A statistical approach to white-nose syndrome surveillance monitoring using acoustic data

Lorin L Hicks1, Nathan A Schwab2, Jessica A Homyack3

  • 1Weyerhaeuser, Kalispell, MT, United States of America.

Plos One
|October 22, 2020
PubMed

Insights

Acoustic monitoring offers a novel, non-invasive method for tracking white-nose syndrome (WNS) in bats. This approach models bat activity to detect WNS presence where traditional surveillance is challenging.

Area of Science:

  • Wildlife disease ecology
  • Acoustic monitoring
  • Bat conservation

Background:

  • White-nose syndrome (WNS) is a severe threat to North American bats, primarily monitored through fungal presence at large hibernacula.
  • Traditional WNS surveillance is difficult in the western USA due to bats' dispersed roosting habits.
  • WNS disrupts bat hibernation by increasing arousal frequency and activity.

Purpose of the Study:

  • To evaluate acoustic monitoring as a non-invasive tool for WNS surveillance.
  • To develop predictive models of baseline bat activity for early WNS detection.
  • To establish a method for areas where traditional WNS surveillance is logistically challenging.

Main Methods:

  • Collected acoustic and ambient temperature data year-round across 41 forested sites in Montana from 2011-2019.
  • Recorded over 5.37 million bat passes, identifying 13 species.
  • Developed site-specific prediction models relating bat activity to temperature and season.

Main Results:

  • Bats exhibited year-round activity, with activity strongly associated with monthly average temperatures in spring and fall.
  • Site-specific models were created to predict normal bat activity patterns.
  • Deviations from predicted activity (e.g., increased winter activity) may indicate WNS presence.

Conclusions:

  • Acoustic monitoring provides a viable, non-invasive method for WNS surveillance, especially in regions with dispersed bat populations.
  • Predictive activity models can serve as an early warning system for WNS.
  • This approach can guide targeted sampling and mitigate human-wildlife transmission risks.

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