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Published on: January 20, 2019
Impact of mass vaccination campaigns on measles transmission during an outbreak in Guinea, 2017
Natalie Marie Linton1, Mory Keita2, Maria Moitinho de Almeida3
1Centre for Research on the Epidemiology of Disasters, Institute of Health and Society, Catholic University of Louvain, Brussels, Belgium; Graduate School of Medicine, Hokkaido University, Sapporo, Japan.
Objective:
To estimate the time-dependent measles effective reproduction number (Rt) as an indicator of the impact of three outbreak response vaccination (ORV) campaigns on measles transmission during a nationwide outbreak in Guinea.
Methods:
Rt represents the average number of secondary cases generated by a single primary case in a partially immune population during a given time period. Measles Rt was estimated using daily incidence data for 3952 outbreak-associated measles cases in Guinea in 2017 for the time periods prior to, between, and following each of three ORV campaigns using a simple and extensible mathematical model.
Results:
Rt was estimated to be above the threshold value of 1 during the initial growth period of the outbreak until the first ORV campaign began on March 13 (Rt = 1.60, 95% CI: 1.55-1.67). It subsequently dropped below 1 and remained <1 through the end of the year (range: 0.71-0.91), although low levels of transmission persisted.
Conclusions:
Reduction in Rt coincided with implementation of the ORV campaigns, indicating success of the campaigns at maintaining measles transmission intensity below epidemic growth levels. However, persistent measles transmission remains an issue in Guinea due to insufficient levels of herd immunity. Estimation of Rt should be further leveraged to help decision makers and field staff understand outbreak progress and the timing and type of vaccination efforts needed to halt transmission.
Insights
Outbreak response vaccination campaigns in Guinea successfully reduced measles transmission (effective reproduction number, Rt) below epidemic levels. However, sustained transmission indicates a need for improved herd immunity to halt the measles outbreak.
Area of Science:
- Epidemiology
- Infectious Disease Modeling
Background:
- Measles outbreaks pose significant public health challenges, necessitating effective control strategies.
- Understanding transmission dynamics is crucial for managing infectious disease outbreaks.
Purpose of the Study:
- To estimate the time-dependent measles effective reproduction number (Rt) during a nationwide outbreak in Guinea.
- To assess the impact of three outbreak response vaccination (ORV) campaigns on measles transmission intensity.
Main Methods:
- Utilized daily incidence data from 3952 outbreak-associated measles cases in Guinea (2017).
- Employed a simple mathematical model to estimate Rt for periods before, between, and after ORV campaigns.
- Calculated Rt using time-dependent analysis of measles transmission.
Main Results:
- Initial Rt was 1.60 (95% CI: 1.55-1.67), indicating growth before the first ORV campaign.
- Following the first ORV campaign, Rt dropped below 1 (range: 0.71-0.91) and remained suppressed.
- Measles transmission intensity decreased significantly post-vaccination campaigns.
Conclusions:
- ORV campaigns were effective in reducing measles transmission below epidemic growth thresholds.
- Persistent measles transmission highlights insufficient herd immunity in Guinea.
- Rt estimation is a valuable tool for guiding vaccination strategies and controlling outbreaks.
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