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House-to-house human movement drives dengue virus transmission

  • Steven T. Stoddard
  • , Brett M. Forshey
  • , Amy C. Morrison
  • , Valerie A. Paz-Soldan
  • , Gonzalo M. Vazquez-Prokopec
  • , Helvio Astete
  • , Robert C. Reiner
  • , Stalin Vilcarromero
  • , John P. Elder
  • , Eric S. Halsey
  • , Tadeusz J. Kochel
  • , Uriel Kitron
  • , Thomas W. Scott
  • University of California, Davis
  • Fogarty International Center
  • NAMRID-Unit 3800
  • University of Iowa
  • Tulane University School of Public Health and Tropical Medicine
  • Emory University
  • San Diego State University
  • Naval Medical Research Center

Research output: Contribution to journalArticlepeer-review

412 Scopus citations

Abstract

Dengue is a mosquito-borne disease of growing global health importance. Prevention efforts focus on mosquito control, with limited success. New insights into the spatiotemporal drivers of dengue dynamics are needed to design improved disease-prevention strategies. Given the restricted range of movement of the primary mosquito vector, Aedes aegypti, local human movements may be an important driver of dengue virus (DENV) amplification and spread. Using contact-site cluster investigations in a case-control design, we demonstrate that, at an individual level, risk for human infection is defined by visits to places where contact with infected mosquitoes is likely, independent of distance from the home. Our data indicate that house-to-house human movements underlie spatial patterns of DENV incidence, causing marked heterogeneity in transmission rates. At a collective level, transmission appears to be shaped by social connections because routine movements among the same places, such as the homes of family and friends, are often similar for the infected individual and their contacts. Thus, routine, house-to-house human movements do play a key role in spread of this vector-borne pathogen at fine spatial scales. This finding has important implications for dengue prevention, challenging the appropriateness of current approaches to vector control. We argue that reexamination of existing paradigms regarding the spatiotemporal dynamics of DENV and other vector-borne pathogens, especially the importance of human movement, will lead to improvements in disease prevention.

Original languageEnglish
Pages (from-to)994-999
Number of pages6
JournalProceedings of the National Academy of Sciences of the United States of America
Volume110
Issue number3
DOIs
StatePublished - 15 Jan 2013
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Arthropod-borne virus
  • Disease ecology
  • Emerging infections
  • Infectious disease
  • Spatial epidemiology

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