An ecological analysis of pertussis disease in Minnesota, 2009-2013

P Y Iroh Tam1, J S Menk2, J Hughes3

  • 1University of Minnesota Masonic Children's Hospital,Minneapolis,MN,USA.

Epidemiology and Infection
|September 3, 2015
PubMed

Insights

Community factors like urban living and household size increase pertussis risk, while higher diphtheria, tetanus and acellular pertussis (DTaP) vaccine uptake may lower it. This highlights areas for targeted public health interventions.

Area of Science:

  • Epidemiology
  • Public Health
  • Infectious Disease Dynamics

Background:

  • Pertussis (whooping cough) cases have risen in Minnesota over the past decade.
  • The shift from whole-cell to acellular pertussis vaccines (DTaP) is a suspected driver, but community-level factors are less understood.

Purpose of the Study:

  • To identify county-level risk factors associated with pertussis incidence in Minnesota.
  • To inform public health policy and resource allocation for pertussis control.

Main Methods:

  • Ecological analysis of county-level data in Minnesota.
  • Utilized a Bayesian Poisson generalized linear areal model to account for spatial dependence.

Main Results:

  • Urban counties showed 1.79 times higher pertussis rates compared to rural counties.
  • Larger average household size (one person increase) was associated with 4.75 times greater pertussis rates.
  • Higher receipt of the 4+ DTaP vaccine series was associated with a 0.97 times lower rate of pertussis.

Conclusions:

  • Community-level factors, including urbanization and household size, significantly influence pertussis rates.
  • Targeted interventions in high-risk counties could be informed by these findings.
  • Vaccine uptake, specifically DTaP, may play a role in mitigating pertussis spread at the community level.

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