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Updated: Aug 27, 2026

Cities As Interfaces of Zoonotic Hazard Emergence: Development of the New York City Tick and Wildlife Urban Surveillance System
Published on: March 10, 2026
An index-based system for early alerts of potential zoonotic disease outbreaks
Jaqueline S Angelo1, Livia Abdalla1, Douglas A Augusto1
1Oswaldo Cruz Foundation (Fiocruz), Rio de Janeiro, Brazil.
Abstract:
The Information System on Wildlife Health (SISS-Geo) is a free platform designed for the real-time collection of georeferenced data on wildlife health and environmental conditions via mobile devices. It serves as a collaborative tool, enabling health professionals, researchers, environmental managers, and the general public to report information about wildlife health occurrences directly within the system. Since its launch in 2014, SISS-Geo has been successfully applied in supporting decision-making during significant wildlife health events in Brazil. In this paper, we introduce a dynamic alert system based on a Multi-Attribute Zoonotic Alert Index (Z-Alert) to enhance disease outbreak detection and response in wildlife. The proposed approach improves the current alert system of the SISS-Geo platform by integrating clustering techniques with multi-objective optimization. The clustering stage groups spatiotemporally related SISS-Geo records, including observations of animals reported as alive, dead, or sick, allowing the identification of patterns relevant for epidemiological surveillance. Each identified cluster is assigned a numerical alert index, the Z-Alert index, reflecting its level of attention, based on optimally weighted attributes such as the percentage of dead animals, temporal interval, and geographical spread. The system also offers customization alert thresholds, allowing health managers to adapt the alert system to their specific needs. To validate the model, we used historical Yellow Fever case data from Brazil's Ministry of Health. By supporting surveillance teams in prioritizing prevention and investigation actions, the system enhances the capacity of public health authorities to respond effectively through supporting risk assessment, optimizing resource allocation, and promoting cost-effective strategies for outbreak control.
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