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March 4, 20260 citations

Assessing leishmaniasis risk in irrigated lands in Central Tunisia using visible-spectrum remote sensing data.

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ATAttila J. Trájer

Key Points

  • This research aims to assess the risk of leishmaniasis in irrigated areas of Central Tunisia influenced by ecological changes.
  • Developed a geospatial classification framework integrating remote sensing and supervised machine learning.
  • Analyzed three Central Tunisian sites from 1984 to 2020.
  • Conducted habitat clustering to evaluate land-cover composition and risk indices.
  • Irrigated high-suitability areas expanded progressively, especially after the mid-1990s.
  • Territorial risk indices increased over time, with Gafsa reaching 0.470 and Kairouan 0.619 by 2020.
  • Low-risk habitats remained dominant but the number of low-risk areas was minimal.

Abstract

The expansion of irrigation in central Tunisia has reshaped landscapes, creating ecological conditions favourable to Phlebotomus sand flies and Leishmania transmission, thereby increasing leishmaniasis risk. To assess these dynamics, a geospatial classification and risk-indexing framework was developed that integrates remote sensing, supervised machine learning, and ecological reasoning on vector habitats. The analysis covered three Central Tunisian sites and their narrower environments - Gafsa, Kairouan, and Sidi Bouzid - from 1984 to 2020. Habitat clustering revealed marked spatial and temporal variability in land-cover composition. Low-risk habitats remained dominant, while irrigated high-suitability areas expanded progressively, particularly after the mid-1990s. Semi-natural habitats fluctuated, and very low-risk areas remained minimal. Ecotone analysis showed strong variability in transitional habitat edges, with peaks corresponding to increases in area-averaged risk indices. Territorial risk indices increased over time in all sites, reaching 0.470 in Gafsa (2012), 0.619 in Kairouan, and 0.507 in Sidi Bouzid (2020). These results indicate that irrigation-driven landscape changes enhance human - vector contact and transmission potential, underscoring the need to integrate irrigation practices into targeted, evidence-based vector management strategies.

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Cite This Study

Attila J. Trájer (2026) studied this question.

synapsesocial.com/papers/69a7cce8d48f933b5eed8d01https://doi.org/10.1080/09603123.2026.2639719
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