Potential for real-time health and welfare monitoring of red fox (Vulpes vulpes) in experimental settings using implants

Monitoring and improving animal health and welfare is a pressing need. Technological advances are increasing our ability to do so in a range of settings but there are limited uses in experimental settings for less common model animals. Red foxes ( Vulpes vulpes ) are maintained by the French National Agency for Food, Environmental, and Occupational Health and Safety (ANSES) for regulatory and research purposes, primarily related to its role as a European Union and French Reference Laboratory for rabies and Echinococcus spp., both serious zoonoses. In 2022, four foxes were surgically fitted with internal implants that recorded body temperature and activity levels and subsequently inoculated with rabies virus (RABV). As a proof of concept, we retrospectively tested the potential of these two variables to provide an early warning for the onset of rabies symptoms. To do so, we applied two anomaly detection algorithms (Shewhart and EWMA) with varying confidence levels individually to the two data sets from each fox and compared how early the different models could detect significant changes while limiting false alarms during the calibration period. We found that all the foxes significantly changed their activity during infection. We were best able to detect these changes at the individual fox level using the EWMA algorithm, in some cases producing consecutive alarms up to two weeks before the death of an animal, while limiting false alarms. We found no evidence of fever in any of the infected foxes and body temperature did not appear to be a reliable indicator of foxes’ health in this context. While here we applied our methods to a particularly severe and rarely implemented model with a limited sample size, this proof of concept illustrates the potential of these methods for a wide range of other situations that would benefit from similar long-term monitoring, including experimental protocols with milder clinical signs and routine monitoring for unexpected declines in health or welfare.

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Publication Details

Journal
Animal Biotelemetry
Published
2026-09-25
DOI
https://doi.org/10.1186/s40317-026-00499-5
Primary Topic
Veterinary Orthopedics and Neurology
Type
article
Field-Weighted Citation Impact
0.00

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article

Potential for real-time health and welfare monitoring of red fox (Vulpes vulpes) in experimental settings using implants

Aurélien Madouasse, Nicolas Penel, Julie Teresa Shapiro, Viviane Hénaux et al.
Animal Biotelemetry
Veterinary Orthopedics and Neurology
article

Potential for real-time health and welfare monitoring of red fox (Vulpes vulpes) in experimental settings using implants

Aurélien Madouasse, Nicolas Penel, Julie Teresa Shapiro, Viviane Hénaux, Emmanuelle Robardet, Jean-Philippe Amat, Eric Morignat, Sandrine Lesellier, Denise Dubois
article en

Abstract

Monitoring and improving animal health and welfare is a pressing need. Technological advances are increasing our ability to do so in a range of settings but there are limited uses in experimental settings for less common model animals. Red foxes ( Vulpes vulpes ) are maintained by the French National Agency for Food, Environmental, and Occupational Health and Safety (ANSES) for regulatory and research purposes, primarily related to its role as a European Union and French Reference Laboratory for rabies and Echinococcus spp., both serious zoonoses. In 2022, four foxes were surgically fitted with internal implants that recorded body temperature and activity levels and subsequently inoculated with rabies virus (RABV). As a proof of concept, we retrospectively tested the potential of these two variables to provide an early warning for the onset of rabies symptoms. To do so, we applied two anomaly detection algorithms (Shewhart and EWMA) with varying confidence levels individually to the two data sets from each fox and compared how early the different models could detect significant changes while limiting false alarms during the calibration period. We found that all the foxes significantly changed their activity during infection. We were best able to detect these changes at the individual fox level using the EWMA algorithm, in some cases producing consecutive alarms up to two weeks before the death of an animal, while limiting false alarms. We found no evidence of fever in any of the infected foxes and body temperature did not appear to be a reliable indicator of foxes’ health in this context. While here we applied our methods to a particularly severe and rarely implemented model with a limited sample size, this proof of concept illustrates the potential of these methods for a wide range of other situations that would benefit from similar long-term monitoring, including experimental protocols with milder clinical signs and routine monitoring for unexpected declines in health or welfare.

Animal Biotelemetry
Université Claude Bernard Lyon 1 (FR), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (FR), Agence Nationale de Sécurité Sanitaire de l’Alimentation, de l’Environnement et du Travail (FR), Oniris (FR), Organisation Mondiale de la Santé Animale (FR)
Agence Nationale de Sécurité Sanitaire de l’Alimentation, de l’Environnement et du Travail
Openalex Percentile: Top 10%
Veterinary Orthopedics and Neurology
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