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首页> 外文期刊>The American Journal of Tropical Medicine and Hygiene >House Structure Is Associated with Plasmodium falciparum Infection in a Low-Transmission Setting in Southern Zambia
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House Structure Is Associated with Plasmodium falciparum Infection in a Low-Transmission Setting in Southern Zambia

机译:房屋结构与赞比亚南部的低传输环境中的恶性疟原虫感染有关

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House structure may influence the risk of malaria by affecting mosquito entry and indoor resting. Identification of construction features associated with protective benefits could inform vector control approaches, even in low-transmission settings. We examined the association between house structure and malaria prevalence in a cross-sectional analysis of 2,788 children and adults residing in 866 houses in a low-transmission area of Southern Province, Zambia, over the period 2008-2012. Houses were categorized according to wall (brick/cement block or mud/grass) and roof (metal or grass) material. Malaria was assessed by point-of-care rapid diagnostic test (RDT) for Plasmodium falciparum. We identified 52 RDT-positive individuals residing in 41 houses, indicating an overall prevalence in the sample of 1.9%, ranging from 1.4% to 8.8% among the different house types. Occupants of higher quality houses had reduced odds of P. falciparum malaria compared with those in the lowest quality houses after controlling for bed net use, indoor insecticide spraying, clustering by house, cohabitation with another RDT-positive individual, transmission season, ecologic risk defined as nearest distance to a Strahler-classified third-order stream, education, age, and gender (adjusted odds ratio [ OR]: 0.26, 95% confidence interval [CI]: 0.09-0.73, P = 0.01 for houses with brick/cement block walls and metal roof; OR: 0.22,95% CI: 0.09-0.52, P 0.01 for houses with brick/cement block walls and grass roof). Housing improvements offer a promising approach to vector control in low-transmission settings that circumvents the threat posed by insecticide resistance, and may confer a protective benefit of similar magnitude to current vector control strategies.
机译:房屋结构可能会影响蚊帐和室内休息的疟疾风险。即使在低传输设置中,也可以识别与保护效益相关的施工特征可以向矢量控制方法通知矢量控制方法。我们在2008 - 2012年,在2008 - 2012年期间,在2,788名儿童和成人中审查了2,788名儿童和成人的横断面分析中的房屋结构和疟疾患病率。房屋根据墙壁(砖/水泥块或泥浆/草)和屋顶(金属或草)材料进行分类。通过治疗疟原虫的护理点快速诊断测试(RDT)评估疟疾。我们确定了居住在41个房屋中的52名RDT阳性个体,表明样品的总体流行率为1.9%,范围为不同房屋类型的1.4%至8.8%。更高质量的房屋的占用者与在控制蚊帐使用后的最低质量房屋,室内杀虫剂喷洒,聚集在房屋,与另一个RDT阳性个体,传输季节,生态风险定义的生态风险作为入门距离斯拉勒分类的三阶流,教育,年龄和性别(调整的差距[或]:0.26,95%置信区间[CI]:0.09-0.73,P = 0.01,房屋适用于带砖/水泥的房屋块墙壁和金属屋顶;或者:0.22,95%CI:0.09-0.52,P<房屋带砖/水泥砌块墙和草屋顶0.01)。住房改善提供了对抗杀虫剂抗性造成的威胁的低传输设置中的向量控制提供了有希望的方法,并且可以赋予当前载体控制策略类似程度的保护益处。

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