Premature Mortality of 2050 High Bike Use Scenarios in 17 Countries.
Journal
Environmental health perspectives
ISSN: 1552-9924
Titre abrégé: Environ Health Perspect
Pays: United States
ID NLM: 0330411
Informations de publication
Date de publication:
12 2021
12 2021
Historique:
entrez:
1
12
2021
pubmed:
2
12
2021
medline:
17
3
2022
Statut:
ppublish
Résumé
Biking plays a significant role in urban mobility and has been suggested as a tool to promote public health. A recent study has proposed 2050 global biking scenarios based on large shifts from motorized vehicles to bikes. No previous studies have estimated the health impacts of global cycling scenarios, either future car-bike shift substitutions. We aimed to quantify changes in premature mortality of 2050 global biking scenarios in urban populations from 17 countries. Through a quantitative Health Impact Assessment, the mortality risks and benefits of replacing car trips by bike (mechanica bike and electric bike) in urban populations from 17 countries were estimated. Multiple bike scenarios were created based on current transport trends or large shifts from car trips to bike trips. We quantified the estimated change in the number of premature deaths (reduced or increased) concerning road traffic fatalities, air pollution, and physical activity. This study focuses on urban populations between 20 and 64 y old. We found that, among the urban populations (20-64 y old) of 17 countries, 205,424 annual premature deaths could be prevented if high bike-use scenarios are achieved by 2050 (assuming that 100% of bike trips replace car trips). If only 8% of bike trips replace car trips in a more conservative scenario, 18,589 annual premature deaths could be prevented by 2050 in the same population. In all the countries and scenarios, the mortality benefits related to bike use (rather than car use) outweighed the mortality risks. We found that global biking policies may provide important mortality benefits in 2050. Current and future bike- vs. car-trip policies should be considered key public health interventions for a healthy urban design. https://doi.org/10.1289/EHP9073.
Sections du résumé
BACKGROUND
Biking plays a significant role in urban mobility and has been suggested as a tool to promote public health. A recent study has proposed 2050 global biking scenarios based on large shifts from motorized vehicles to bikes. No previous studies have estimated the health impacts of global cycling scenarios, either future car-bike shift substitutions.
OBJECTIVES
We aimed to quantify changes in premature mortality of 2050 global biking scenarios in urban populations from 17 countries.
METHODS
Through a quantitative Health Impact Assessment, the mortality risks and benefits of replacing car trips by bike (mechanica bike and electric bike) in urban populations from 17 countries were estimated. Multiple bike scenarios were created based on current transport trends or large shifts from car trips to bike trips. We quantified the estimated change in the number of premature deaths (reduced or increased) concerning road traffic fatalities, air pollution, and physical activity. This study focuses on urban populations between 20 and 64 y old.
RESULTS
We found that, among the urban populations (20-64 y old) of 17 countries, 205,424 annual premature deaths could be prevented if high bike-use scenarios are achieved by 2050 (assuming that 100% of bike trips replace car trips). If only 8% of bike trips replace car trips in a more conservative scenario, 18,589 annual premature deaths could be prevented by 2050 in the same population. In all the countries and scenarios, the mortality benefits related to bike use (rather than car use) outweighed the mortality risks.
DISCUSSION
We found that global biking policies may provide important mortality benefits in 2050. Current and future bike- vs. car-trip policies should be considered key public health interventions for a healthy urban design. https://doi.org/10.1289/EHP9073.
Identifiants
pubmed: 34851171
doi: 10.1289/EHP9073
pmc: PMC8634902
doi:
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
127002Références
Environ Int. 2017 Feb;99:151-160
pubmed: 28043651
Aust N Z J Public Health. 2011 Feb;35(1):54-60
pubmed: 21299701
PLoS One. 2016 Mar 01;11(3):e0149990
pubmed: 26930213
Proc Natl Acad Sci U S A. 2007 Apr 24;104(17):7301-6
pubmed: 17438298
Environ Int. 2016 Sep;94:251-262
pubmed: 27276440
Environ Health Perspect. 2007 May;115(5):679-83
pubmed: 17520052
BMJ. 2014 Feb 13;348:g425
pubmed: 24524928
Environ Int. 2020 Oct;143:105974
pubmed: 32703584
Med Sci Sports Exerc. 2009 Nov;41(11):2097-102
pubmed: 19812505
PLoS One. 2017 Oct 11;12(10):e0184799
pubmed: 29020093
Am J Prev Med. 2016 Feb;50(2):e45-53
pubmed: 26585051
Prev Med. 2013 Nov;57(5):573-9
pubmed: 23938465
Environ Int. 2012 Nov 15;49:100-9
pubmed: 23000780
Environ Health Perspect. 2010 Aug;118(8):1109-16
pubmed: 20587380
BMJ. 2011 Aug 04;343:d4521
pubmed: 21816732
BMC Public Health. 2014 Aug 27;14:882
pubmed: 25160601
Lancet. 2016 Sep 24;388(10051):1311-24
pubmed: 27475266
Inj Control Saf Promot. 2003 Mar-Jun;10(1-2):13-20
pubmed: 12772481
Med Sci Sports Exerc. 2011 Nov;43(11):2204-10
pubmed: 22005715
Prev Med. 2018 Apr;109:62-70
pubmed: 29330030
Am J Phys Med Rehabil. 2012 Nov;91(11):931-40
pubmed: 23085705
Environ Int. 2020 Jan;134:105132
pubmed: 31515043
Int J Epidemiol. 2011 Feb;40(1):121-38
pubmed: 20630992
Environ Int. 2018 Dec;121(Pt 1):931-941
pubmed: 30347375
Int J Behav Nutr Phys Act. 2016 Jun 28;13:72
pubmed: 27350359
Int J Behav Nutr Phys Act. 2015 Jun 20;12:81
pubmed: 26091806
Int J Environ Res Public Health. 2019 Sep 14;16(18):
pubmed: 31540094
Prev Med. 2015 Jul;76:103-14
pubmed: 25900805
PLoS One. 2019 Jul 10;14(7):e0219304
pubmed: 31291314
Int J Behav Nutr Phys Act. 2009 Mar 31;6:21
pubmed: 19335883
Lancet. 2016 Dec 10;388(10062):2925-2935
pubmed: 27671671
J Epidemiol Community Health. 2006 Jul;60(7):587-92
pubmed: 16790830
Lancet. 2008 Nov 8;372(9650):1655-60
pubmed: 18994663
Accid Anal Prev. 2014 Dec;73:174-80
pubmed: 25238296
BMC Public Health. 2013 Nov 11;13:1063
pubmed: 24215173
Environ Int. 2018 Jun;115:387-394
pubmed: 29669687
J Phys Act Health. 2006 Feb;3(s1):S55-S76
pubmed: 28834525
Environ Int. 2020 Jul;140:105661
pubmed: 32307209
Environ Health Perspect. 2000 Oct;108(10):941-7
pubmed: 11049813
Environ Health. 2013 May 28;12(1):43
pubmed: 23714370
Environ Int. 2017 Jun;103:61-72
pubmed: 28389127