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A Crossover Study of In-Vehicle Air Filtration and Acute Changes in Heart Rate Variability and Cognition Among Healthy Adults

机译:健康成年人的车载空气过滤和心率变异性与认知的急性变化的交叉研究

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Background: Traffic-related air pollution is a well-recognised and much studied contributor to smog and is linked to a number of adverse health outcomes. Although traffic pollutants can travel long distances, exposure to the highest levels of the raw emissions can occur closest to the source; e.g. in a car in dense traffic conditions. Time spent in-vehicle may contribute up to half of commuters' daily exposure to certain air pollutants. Most new cars now have or allow for a cabin air filter, but it is not known how well cabin air filtration can reduce exposure to traffic-related air pollution. Methods: We measured commuters' exposure to air pollutants in rush hour traffic, and evaluated whether this exposure could be reduced by cabin air filtration. Also, we looked at effects of commuting during rush hour on heart health (i.e. heart rate variability), and cognition (using a computer-based cognitive assessment) in an environment where any deficit could be important to safety. We examined whether cabin air filtration using an electrostatic filter reduced exposure to traffic-related air pollutants and improved short term heart and cognitive function. Results: Preliminary results show that participants' heart rate variability and cognitive function were impacted by in-vehicle air pollution exposures. Cabin air filtration reduced in-vehicle particulate exposures by approximately one third. In-vehicle pollutant concentrations were notably elevated in tunnels. Conclusions: While commuting, Canadians are exposed to air pollutants that may have a measurable impact on their health. It may be possible to reduce in-vehicle exposures by installing an electrostatic air filter. Relevance: This study provides information about a potentially valuable and economical means of reducing exposure to traffic-related air pollution during daily commutes. This study also examined the impacts of air pollution exposure on cognition, an area of growing concern.
机译:背景:与交通有关的空气污染是烟雾的公认的且经过大量研究的因素,并且与许多不良健康后果有关。尽管交通污染物可以传播很长一段距离,但暴露在最高水平的原始排放中可能会最接近污染源。例如在交通繁忙的汽车中花费在车上的时间最多可导致通勤者每天暴露于某些空气污染物的一半。现在,大多数新车都具有或允许使用机舱空气滤清器,但是尚不清楚机舱空气滤清器如何减少与交通相关的空气污染。方法:我们测量了上下班高峰时间通勤者对空气污染物的暴露,并评估了机舱空气过滤是否可以减少这种暴露。此外,我们研究了在高峰期通勤对心脏健康(即心率变异性)和在任何缺陷可能对安全性很重要的环境中的认知(使用基于计算机的认知评估)的影响。我们检查了使用静电过滤器的机舱空气过滤是否可减少与交通相关的空气污染物的暴露,并改善短期心脏和认知功能。结果:初步结果显示,参与者的心率变异性和认知功能受到车内空气污染暴露的影响。机舱空气过滤将车内颗粒物暴露减少了约三分之一。隧道内的车载污染物浓度显着升高。结论:通勤时,加拿大人暴露于空气污染物中,这可能会对他们的健康产生可衡量的影响。通过安装静电空气滤清器,可以减少车内暴露。相关性:这项研究提供了有关在日常通勤期间减少与交通相关的空气污染的暴露的潜在有价值且经济的方法的信息。这项研究还研究了空气污染暴露对认知的影响,这是一个日益受到关注的领域。

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