Publications by authors named "Olukunle O Oyegoke"

South Africa's efforts toward eliminating malaria have positioned the country in the pre-elimination stage. Imported and sub-microscopic cases still contribute to the persistence of malaria in regions of low transmission as identified in this study where diagnostics is built largely on the use of Rapid Diagnostic Test (RDT). However, the presence of Pfhrp2/3 gene deletion is known to interfere with the accuracy of diagnosis with the use of RDT.

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Despite various efforts and policy implementation aimed at controlling and eliminating malaria, imported malaria remains a major factor posing challenges in places that have made progress in malaria elimination. The persistence of malaria in Limpopo Province has largely been attributed to imported cases, thus reducing the pace of achieving the malaria-free target by 2025. Data from the Limpopo Malaria Surveillance Database System (2010-2020) was analyzed, and a seasonal auto-regressive integrated moving average (SARIMA) model was developed to forecast malaria incidence based on the incidence data's temporal autocorrelation.

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Malaria is one of the most significant causes of mortality and morbidity globally, especially in sub-Saharan Africa (SSA) countries. It harmfully disturbs the public’s health and the economic growth of many developing countries. Despite the massive effect of malaria transmission, the overall pooled proportion of malaria positivity rate in Southern Africa is still elusive.

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Malaria control measures have been in use for years but have not completely curbed the spread of infection. Ultimately, global elimination is the goal. A major playmaker in the various approaches to reaching the goal is the issue of proper diagnosis.

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Article Synopsis
  • Malaria elimination is a key goal that requires advanced scientific methods and management strategies, especially in light of the ongoing COVID-19 pandemic.
  • The use of whole genome sequencing (WGS) offers more comprehensive data compared to traditional methods like PCR genotyping, making it crucial for understanding malaria's epidemiology across different regions.
  • WGS has proven essential in advancing malaria research and assisting countries in reducing transmission and drug resistance, but for effective malaria elimination in sub-Saharan Africa, accessible and affordable WGS technology is necessary.
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