巴西贫民窟解决寨卡和缺乏排水的可持续排水:社区视角

IF 1.9 Q3 MANAGEMENT Infrastructure Asset Management Pub Date : 2023-09-28 DOI:10.1680/jinam.23.00012
S M Charlesworth, D Kligerman, F Warwick, M Blackett
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引用次数: 0

摘要

2015年巴西爆发的寨卡病毒疫情证实,新生儿小头症与孕妇在怀孕期间感染寨卡病毒有关,疫情密度最高的地区是巴西人口最多的东北部和东南部。这些地区通常与非正式住区或贫民窟有关,缺乏有效的水管理、卫生设施和排水系统,因此为寨卡病毒载体埃及伊蚊提供了适宜的繁殖环境。本文报道了一项关于社区对可持续排水系统潜力的看法的新研究,该系统提供了减少蚊子繁殖区域的方法,从而减少了贫民窟的寨卡病毒感染。与与贫民窟合作的主要外部利益攸关方和贫民窟社区成员进行了访谈。与会者明确强调了供水、排水和固体废物管理不善,说明了目前连接这些领域的研究存在差距。与会者建议,只有采取整体方法才能解决卫生问题,因此才会出现携带寨卡病毒的蚊子的分布、随后的感染和小头症。因此,必须考虑到整个环境,提高公众对卫生和环境卫生的认识,改善卫生基础设施,并提供适当的固体废物管理系统。
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Sustainable drainage to address Zika and lack of drainage in favelas, Brazil: community perspectives
The 2015 Zika virus outbreak in Brazil established that neonate microcephaly was related to maternal infection by the virus during pregnancy, the highest densities of which occurred in the northeast and southeast of Brazil, the country’s most populated areas. These areas are typically associated with informal settlements or favelas which lack effective water management, sanitation and drainage, hence providing suitable breeding environments for the Aedes aegypti mosquito, the Zika virus vector. This paper reports on a novel study of community perceptions around the potential for Sustainable Drainage Systems to provide a means of reducing areas for the mosquito to breed, and hence reduce Zika infections in favelas. Interviews were carried out with key external stakeholders working with favelas and members of the favela community. Poor management of water supply, drainage and solid waste were clearly emphasised by participants illustrating gaps in current research connecting these areas. Participants proposed that only a holistic approach could address sanitation issues, hence the distribution of Zika-carrying mosquitos, subsequent infections and microcephaly. An approach was therefore needed taking account of the environment as a whole, increasing public awareness of sanitation and environmental health, improving sanitation infrastructure and providing adequate systems for solid waste management.
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来源期刊
CiteScore
2.70
自引率
14.30%
发文量
18
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