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Methods and indicators for measuring patterns of human exposure to malaria vectors

机译:测量疟疾载体的人体暴露模式的方法和指标

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摘要

Example of directly measured and behaviour-adjusted estimates of human exposure to malaria vectors from Asembo, western Kenya in 2011. Mosquito biting data was collected using human landing catches from June through July 2011 and human behavioural data was collected using a cross-sectional survey conducted from July through August 2011 [52]. Series A shows the proportion of the human population (1) outdoors (2) indoors and awake, and (3) indoors and asleep throughout the night, overlaid with directly measured indoor and outdoor biting rates for Anopheles arabiensis. Based on biting density alone, the estimated percentage of vector bites occurring indoors = 63%. Series B integrates vector and human behaviour data to show behaviour-adjusted cumulative exposure to vector bites for an unprotected individual. The percentage of vector bites occurring indoors for an unprotected individual πI,u = 97% and the percentage occurring while asleep indoors for an unprotected individual πS,u = 84%
机译:2011年肯尼亚西肯尼亚西部伊斯默博的人体接触疟疾载体的直接测量和行为调整后的估算估计。使用人类着陆捕获数据从6月到2011年7月,使用横断面调查收集人类行为数据从2011年7月到2011年8月[52]。 A系列显示人口(1)户外(2)在室内和清醒的比例,(3)在室内和睡着的整个夜晚,覆盖着直接测量的室内和户外咬合率为Anopheles Arabiensis。基于单独的咬合密度,在室内发生百分比的载体咬伤百分比= 63%。 B系列集成了向量和人类行为数据,以显示对不受保护的个体的向量叮咬的行为调整的累积暴露。在室内发生的矢量叮咬的百分比对于未受保护的单独πi,u = 97%,而在室内睡着的百分比对于未受保护的单独πs,u = 84%

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