Temporal relationships between Saharan dust proxies, climate, and meningitis in Senegal

Aara'L Yarber*, Gregory Jenkins, Ajit Singh, Aminata Diokhane

*Corresponding author for this work

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Abstract

The Harmattan, a dry, northeasterly trade wind, transports large quantities of Saharan dust over the Sahelian region during the dry season (December–March). Studies have shown that bacterial meningitis outbreaks in Sahelian regions show hyper‐endemic to endemic levels during high‐dust months. We examine the (a) seasonality and intraseasonal variability of dust, climate, and meningitis and the (b) quantitative relationships between various dust proxies with meningitis lags of 0–10 weeks in Senegal from 2012 to 2017. The results show that the onset of the meningitis season occurs in February, roughly 2 months after the dusty season has begun. The meningitis season peaks at the beginning of April, when northeasterly wind speeds and particulate matter (PM) are relatively high, and the meningitis season ends near the end of June, when temperature and humidity rise and northeasterly wind speeds decline. Furthermore, we find that Senegal's relatively high humidity year‐round may help slow the transmission of the infection, contributing to a lower disease incidence than landlocked countries in the meningitis belt. Lastly, our results suggest the desert dust may have a significant impact on the onset to the peak of the meningitis season in Senegal, particularly at the 0–2 and 10‐week lag, whether that be directly through biological processes or indirectly through changes in human behavior. PM and visibility, however, are not in phase with aerosol optical depth throughout the year and consequently show different relationships with meningitis. This study further exemplifies the critical need for more PM, meteorological, and meningitis measurements in West Africa to further resolve these relationships.
Original languageEnglish
Article numbere2021GH000574
Number of pages11
JournalGeoHealth
Volume7
Issue number2
Early online date16 Dec 2022
DOIs
Publication statusPublished - 7 Feb 2023

Bibliographical note

Final Version of Record not yet available as of 13/01/2023.

Keywords

  • meningitis
  • Saharan dust
  • climate
  • Senegal
  • seasonality
  • correlation
  • Climatology
  • Regional climate change
  • Marine pollution
  • Air/sea constituent fluxes
  • Air/sea interactions
  • OCEANOGRAPHY: BIOLOGICAL AND CHEMICAL
  • Volcano/climate interactions
  • Mass balance
  • Explosive volcanism
  • Volcanic effects
  • Theoretical modeling
  • Volcanic hazards and risks
  • Aerosols and particles
  • Surface waves and tides
  • HYDROLOGY
  • Public health
  • Numerical modeling
  • BIOGEOSCIENCES
  • Atmospheric effects
  • Oceans
  • Mud volcanism
  • Gravity and isostasy
  • Climate impact
  • Avalanches
  • GEODESY AND GRAVITY
  • NATURAL HAZARDS
  • General circulation
  • SEISMOLOGY
  • Climate dynamics
  • Volcano monitoring
  • Land/atmosphere interactions
  • Water cycles
  • Global change from geodesy
  • Benefit‐cost analysis
  • INFORMATICS
  • Aerosols
  • PALEOCEANOGRAPHY
  • OCEANOGRAPHY: PHYSICAL
  • Oceanic
  • Impacts of global change
  • Radio oceanography
  • Physical modeling
  • Risk
  • Urban systems
  • GLOBAL CHANGE
  • Disaster risk analysis and assessment
  • GEOHEALTH
  • Modeling
  • VOLCANOLOGY
  • Atmospheric
  • Geological
  • Ocean/atmosphere interactions
  • Climate change and variability
  • Climate variability
  • Numerical solutions
  • Hydrological cycles and budgets
  • Earth system modeling
  • RADIO SCIENCE
  • Decadal ocean variability
  • Tsunamis and storm surges
  • Research Article
  • MARINE GEOLOGY AND GEOPHYSICS
  • ATMOSPHERIC PROCESSES
  • Effusive volcanism
  • Ocean monitoring with geodetic techniques
  • Ocean/Earth/atmosphere/hydrosphere/cryosphere interactions
  • Megacities and urban environment
  • Solid Earth
  • ATMOSPHERIC COMPOSITION AND STRUCTURE
  • Pollution: urban and regional
  • Climate impacts
  • Abrupt/rapid climate change
  • COMPUTATIONAL GEOPHYSICS
  • Sea level: variations and mean
  • The COVID‐19 pandemic and environmental conditions in Africa
  • Sea level change
  • Volcano seismology
  • CRYOSPHERE
  • Pollution: urban, regional and global
  • OCEANOGRAPHY: GENERAL
  • Ocean influence of Earth rotation
  • POLICY SCIENCES
  • Earthquake ground motions and engineering seismology
  • Climate and interannual variability
  • Regional modeling

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