Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Data-driven modelling and spatial complexity supports heterogeneity-based integrative management for eliminating Simulium neavei-transmitted river blindness

Domaine:

healthcaregeospatial

Type de record:

paper
Créateur:
EdwMorBraMos
Éditeur:
Spr
Hôte:
Abstract Concern is emerging regarding the challenges posed by spatial complexity for modelling and managing the area-wide elimination of parasitic infections. While this has led to calls for applying heterogeneity-based approaches for addressing this complexity, questions related to spatial scale, the discovery of locally-relevant models, and its interaction with options for interrupting parasite transmission remain to be resolved. We used a data-driven modelling framework applied to infection data gathered from different monitoring sites to investigate these questions in the context of understanding the transmission dynamics and efforts to eliminate Simulium neavei - transmitted onchocerciasis, a macroparasitic disease that causes river blindness in Western Uganda and other regions of Africa. We demonstrate that our Bayesian-based data-model assimilation technique is able to discover onchocerciasis models that reflect local transmission conditions reliably. Key management variables such as infection breakpoints and required durations of drug interventions for achieving elimination varied spatially due to site-specific parameter constraining; however, this spatial effect was found to operate at the larger focus level, although intriguingly including vector control overcame this variability. These results show that data-driven modelling based on spatial datasets and model-data fusing methodologies will be critical to identifying both the scale-dependent models and heterogeneity-based options required for supporting the successful elimination of S. neavei -borne onchocerciasis.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0https://creativecommons.org/licenses/by/4.0

Similaires

ADVERSE REACTIONS TO IVERMECTIN TREATMENT IN SIMULIUM NEAVEI–TRANSMITTED ONCHOCERCIASISValidity of nodule palpation in a Simulium neavei-transmitted onchocerciasis area in Uganda.Modelling a critical infrastructure-driven spatial database for proactive disaster management: A developing country contextHeterogeneity-aware integrative regression for ancestry-specific association studiesIntegrative Spatial Modeling for Ecosystem Management: A Case Study in Maasai MaraModelling the health and economic impacts of the elimination of river blindness (onchocerciasis) in Africa

ADVERSE REACTIONS TO IVERMECTIN TREATMENT IN SIMULIUM NEAVEI–TRANSMITTED ONCHOCERCIASIS

To assess adverse effects of ivermectin treatment in a Simulium neavei -transmitted focus of onchoc

Validity of nodule palpation in a Simulium neavei-transmitted onchocerciasis area in Uganda.

The objective of this study was to evaluate the prevalence of palpable nodules as a rapid indicator

Modelling a critical infrastructure-driven spatial database for proactive disaster management: A developing country context

The understanding and institutionalisation of the seamless link between urban critical infrastructur

Heterogeneity-aware integrative regression for ancestry-specific association studies

Ancestry-specific proteome-wide association studies (PWAS) based on genetically predicted protein ex

Integrative Spatial Modeling for Ecosystem Management: A Case Study in Maasai Mara

This study presents a generalized approach to wildlife management by introducing two adaptable model

Modelling the health and economic impacts of the elimination of river blindness (onchocerciasis) in Africa

Background Onchocerciasis (river blindness) is endemic mostly in remote and rura