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A proposed framework for the development and qualitative evaluation of west nile virus models and their application to local public health decision-making

  • Alexander C. Keyel
  • , Morgan E. Gorris
  • , Ilia Rochlin
  • , Johnny A. Uelmen
  • , Luis F. Chaves
  • , Gabriel L. Hamer
  • , Imelda K. Moise
  • , Marta Shocket
  • , A. Mar M. Kilpatrick
  • , Nicholas B. Defelice
  • , Justin K. Davis
  • , Eliza Little
  • , Patrick Irwin
  • , Andrew J. Tyre
  • , Kelly Hel M. Smith
  • , Chris L. Fredregill
  • , Oliver Elison Timm
  • , Karen M. Holcomb
  • , Michael C. Wimberly
  • , Matthew J. Ward
  • Christopher M. Barker, Charlotte G. Rhodes, Rebecca L. Smith
  • Wadsworth Center for Laboratories and Research
  • SUNY Albany
  • Los Alamos National Laboratory
  • Rutgers - The State University of New Jersey, New Brunswick
  • University of Illinois at Urbana-Champaign
  • Instituto Costarricense de Investigacion y Ensenanza en Nutricion y Salud Costa Rica
  • Texas A and M University
  • University of Miami
  • University of California at Los Angeles
  • University of California at Santa Cruz
  • Icahn School of Medicine at Mount Sinai
  • Columbia University
  • University of Oklahoma
  • Connecticut Agricultural Experiment Station
  • Northwest Mosquito Abatement District
  • University of Wisconsin-Madison
  • University of Nebraska-Lincoln
  • Mosquito and Vector Control Division
  • University of California at Davis
  • Universities Space Research Association
  • Tulane University

Research output: Contribution to journalReview articlepeer-review

30 Scopus citations

Abstract

West Nile virus (WNV) is a globally distributed mosquito-borne virus of great public health concern. The number of WNV human cases and mosquito infection patterns vary in space and time. Many statistical models have been developed to understand and predict WNV geographic and temporal dynamics. However, these modeling efforts have been disjointed with little model comparison and inconsistent validation. In this paper, we describe a framework to unify and standardize WNV modeling efforts nationwide. WNV risk, detection, or warning models for this review were solicited from active research groups working in different regions of the United States. A total of 13 models were selected and described. The spatial and temporal scales of each model were compared to guide the timing and the locations for mosquito and virus surveillance, to support mosquito vector control decisions, and to assist in conducting public health outreach campaigns at multiple scales of decision-making. Our overarching goal is to bridge the existing gap between model development, which is usually conducted as an academic exercise, and practical model applications, which occur at state, tribal, local, or territorial public health and mosquito control agency levels. The proposed model assessment and comparison framework helps clarify the value of individual models for decision-making and identifies the appropriate temporal and spatial scope of each model. This qualitative evaluation clearly identifies gaps in linking models to applied decisions and sets the stage for a quantitative comparison of models. Specifically, whereas many coarse-grained models (county resolution or greater) have been developed, the greatest need is for fine-grained, short-term planning models (m-km, days-weeks) that remain scarce. We further recommend quantifying the value of information for each decision to identify decisions that would benefit most from model input.

Original languageEnglish
Article numbere0009653
JournalPLOS Neglected Tropical Diseases
Volume15
Issue number9
DOIs
StatePublished - Sep 2021

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