CystiSim - an agent-based model for Taenia solium transmission and control

Research output: Contribution to journalJournal articleResearchpeer-review

Standard

CystiSim - an agent-based model for Taenia solium transmission and control. / Braae, Uffe Christian; Devleesschauwer, Brecht; Gabriël, Sarah; Dorny, Pierre; Speybroeck, Niko; Magnussen, Pascal; Torgerson, Paul; Johansen, Maria Vang.

In: PLOS Neglected Tropical Diseases , Vol. 10, No. 12, e0005184, 12.2016.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Braae, UC, Devleesschauwer, B, Gabriël, S, Dorny, P, Speybroeck, N, Magnussen, P, Torgerson, P & Johansen, MV 2016, 'CystiSim - an agent-based model for Taenia solium transmission and control', PLOS Neglected Tropical Diseases , vol. 10, no. 12, e0005184. https://doi.org/10.1371/journal.pntd.0005184

APA

Braae, U. C., Devleesschauwer, B., Gabriël, S., Dorny, P., Speybroeck, N., Magnussen, P., Torgerson, P., & Johansen, M. V. (2016). CystiSim - an agent-based model for Taenia solium transmission and control. PLOS Neglected Tropical Diseases , 10(12), [e0005184]. https://doi.org/10.1371/journal.pntd.0005184

Vancouver

Braae UC, Devleesschauwer B, Gabriël S, Dorny P, Speybroeck N, Magnussen P et al. CystiSim - an agent-based model for Taenia solium transmission and control. PLOS Neglected Tropical Diseases . 2016 Dec;10(12). e0005184. https://doi.org/10.1371/journal.pntd.0005184

Author

Braae, Uffe Christian ; Devleesschauwer, Brecht ; Gabriël, Sarah ; Dorny, Pierre ; Speybroeck, Niko ; Magnussen, Pascal ; Torgerson, Paul ; Johansen, Maria Vang. / CystiSim - an agent-based model for Taenia solium transmission and control. In: PLOS Neglected Tropical Diseases . 2016 ; Vol. 10, No. 12.

Bibtex

@article{a37dd54c4f1d4bb09984fad0533b6343,
title = "CystiSim - an agent-based model for Taenia solium transmission and control",
abstract = "Taenia solium taeniosis/cysticercosis was declared eradicable by the International Task Force for Disease Eradication in 1993, but remains a neglected zoonosis. To assist in the attempt to regionally eliminate this parasite, we developed cystiSim, an agent-based model for T. solium transmission and control. The model was developed in R and available as an R package (http://cran.r-project.org/package=cystiSim). cystiSim was adapted to an observed setting using field data from Tanzania, but adaptable to other settings if necessary. The model description adheres to the Overview, Design concepts, and Details (ODD) protocol and consists of two entities-pigs and humans. Pigs acquire cysticercosis through the environment or by direct contact with a tapeworm carrier's faeces. Humans acquire taeniosis from slaughtered pigs proportional to their infection intensity. The model allows for evaluation of three interventions measures or combinations hereof: treatment of humans, treatment of pigs, and pig vaccination, and allows for customary coverage and efficacy settings. cystiSim is the first agent-based transmission model for T. solium and suggests that control using a strategy consisting of an intervention only targeting the porcine host is possible, but that coverage and efficacy must be high if elimination is the ultimate goal. Good coverage of the intervention is important, but can be compensated for by including an additional intervention targeting the human host. cystiSim shows that the scenarios combining interventions in both hosts, mass drug administration to humans, and vaccination and treatment of pigs, have a high probability of success if coverage of 75% can be maintained over at least a four year period. In comparison with an existing mathematical model for T. solium transmission, cystiSim also includes parasite maturation, host immunity, and environmental contamination. Adding these biological parameters to the model resulted in new insights in the potential effect of intervention measures.",
author = "Braae, {Uffe Christian} and Brecht Devleesschauwer and Sarah Gabri{\"e}l and Pierre Dorny and Niko Speybroeck and Pascal Magnussen and Paul Torgerson and Johansen, {Maria Vang}",
year = "2016",
month = dec,
doi = "10.1371/journal.pntd.0005184",
language = "English",
volume = "10",
journal = "P L o S Neglected Tropical Diseases (Online)",
issn = "1935-2735",
publisher = "Public Library of Science",
number = "12",

}

RIS

TY - JOUR

T1 - CystiSim - an agent-based model for Taenia solium transmission and control

AU - Braae, Uffe Christian

AU - Devleesschauwer, Brecht

AU - Gabriël, Sarah

AU - Dorny, Pierre

AU - Speybroeck, Niko

AU - Magnussen, Pascal

AU - Torgerson, Paul

AU - Johansen, Maria Vang

PY - 2016/12

Y1 - 2016/12

N2 - Taenia solium taeniosis/cysticercosis was declared eradicable by the International Task Force for Disease Eradication in 1993, but remains a neglected zoonosis. To assist in the attempt to regionally eliminate this parasite, we developed cystiSim, an agent-based model for T. solium transmission and control. The model was developed in R and available as an R package (http://cran.r-project.org/package=cystiSim). cystiSim was adapted to an observed setting using field data from Tanzania, but adaptable to other settings if necessary. The model description adheres to the Overview, Design concepts, and Details (ODD) protocol and consists of two entities-pigs and humans. Pigs acquire cysticercosis through the environment or by direct contact with a tapeworm carrier's faeces. Humans acquire taeniosis from slaughtered pigs proportional to their infection intensity. The model allows for evaluation of three interventions measures or combinations hereof: treatment of humans, treatment of pigs, and pig vaccination, and allows for customary coverage and efficacy settings. cystiSim is the first agent-based transmission model for T. solium and suggests that control using a strategy consisting of an intervention only targeting the porcine host is possible, but that coverage and efficacy must be high if elimination is the ultimate goal. Good coverage of the intervention is important, but can be compensated for by including an additional intervention targeting the human host. cystiSim shows that the scenarios combining interventions in both hosts, mass drug administration to humans, and vaccination and treatment of pigs, have a high probability of success if coverage of 75% can be maintained over at least a four year period. In comparison with an existing mathematical model for T. solium transmission, cystiSim also includes parasite maturation, host immunity, and environmental contamination. Adding these biological parameters to the model resulted in new insights in the potential effect of intervention measures.

AB - Taenia solium taeniosis/cysticercosis was declared eradicable by the International Task Force for Disease Eradication in 1993, but remains a neglected zoonosis. To assist in the attempt to regionally eliminate this parasite, we developed cystiSim, an agent-based model for T. solium transmission and control. The model was developed in R and available as an R package (http://cran.r-project.org/package=cystiSim). cystiSim was adapted to an observed setting using field data from Tanzania, but adaptable to other settings if necessary. The model description adheres to the Overview, Design concepts, and Details (ODD) protocol and consists of two entities-pigs and humans. Pigs acquire cysticercosis through the environment or by direct contact with a tapeworm carrier's faeces. Humans acquire taeniosis from slaughtered pigs proportional to their infection intensity. The model allows for evaluation of three interventions measures or combinations hereof: treatment of humans, treatment of pigs, and pig vaccination, and allows for customary coverage and efficacy settings. cystiSim is the first agent-based transmission model for T. solium and suggests that control using a strategy consisting of an intervention only targeting the porcine host is possible, but that coverage and efficacy must be high if elimination is the ultimate goal. Good coverage of the intervention is important, but can be compensated for by including an additional intervention targeting the human host. cystiSim shows that the scenarios combining interventions in both hosts, mass drug administration to humans, and vaccination and treatment of pigs, have a high probability of success if coverage of 75% can be maintained over at least a four year period. In comparison with an existing mathematical model for T. solium transmission, cystiSim also includes parasite maturation, host immunity, and environmental contamination. Adding these biological parameters to the model resulted in new insights in the potential effect of intervention measures.

U2 - 10.1371/journal.pntd.0005184

DO - 10.1371/journal.pntd.0005184

M3 - Journal article

C2 - 27984581

VL - 10

JO - P L o S Neglected Tropical Diseases (Online)

JF - P L o S Neglected Tropical Diseases (Online)

SN - 1935-2735

IS - 12

M1 - e0005184

ER -

ID: 170138222