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Predicting chronic wasting disease in white-tailed deer at the county scale using machine learning. | LitMetric

AI Article Synopsis

  • Chronic wasting disease (CWD) is spreading in wild cervids, harming wildlife conservation, draining resources, and complicating management strategies.
  • Researchers developed a regional model to predict CWD incidence using surveillance data from 16 states and found that the Light Boosting Gradient model was the most accurate.
  • The new predictive model can help improve surveillance efforts by identifying areas for targeted monitoring, but discrepancies with actual surveillance data highlight the need for a multi-faceted approach by wildlife professionals.

Article Abstract

Continued spread of chronic wasting disease (CWD) through wild cervid herds negatively impacts populations, erodes wildlife conservation, drains resource dollars, and challenges wildlife management agencies. Risk factors for CWD have been investigated at state scales, but a regional model to predict locations of new infections can guide increasingly efficient surveillance efforts. We predicted CWD incidence by county using CWD surveillance data depicting white-tailed deer (Odocoileus virginianus) in 16 eastern and midwestern US states. We predicted the binary outcome of CWD-status using four machine learning models, utilized five-fold cross-validation and grid search to pinpoint the best model, then compared model predictions against the subsequent year of surveillance data. Cross validation revealed that the Light Boosting Gradient model was the most reliable predictor given the regional data. The predictive model could be helpful for surveillance planning. Predictions of false positives emphasize areas that warrant targeted CWD surveillance because of similar conditions with counties known to harbor CWD. However, disagreements in positives and negatives between the CWD Prediction Web App predictions and the on-the-ground surveillance data one year later underscore the need for state wildlife agency professionals to use a layered modeling approach to ensure robust surveillance planning. The CWD Prediction Web App is at https://cwd-predict.streamlit.app/ .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11193737PMC
http://dx.doi.org/10.1038/s41598-024-65002-7DOI Listing

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