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地理信息系统在东南亚登革热疫情中的应用:趋势与机遇综述

The application of geographic information system for dengue epidemic in Southeast Asia: A review on trends and opportunity.

作者信息

Sekarrini Cipta Estri, Bachri Syamsul, Taryana Didik, Giofandi Eggy Arya

机构信息

Program Doctoral of Geography Education, Faculty of Social Science, State University of Malang, Malang, East Java, Indonesia.

Department of Geography Education, Faculty of Social Science, State University of Malang, Malang, East Java, Indonesia.

出版信息

J Public Health Res. 2022 Jul 18;11(3):22799036221104170. doi: 10.1177/22799036221104170. eCollection 2022 Jul.


DOI:10.1177/22799036221104170
PMID:35911430
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9335475/
Abstract

The infectious disease dengue hemorrhagic fever remains an unresolved global problem, with climatic conditions and the location of areas located at the equator more often infected with dengue fever. Various modeling approaches have been employed for the development of a dengue risk map. The geographic information system approach was used as an instrument in applying mathematical algorithms to process field vector data into a preventive objective which is studied, then the application of remote sensing provides spatial-temporal data related to land use/land cover data sources as other variable categories. Map of hotspots for dengue fever cases is used to identify the risk of dengue fever areas by applying various complex methodologies, analysis, and visualization of advanced data are needed for its application in public health. In the last 10 years, the increase in the publication of dengue hemorrhagic fever in Southeast Asia in reputable international journals has increased significantly.

摘要

传染病登革出血热仍然是一个尚未解决的全球性问题,气候条件以及赤道地区更常感染登革热。为了绘制登革热风险地图,人们采用了各种建模方法。地理信息系统方法被用作一种工具,用于应用数学算法将现场病媒数据处理成一个有待研究的预防目标,然后遥感技术的应用提供了与土地利用/土地覆盖数据源相关的时空数据,作为其他变量类别。登革热病例热点地图用于通过应用各种复杂方法来识别登革热高发地区的风险,在公共卫生领域应用该地图需要先进数据的分析和可视化。在过去10年中,东南亚地区在著名国际期刊上发表的登革出血热相关论文数量显著增加。

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The application of geographic information system for dengue epidemic in Southeast Asia: A review on trends and opportunity.

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引用本文的文献

[1]
Leveraging geographic information system for dengue surveillance: a scoping review.

Trop Med Health. 2025-8-4

[2]
Mapping environmental suitability changes for arbovirus mosquitoes in Southeast Asia: 1960-2020.

iScience. 2024-7-20

[3]
Societal knowledge, attitude, and practices towards dengue and associated factors in epidemic-hit areas: Geoinformation assisted empirical evidence.

Heliyon. 2023-12-13

[4]
Analysis of Himalayan marmot distribution and plague risk in Qinghai province of China using the "3S" technology.

Sci Rep. 2023-2-2

[5]
Bibliometric Analysis of Publications on the Omicron Variant from 2020 to 2022 in the Scopus Database Using R and VOSviewer.

Int J Environ Res Public Health. 2022-9-29

本文引用的文献

[1]
Spatial and temporal analysis of hospitalized dengue patients in Bandung: demographics and risk.

Trop Med Health. 2021-5-26

[2]
The influence of roads on the fine-scale population genetic structure of the dengue vector Aedes aegypti (Linnaeus).

PLoS Negl Trop Dis. 2021-2

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Effects of the 2018 heat wave on health in the elderly: implications for adaptation strategies to climate change.

Environ Anal Health Toxicol. 2020-12

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Parasit Vectors. 2019-9-5

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Dengue outbreaks and the geographic distribution of dengue vectors in Taiwan: A 20-year epidemiological analysis.

Biomed J. 2018-11-9

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Sci Total Environ. 2018-8-3

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Glob Health Action. 2018

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Spatial distribution and cluster analysis of dengue using self organizing maps in Andhra Pradesh, India, 2011-2013.

Parasite Epidemiol Control. 2016-11-4

[9]
Empirical model for estimating dengue incidence using temperature, rainfall, and relative humidity: a 19-year retrospective analysis in East Delhi.

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Time trend of malaria in relation to climate variability in Papua New Guinea.

Environ Health Toxicol. 2016-2-25

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