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2350 Creating a comprehensive municipal inventory of common ragweed (Ambrosia artemisiifolia) to predict allergenic pollen exposures

机译:2350年建立一个全面的普通豚草市政清单(Ambrosia artemisiifolia)以预测过敏性花粉暴露

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摘要

OBJECTIVES/SPECIFIC AIMS: One of the key difficulties in predicting allergenic pollen exposures has been a lack of information on source plant location and abundance. However, the increasing availability of spatially explicit data from remote sensing offers new opportunities to create comprehensive inventories of allergenic pollen producing plants. METHODS/STUDY POPULATION: In this study, we use a spatially oriented field survey to map common ragweed (Ambrosia artemisiifolia) in Detroit, MI, USA. We then combine this with remote sensing imagery and LiDAR to predict ragweed presence and potential pollen production across 344 km2 of Detroit. Finally, we compare this with measurements of airborne pollen concentrations collected throughout the city. RESULTS/ANTICIPATED RESULTS: Our initial results show that ragweed is present in ~2% of the city, and its presence and abundance are strongly associated with demolished building (p<0.001). The uneven distribution of ragweed plants across the city leads to substantially higher pollen concentrations in neighborhoods where more buildings have been recently demolished. DISCUSSION/SIGNIFICANCE OF IMPACT: Our approach offers an effective way to quantify allergenic pollen production, airborne concentrations, and exposures across a large metropolitan area. This in turn provides insight on how to best reduce airborne pollen concentrations: in this case, by changing post-demolition land management practices.
机译:目标/特定目的:预测过敏性花粉暴露的关键困难之一是缺乏有关源植物位置和丰度的信息。但是,来自遥感的空间明确数据的可用性不断提高,为建立变应性花粉生产植物的综合清单提供了新的机会。方法/研究人群:在这项研究中,我们使用空间定向野外调查来绘制美国密歇根州底特律的常见豚草(Ambrosia artemisiifolia)。然后,我们将其与遥感影像和LiDAR相结合,以预测底特律344 km 2 上豚草的存在和潜在的花粉生产。最后,我们将其与整个城市收集的空气中花粉浓度的测量值进行比较。结果/预期结果:我们的初步结果表明,豚草在该市的2%左右存在,其存在和丰富程度与拆除的建筑物密切相关(p <0.001)。豚草植物在城市中分布不均,导致最近拆毁了更多建筑物的社区的花粉浓度大大提高。讨论/意义的研究:我们的方法提供了一种有效的方法来量化整个大都市地区的致敏花粉产量,空气中的浓度和暴露量。反过来,这也提供了有关如何最好地降低空气中花粉浓度的见解:在这种情况下,通过更改拆除后的土地管理做法。

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