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The temporal characteristics of the lag-response relationship and related key time points between ambient temperature and hand, foot and mouth disease: A multicity study from mainland China

机译:环境温度与手中,脚和口病之间的滞后关系及相关键时间点的时间特征:中国大陆的多态研究

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摘要

Background: Previous studies have thoroughly elucidated the exposure-response relationship between ambient temperature and hand, foot, and mouth disease (HFMD), whereas very little concern has been to the lag-response relationship and related key time points. Objectives: We aimed to clarify the temporal characteristics of the lag-response relationship between ambient temperature and HFMD and how they may vary spatially. Methods: We retrieved the daily time series of meteorological variables and HFMD counts for 143 cities in mainland China between 2009 and 2014. We estimated the city-specific lag-response curve between ambient temperature and HFMD and related key time points by applying common distributed lag nonlinear models (DLNM) and Monte Carlo simulation methods. Then, we pooled the city-specific estimates by performing a meta-regression with the city-specific characteristics as meta-predictors to explain the potential spatial heterogeneity. Results: We found a robust lag pattern between temperature and HFMD for different levels of temperatures. The temporal change of risk obtained its maximum value on the current day but dropped sharply thereafter and then rebounded to a secondary peak, which implied the presence of a harvesting effect. By contrast, the estimation of key time points showed substantial heterogeneity, especially at high temperature (the I~2 statistics ranged from 47% to 80%). With one unit increase in the geographic index, the secondary peak would arrive 0.37 (0.02,0.71) days later. With one unit increase in the economic index and climatic index, the duration time of the lag-response curve would be lengthened by 0.36 (0.1,0.62) and 0.92 (0.54,1.29) days, respectively. Conclusion: Our study examined the lag pattern and spatial heterogeneity of the lag-response relationship between temperature and HFMD. Those findings gave us new insights into the complex association and the related mechanisms between weather and HFMD and important information for weather-based disease early warning systems.
机译:背景:以前的研究已经彻底阐明了环境温度和手,脚和口腔疾病(HFMD)之间的暴露 - 反应关系,而对滞后关系和相关关键时间点非常令人关切。目标:我们旨在阐明环境温度和HFMD之间的滞后关系的时间特征以及它们如何在空间上变化。方法:我们在2009年至2014年期间检索了日常气象变量和HFMD计数的日常时间序列和HFMD计数。我们估计了环境温度与HFMD与HFMD之间的特定城市滞后曲线,并通过应用普通分布式滞后非线性模型(DLNM)和蒙特卡罗模拟方法。然后,我们通过与城市特定特征进行元回归作为元预测器来汇集城市特定估计,以解释潜在的空间异质性。结果:我们在温度和HFMD之间找到了强大的滞后模式,用于不同的温度。风险的时间变化获得了当前日期的最大值,但此后急剧下降,然后反弹至二级峰,这暗示存在收获效果。相比之下,关键时间点的估计显示出实质性的异质性,特别是在高温下(I〜2统计范围为47%至80%)。在地理指数增加一个单位,二次峰值将于0.37(0.02,0.71)天后到达。经济指数和气候指数的一个单位增加,滞后曲线的持续时间分别将延长0.36(0.1,0.62)和0.92(0.54,1.29)天。结论:我们的研究检测了温度和HFMD之间滞后关系的滞后模式和空间异质性。这些调查结果使我们对复杂关联的新见解以及天气和HFMD之间的相关机制以及天气疾病预警系统的重要信息。

著录项

  • 来源
    《Science of the total environment》 |2020年第20期|141679.1-141679.8|共8页
  • 作者单位

    Department of Epidemiology and Biostatistics West China School of Public Health and West China Fourth Hospital Sichuan University Chengdu China;

    Division of Infectious Disease & Key Laboratory of Surveillance and Early Warning on Infectious Disease Chinese Centre for Disease Control and Prevention Beijing China;

    Department of Epidemiology and Biostatistics West China School of Public Health and West China Fourth Hospital Sichuan University Chengdu China;

    Department of Epidemiology and Biostatistics West China School of Public Health and West China Fourth Hospital Sichuan University Chengdu China;

    Division of Infectious Disease & Key Laboratory of Surveillance and Early Warning on Infectious Disease Chinese Centre for Disease Control and Prevention Beijing China;

    Department of Epidemiology and Biostatistics West China School of Public Health and West China Fourth Hospital Sichuan University Chengdu China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Weather-driven infectious disease; Lag-response relationship; Spatial heterogeneity; Harvesting effect; Two-stage time series analysis;

    机译:天气驱动的传染病;滞后关系;空间异质性;收获效果;两阶段时间序列分析;

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