Kemajuan Penelitian Pemodelan Prediksi Demam Berdarah Dengue menggunakan Faktor Iklim di Indonesia : A Systematic Literature Review

Mamenun Mamenun, Yonny Koesmaryono, Rini Hidayati, A. Sopaheluwakan, Bambang Dwi Dasanto
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引用次数: 2

Abstract

Since discovered firstly in 1968, number of cases and areas affected by DHF in Indonesia has been increased. In 2019, dengue cases have found in all provinces within 481 districts/cities (94%). Our research is conducted to analyze the current status and gaps of climate relationship and its modeling to DHF in Indonesia. A systematic searching of literature was carried out through the search engine PubMed and Google Scholar. The method includes determining questions, publication period, keywords, and criteria of literature. Thirty-two literatures have been selected according to the criteria. The study area has covered all provinces in Java, Bali and West Nusa Tenggara, several locations in Sumatra, Kalimantan, Sulawesi, while the eastern region has still limited study. Spatial and temporal variations were used predominantly at the city with monthly data scale. Relationship analysis between DHF cases and climate/non-climate has been used the Spearman’s and Pearson’s correlation. DHF prediction modeling involves dominant climate parameters such as rainfall, temperature, humidity and non climate parameters using linear/non-linear relationships and static/dynamic models. Climate model development needs to be improved with a narrower spatial resolution and shorter time scale, elevation, mobilization, regional climate, and climate change scenarios to get appropriate model on a specific location.
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登革热登革热预测模型研究的进展利用了印度尼西亚的气候因素:一个系统识字审查
自1968年首次发现登革出血热以来,印度尼西亚的病例数和受影响地区有所增加。2019年,在481个区/市(94%)的所有省份都发现了登革热病例。本研究旨在分析印尼气候关系及其对DHF建模的现状和差距。通过搜索引擎PubMed和Google Scholar对文献进行了系统的检索。该方法包括确定问题、出版期限、关键词和文献标准。根据标准选取了32篇文献。研究区域覆盖了爪哇、巴厘岛和西努沙登加拉的所有省份,以及苏门答腊岛、加里曼丹、苏拉威西的几个地点,而东部地区的研究仍然有限。在月数据尺度上,时空变化以城市为主。DHF病例与气候/非气候的关系分析采用Spearman’s和Pearson’s相关。利用线性/非线性关系和静态/动态模型,对降水、温度、湿度和非气候参数等主要气候参数进行DHF预测建模。气候模式开发需要在更窄的空间分辨率和更短的时间尺度、高程、动员、区域气候和气候变化情景下进行改进,以获得适合特定地点的模式。
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Buletin Penelitian Kesehatan
Buletin Penelitian Kesehatan HEALTH CARE SCIENCES & SERVICES-
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