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Geographic expansion, not viral intensification, leads to human dengue outbreaks in Mexico: a 40-year integrated remote sensing and machine learning analysis.

Created on 18 Aug 2026

Authors

Huixuan Li, Christopher Lee, Sean Sweeney, Homayoun Valafar, Melissa S Nolan

Published in

Frontiers in public health. Volume 14. Pages 1888753. Epub Aug 03, 2026.

Abstract

Dengue fever poses a pervasive, yet escalating public health burden in Mexico and abroad.
We conducted a 41-year spatiotemporal analysis of dengue fever across Mexico (1985-2025), integrating monthly case surveillance with climate, land cover, vegetation, and novel disaster severity covariates derived from the Emergency Events Database. Four supervised regression models were trained on 1990-2021 data, with models evaluated on a 2022-2023 temporal holdout and against observed 2024-2025 surveillance totals. Five supplementary hazard analyses examined temporal correlation, disaster type breakdown, spatial co-occurrence, pre/post event trajectories, and sensitivity to scoring weight assumptions.
Mann-Kendall trend analysis identified statistically significant increasing dengue incidence in 15 of 32 states (9 inland), evidencing geographic expansion over four decades. Z-score analysis confirmed 2024 as a profound anomaly across both endemic and emerging states. Hazard features were significantly associated with national monthly dengue counts at lags 0-2 months across the full 1985-2025 series. A + 613% case increase following the June 2024 tropical storm. Sensitivity analyses confirmed the project's developed 'Severity Score' performed comparably to four theoretically motivated differential weighting schemes.
This study provides the first structured integration of disaster severity covariates in a dengue forecasting framework for Mexico. Geographic expansion into inland states, the 41-year trend analysis, and the hazard adjustment results collectively support a differentiated public health response that targets both endemic coastal states and newly affected inland regions. The analytical framework is directly transferable to emerging dengue risk contexts in the United States and Central America, geographic neighbors also experiencing increased dengue virus transmission.

PMID:
42609501
Bibliographic data and abstract were imported from PubMed on 18 Aug 2026.

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