Understanding transmission and control of the pork tapeworm with CystiAgent: a spatially explicit agent-based model

Abstract Background The pork tapeworm, Taenia solium, is a serious public health problem in rural low-resource areas of Latin America, Africa and Asia, where the associated conditions of nuerocysticercosis (NCC) and porcine cysticercosis cause substantial health and economic harms. An accurate and validated transmission model for T. solium would serve as an important new tool for control and elimination, as it would allow for comparison of available intervention strategies, and prioritization of the most effective strategies for control and elimination efforts. Methods We developed a spatially-explicit agent-based model (ABM) for T. solium (“CystiAgent”) that differs from prior T. solium models by including a spatial framework and behavioral parameters such as pig roaming, open human defecation, and human travel. In this article, we introduce the structure and function of the model, describe the data sources used to parameterize the model, and apply sensitivity analyses (Latin hypercube sampling-partial rank correlation coefficient (LHS-PRCC)) to evaluate model parameters. Results LHS-PRCC analysis of CystiAgent found that the parameters with the greatest impact on model uncertainty were the roaming range of pigs, the infectious duration of human taeniasis, use of latrines, and the set of “tuning” parameters defining the probabilities of infection in humans and pigs given exposure to T. solium. Conclusions CystiAgent is a novel ABM that has the ability to model spatial and behavioral features of T. solium transmission not available in other models. There is a small set of impactful model parameters that contribute uncertainty to the model and may impact the accuracy of model projections. Field and laboratory studies to better understand these key components of transmission may help reduce uncertainty, while current applications of CystiAgent may consider calibration of these parameters to improve model performance. These results will ultimately allow for improved interpretation of model validation results, and usage of the model to compare available control and elimination strategies for T. solium.

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PID https://www.doi.org/10.6084/m9.figshare.c.5073251
PID https://www.doi.org/10.6084/m9.figshare.c.5073251.v1
URL http://dx.doi.org/10.6084/m9.figshare.c.5073251
URL http://dx.doi.org/10.6084/m9.figshare.c.5073251.v1
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Author Pray, Ian W., 0000-0001-6935-5123
Author Wakeland, Wayne
Author Pan, William
Author Lambert, William E.
Author Garcia, Hector H.
Author Gonzalez, Armando E.
Author O’Neal, Seth E.
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Collected From Datacite
Hosted By figshare
Publication Date 2020-01-01
Publisher figshare
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Language UNKNOWN
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keyword FOS: Mathematics
keyword FOS: Sociology
keyword FOS: Biological sciences
keyword FOS: Computer and information sciences
keyword FOS: Earth and related environmental sciences
system:type other
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Source https://science-innovation-policy.openaire.eu/search/other?orpId=dedup_wf_001::a050f79e973dcef654220e4d88585e24
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Last Updated 19 December 2020, 12:58 (CET)
Created 19 December 2020, 12:58 (CET)