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首页> 外文期刊>The Lancet Planetary Health >A global analysis of urban design types and road transport injury: an image processing study
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A global analysis of urban design types and road transport injury: an image processing study

机译:城市设计类型和道路运输伤害的全球分析:图像处理研究

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BackgroundDeath and injury due to motor vehicle crashes is the world's fifth leading cause of mortality and morbidity. City and urban designs might play a role in mitigating the global burden of road transport injury to an extent that has not been captured by traditional safe system approaches. We aimed to determine the relationship between urban design and road trauma across the globe.MethodsApplying a combined convolutional neural network and graph-based approach, 1692 cities capturing one third of the world's population were classified into types based on urban design characteristics represented in sample maps. Associations between identified city types, characteristics contained within sample maps, and the burden of road transport injury as measured by disability adjusted life-years were estimated through univariate and multivariate analyses, controlling for the influence of economic activity.FindingsBetween Mar 1, 2017, and Dec 24, 2018, nine global city types based on a final sample of 1632 cities were identified. Burden of road transport injury was an estimated two-times higher (risk ratio 2·05, 95% CI 1·84–2·27) for the poorest performing city type compared with the best performing city type, culminating in an estimated loss of 8·71 (8·08–9·25) million disability-adjusted life-years per year attributable to suboptimal urban design. City types that featured a greater proportion of railed public transport networks combined with dense road networks characterised by smaller blocks showed the lowest rates of road traffic injury.InterpretationThis study highlights the important role that city and urban design plays in mitigating road transport injury burden at a global scale. It is recommended that road and transport safety efforts promote urban design that features characteristics inherent in identified high-performance city types including higher density road infrastructure and high rates of public transit.FundingSee acknowledgments.
机译:背景由于机动车碰撞而造成的死亡和伤害是世界上导致死亡和发病的第五大原因。城市和城市设计可能会在减轻道路交通伤害的全球负担方面发挥作用,其程度是传统安全系统方法无法捕捉到的。我们旨在确定全球范围内城市设计与道路创伤之间的关系。方法应用卷积神经网络和基于图的方法相结合,根据样本图上所示的城市设计特征,将捕获世界人口三分之一的1692个城市分类为不同类型。通过单因素和多因素分析,控制了经济活动的影响,估算了确定的城市类型,样本地图中包含的特征以及以残障调整后的生命年衡量的道路运输伤害负担之间的关联性。发现时间在2017年3月1日至2018年12月24日,根据1632个城市的最终样本确定了九种全球城市类型。与表现最佳的城市类型相比,表现最差的城市类型的道路运输伤害负担估计高出两倍(风险比2·05,95%CI 1·84-2·27),最终造成估计损失由于欠佳的城市设计,每年有8·71(8·08–9·25)个残疾调整生命年。带有较大比例的有轨公共交通网络和密集的道路网络(以较小的街区为特征)的城市类型显示出最低的道路交通伤害率。解释本研究强调了城市和城市设计在缓解道路交通伤害负担方面的重要作用。世界规模。建议道路和交通安全努力促进城市设计,使其具有已确定的高性能城市类型固有的特征,包括更高密度的道路基础设施和高公共交通率。资金请参阅致谢。

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