Author:
Thawer Sumaiyya G.,Golumbeanu Monica,Lazaro Samwel,Chacky Frank,Munisi Khalifa,Aaron Sijenunu,Molteni Fabrizio,Lengeler Christian,Pothin Emilie,Snow Robert W.,Alegana Victor A.
Abstract
AbstractAs malaria transmission declines, the need to monitor the heterogeneity of malaria risk at finer scales becomes critical to guide community-based targeted interventions. Although routine health facility (HF) data can provide epidemiological evidence at high spatial and temporal resolution, its incomplete nature of information can result in lower administrative units without empirical data. To overcome geographic sparsity of data and its representativeness, geo-spatial models can leverage routine information to predict risk in un-represented areas as well as estimate uncertainty of predictions. Here, a Bayesian spatio-temporal model was applied on malaria test positivity rate (TPR) data for the period 2017–2019 to predict risks at the ward level, the lowest decision-making unit in mainland Tanzania. To quantify the associated uncertainty, the probability of malaria TPR exceeding programmatic threshold was estimated. Results showed a marked spatial heterogeneity in malaria TPR across wards. 17.7 million people resided in areas where malaria TPR was high (≥ 30; 90% certainty) in the North-West and South-East parts of Tanzania. Approximately 11.7 million people lived in areas where malaria TPR was very low (< 5%; 90% certainty). HF data can be used to identify different epidemiological strata and guide malaria interventions at micro-planning units in Tanzania. These data, however, are imperfect in many settings in Africa and often require application of geo-spatial modelling techniques for estimation.
Funder
Swiss Tropical and Public Health Institute
Embassy of Switzerland in Tanzania
Global Fund to Fight Aids, Tuberculosis and Malaria
Bill and Melinda Gates Foundation
Wellcome Trust Principal Fellow
Wellcome Trust to the Kenya Major Overseas Programme
Wellcome Trust Training Fellow
Publisher
Springer Science and Business Media LLC