哥伦比亚西南部三个登革热高危城市埃及伊蚊未成熟期分布的空间格局。

GigaByte (Hong Kong, China) Pub Date : 2023-10-27 eCollection Date: 2023-01-01 DOI:10.46471/gigabyte.95
Cristina Sánchez Gutierrez, Erika Santamaría, Carlos Andrés Morales, María Camila Lesmes, Horacio Cadena, Alvaro Avila-Diaz, Patricia Fuya, Catalina Marceló-Díaz
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引用次数: 0

摘要

埃及伊蚊是热带和亚热带地区人类虫媒病毒病的主要传播媒介。它们对城市和农村环境的适应会在家庭内部产生侵扰。因此,与时空分析相结合的昆虫学监测是媒介控制和登革热管理的一种创新方法。在这里,我们的主要目的是通过实施昆虫学指数并了解它们如何影响成年蚊子的密度,来检查哥伦比亚考卡登革热高风险城市家庭的未成熟蛹阶段。我们为埃及伊蚊3806个未成熟蛹期的地理分布提供了新的数据。我们还报道了昆虫学指标和空间特征。我们的研究结果表明,对于埃及伊蚊来说,蛹的生产力会在邻近的家庭中产生高密度的成年蚊子,这证明了它们的季节性行为。我们的数据集至关重要,因为它为利用媒介空间模式减轻媒介传播疾病提供了一种创新策略。它还描绘了这些媒介空间模式、昆虫学指标和高风险社区繁殖地之间的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Spatial patterns associated with the distribution of immature stages of <i>Aedes aegypti</i> in three dengue high-risk municipalities of Southwestern Colombia.

Spatial patterns associated with the distribution of immature stages of <i>Aedes aegypti</i> in three dengue high-risk municipalities of Southwestern Colombia.

Spatial patterns associated with the distribution of immature stages of <i>Aedes aegypti</i> in three dengue high-risk municipalities of Southwestern Colombia.

Spatial patterns associated with the distribution of immature stages of Aedes aegypti in three dengue high-risk municipalities of Southwestern Colombia.

Aedes aegypti mosquitoes are the main vector of human arbovirosis in tropical and subtropical areas. Their adaptation to urban and rural environments generates infestations inside households. Therefore, entomological surveillance associated with spatio-temporal analysis is an innovative approach for vector control and dengue management. Here, our main aim was to inspect immature pupal stages in households belonging to municipalities at high risk of dengue in Cauca, Colombia, by implementing entomological indices and relating how they influence adult mosquitos' density. We provide novel data for the geographical distribution of 3,806 immature pupal stages of Ae. aegypti. We also report entomological indices and spatial characterization. Our results suggest that, for Ae. aegypti species, pupal productivity generates high densities of adult mosquitos in neighbouring households, evidencing seasonal behaviour. Our dataset is essential as it provides an innovative strategy for mitigating vector-borne diseases using vector spatial patterns. It also delineates the association between these vector spatial patterns, entomological indicators, and breeding sites in high-risk neighbourhoods.

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CiteScore
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