ArticleMalaria journal2024
Potential impact of climatic factors on malaria in Rwanda between 2012 and 2021: a time-series analysis.
Article in Malaria journal, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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13 citing papers in PubMed.
- Ensemble Machine Learning for Malaria Diagnosis in Resource-Limited Settings Using Clinical and Demographic Features.Infectious disease reports · 2026Article
- Molecular surveillance of Falciparum malaria in Rwanda: Shifts in parasite prevalence and risk factors between the 2014-15 and 2019-20 Rwanda Demographics and Health Surveys.medRxiv : the preprint server for health sciences · 2026Article
- Climate change and malaria control in Africa: country experiences and strategic responses.Malaria journal · 2026Article
- Forecasting malaria incidence in a resource-limited urban setting with climate variables as exogenous regressors: time series analysis using a SARIMAX model in Bahir Dar, Ethiopia.Malaria journal · 2026Article
- District-level ecological analysis of the association between stunting and infectious diseases among children under 2 years in Rwanda, 2020-2024.Frontiers in public health · 2026Article
- Epidemiology of selected communicable diseases in Rwanda: a comprehensive analysis of the prevalence of major infectious diseases in Rwanda.International journal of emergency medicine · 2025Review
- Pyrethroid susceptibility and resistance patterns in Anopheles gambiae populations from Rwanda.Malaria journal · 2025Article
- Epidemiological trends of malaria in Sennar State, Sudan.Malaria journal · 2025Article
- Temporal and spatial trends of the prevalence of infections caused by Plasmodium parasites among rural community members in three regions with varying transmission intensities in Mainland Tanzania.Malaria journal · 2025Article
- Emergence of urban malaria and the associated risk factors: a case-control study in Mutare city, Zimbabwe.Malaria journal · 2025Article
- Health Education Campaign to Improve Malaria Knowledge, Prevention, and Treatment Behaviors in Rural East Nusa Tenggara Province, Indonesia: Protocol for a Cluster-Assigned Quasi-Experimental Study.JMIR research protocols · 2025Article
- Rift Valley Fever in Rwanda Is Urging for Enhancing Global Health Security Through Multisectoral One Health Strategy.Microorganisms · 2025Review
- Associations of temperature and precipitation with malaria in children under 5: A multi-country study in Sub-Saharan Africa.PloS one · 2025Article
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Abstract
backgroundMalaria remains an important public health problem, particularly in sub-Saharan Africa. In Rwanda, where malaria ranks among the leading causes of mortality and morbidity, disease transmission is influenced by climatic factors. However, there is a paucity of studies investigating the link between climate change and malaria dynamics, which hinders the development of effective national malaria response strategies. Addressing this critical gap, this study analyses how climatic factors influence malaria transmission across Rwanda, thereby informing tailored interventions and enhancing disease management frameworks.
methodsThe study analysed the potential impact of temperature and cumulative rainfall on malaria incidence in Rwanda from 2012 to 2021 using meteorological data from the Rwanda Meteorological Agency and malaria case records from the Rwanda Health Management and Information System. The analysis was performed in two stages. First, district-specific generalized linear models with a quasi-Poisson distribution were applied, which were enhanced by distributed lag non-linear models to explore non-linear and lagged effects. Second, random effects multivariate meta-analysis was employed to pool the estimates and to refine them through best linear unbiased predictions.
resultsA 1-month lag with specific temperature and rainfall thresholds influenced malaria incidence across Rwanda. Average temperature of 18.5 °C was associated with higher malaria risk, while temperature above 23.9 °C reduced the risk. Rainfall demonstrated a dual effect on malaria risk: conditions of low (below 73 mm per month) and high (above 223 mm per month) precipitation correlated with lower risk, while moderate rainfall (87 to 223 mm per month) correlated with higher risk. Seasonal patterns showed increased malaria risk during the major rainy season, while the short dry season presented lower risk.
conclusionThe study underscores the influence of temperature and rainfall on malaria transmission in Rwanda and calls for tailored interventions that are specific to location and season. The findings are crucial for informing policy that enhance preparedness and contribute to malaria elimination efforts. Future research should explore additional ecological and socioeconomic factors and their differential contribution to malaria transmission.
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