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首页> 外文期刊>Frontiers in Public Health >Open-Source 3D Printable GPS Tracker to Characterize the Role of Human Population Movement on Malaria Epidemiology in River Networks: A Proof-of-Concept Study in the Peruvian Amazon
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Open-Source 3D Printable GPS Tracker to Characterize the Role of Human Population Movement on Malaria Epidemiology in River Networks: A Proof-of-Concept Study in the Peruvian Amazon

机译:开源3D可打印GPS跟踪器,以表征人口运动在河流网络中疟疾流行病学的作用:秘鲁亚马逊的概念证明研究

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摘要

Human movement affects malaria epidemiology at multiple geographical levels; however, few studies measure the role of human movement in the Amazon Region due to the challenging conditions and cost of movement tracking technologies. We developed an open-source low-cost 3D printable GPS-tracker and used this technology in a cohort study to characterize the role of human population movement in malaria epidemiology in a rural riverine village in the Peruvian Amazon. In this pilot study of 20 participants (mean age = 40 years old), 45,980 GPS coordinates were recorded over 1 month. Characteristic movement patterns were observed relative to the infection status and occupation of the participants. Applying two analytical animal movement ecology methods, utilization distributions (UDs) and integrated step selection functions (iSSF), we showed contrasting environmental selection and space use patterns according to infection status. These data suggested an important role of human movement in the epidemiology of malaria in the Peruvian Amazon due to high connectivity between villages of the same riverine network, suggesting limitations of current community-based control strategies. We additionally demonstrate the utility of this low-cost technology with movement ecology analysis to characterize human movement in resource-poor environments.
机译:人体运动在多个地理层面影响疟疾流行病学;然而,很少有研究由于运动跟踪技术的具体状况和成本,衡量人类运动在亚马逊地区的作用。我们开发了一个开源低成本3D可打印GPS-Tracker,并在队列研究中使用了这项技术,以表征人口流动在秘鲁亚马逊农村河流村的疟疾流行病学中的作用。在20名参与者(平均年龄= 40岁)的试验研究中,1个月内记录了45,980个GPS坐标。相对于参与者的感染状态和占领观察特征运动模式。应用两种分析动物运动生态学方法,利用分布(UDS)和集成步骤选择功能(ISSF),我们展示了根据感染状态的对比环境选择和空间使用模式。这些数据由于同一河流网络村庄之间的高连接性,这些数据表明人类运动在秘鲁亚马逊的流行病学中的重要作用,这表明基于社区的控制策略的局限性。我们还展示了这种低成本技术与运动生态学分析的效用,以在资源贫乏环境中表征人类运动。

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