
ABW 1960
AFE 1960
AFG 1960
AFW 1960
AGO 1960
ALB 1960
AND 1960
ARB 1960
ARE 1960
ARG 1960
ARM 1960
ASM 1960
ATG 1960
AUS 1960
AUT 1960
AZE 1960
BDI 1960
BEL 1960
BEN 1960
BFA 1960
BGD 1960
BGR 1960
BHR 1960
BHS 1960
BIH 1960
BLR 1960
BLZ 1960
BMU 1960
BOL 1960
BRA 1960
BRB 1960
BRN 1960
BTN 1960
BWA 1960
CAF 1960
CAN 1960
CEB 1960
CHE 1960
CHI 1960
CHL 1960
CHN 1960
CIV 1960
CMR 1960
COD 1960
COG 1960
COL 1960
COM 1960
CPV 1960
CRI 1960
CSS 1960
CUB 1960
CUW 1960
CYM 1960
CYP 1960
CZE 1960
DEU 1960
DJI 1960
DMA 1960
DNK 1960
DOM 1960
DZA 1960
EAP 1960
EAR 1960
EAS 1960
ECA 1960
ECS 1960
ECU 1960
EGY 1960
EMU 1960
ERI 1960
ESP 1960
EST 1960
ETH 1960
EUU 1960
FCS 1960
FIN 1960
FJI 1960
FRA 1960
FRO 1960
FSM 1960
GAB 1960
GBR 1960
GEO 1960
GHA 1960
GIB 1960
GIN 1960
GMB 1960
GNB 1960
GNQ 1960
GRC 1960
GRD 1960
GRL 1960
GTM 1960
GUM 1960
GUY 1960
HIC 1960
HKG 1960
HND 1960
HPC 1960
HRV 1960

Mortality rate attributed to household and ambient air pollution, age-standardized, male (per 100,000 male population)

Mortality rate attributed to household and ambient air pollution is the number of deaths attributable to the joint effects of household and ambient air pollution in a year per 100,000 population. The rates are age-standardized. Following diseases are taken into account: acute respiratory infections (estimated for all ages); cerebrovascular diseases in adults (estimated above 25 years); ischaemic heart diseases in adults (estimated above 25 years); chronic obstructive pulmonary disease in adults (estimated above 25 years); and lung cancer in adults (estimated above 25 years). Development relevance: Air pollution is one of the biggest environmental risks to health. According to the World Health Organization, the combined effects of ambient (outdoor) and household air pollution cause about 7 million premature deaths every year. Most deaths occur due to increased mortality from stroke, heart disease, chronic obstructive pulmonary disease, lung cancer and acute respiratory infections. The majority of the burden is borne by populations in low and middle income countries. Limitations and exceptions: Estimates of the joint effects of air pollution are constrained by limited knowledge on the distribution of the population exposed to both household and ambient air pollution, correlation of exposures at individual level as household air pollution is a contributor to ambient air pollution, and non-linear interactions Statistical concept and methodology: Burden of disease (or in the present case attributable mortality) is calculated by first combining information on the increased (or relative) risk of a disease resulting from exposure, with information on how widespread the exposure is in the population (e.g. the annual mean concentration of particulate matter to which the population is exposed). This allows calculation of the 'population attributable fraction' (PAF), which is the fraction of disease seen in a given population that can be attributed to the exposure (e.g in this case the annual mean concentration of particulate matter). Applying this fraction to the total burden of disease (e.g. cardiopulmonary disease expressed as deaths or DALYs), gives the total number of deaths or DALYs that results from exposure to that particular risk factor (in the example given above, to ambient air pollution). To estimate the combined effects of risk factors, a joint population attributable fraction is calculated, as described in Ezzati et al (2003).
Publisher
The World Bank
Origin
Global
Records
17024
Source