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National-scale simulation of human movement in a spatially coupled individual-based model of malaria in Burkina Faso
by
Zupko, Robert J.
, Nguyen, Tran Dang
, Gerardin, Jaline
, Boni, Maciej F.
, Wesolowski, Amy
in
639/705/1042
/ 692/308/174
/ 692/699/255/1629
/ Antimalarials - pharmacology
/ Antimalarials - therapeutic use
/ Artemisinin
/ Burkina Faso - epidemiology
/ Drug policy
/ Drug Resistance
/ Drug Therapy, Combination
/ Gravity
/ Health care
/ Humanities and Social Sciences
/ Humans
/ Malaria
/ Malaria - drug therapy
/ Malaria - epidemiology
/ Malaria, Falciparum - drug therapy
/ Malaria, Falciparum - epidemiology
/ Malaria, Falciparum - parasitology
/ Mathematical models
/ multidisciplinary
/ Parasite resistance
/ Parasites
/ Plasmodium falciparum
/ Preventive medicine
/ Public health
/ Radiation
/ Science
/ Science (multidisciplinary)
/ Travel
/ Vector-borne diseases
2023
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National-scale simulation of human movement in a spatially coupled individual-based model of malaria in Burkina Faso
by
Zupko, Robert J.
, Nguyen, Tran Dang
, Gerardin, Jaline
, Boni, Maciej F.
, Wesolowski, Amy
in
639/705/1042
/ 692/308/174
/ 692/699/255/1629
/ Antimalarials - pharmacology
/ Antimalarials - therapeutic use
/ Artemisinin
/ Burkina Faso - epidemiology
/ Drug policy
/ Drug Resistance
/ Drug Therapy, Combination
/ Gravity
/ Health care
/ Humanities and Social Sciences
/ Humans
/ Malaria
/ Malaria - drug therapy
/ Malaria - epidemiology
/ Malaria, Falciparum - drug therapy
/ Malaria, Falciparum - epidemiology
/ Malaria, Falciparum - parasitology
/ Mathematical models
/ multidisciplinary
/ Parasite resistance
/ Parasites
/ Plasmodium falciparum
/ Preventive medicine
/ Public health
/ Radiation
/ Science
/ Science (multidisciplinary)
/ Travel
/ Vector-borne diseases
2023
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National-scale simulation of human movement in a spatially coupled individual-based model of malaria in Burkina Faso
by
Zupko, Robert J.
, Nguyen, Tran Dang
, Gerardin, Jaline
, Boni, Maciej F.
, Wesolowski, Amy
in
639/705/1042
/ 692/308/174
/ 692/699/255/1629
/ Antimalarials - pharmacology
/ Antimalarials - therapeutic use
/ Artemisinin
/ Burkina Faso - epidemiology
/ Drug policy
/ Drug Resistance
/ Drug Therapy, Combination
/ Gravity
/ Health care
/ Humanities and Social Sciences
/ Humans
/ Malaria
/ Malaria - drug therapy
/ Malaria - epidemiology
/ Malaria, Falciparum - drug therapy
/ Malaria, Falciparum - epidemiology
/ Malaria, Falciparum - parasitology
/ Mathematical models
/ multidisciplinary
/ Parasite resistance
/ Parasites
/ Plasmodium falciparum
/ Preventive medicine
/ Public health
/ Radiation
/ Science
/ Science (multidisciplinary)
/ Travel
/ Vector-borne diseases
2023
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National-scale simulation of human movement in a spatially coupled individual-based model of malaria in Burkina Faso
Journal Article
National-scale simulation of human movement in a spatially coupled individual-based model of malaria in Burkina Faso
2023
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Overview
Malaria due to the
Plasmodium falciparum
parasite remains a threat to human health despite eradication efforts and the development of anti-malarial treatments, such as artemisinin combination therapies. Human movement and migration have been linked to the propagation of malaria on national scales, highlighting the need for the incorporation of human movement in modeling efforts. Spatially couped individual-based models have been used to study how anti-malarial resistance evolves and spreads in response to drug policy changes; however, as the spatial scale of the model increases, the challenges associated with modeling of movement also increase. In this paper we discuss the development, calibration, and validation of a movement model in the context of a national-scale, spatial, individual-based model used to study the evolution of drug resistance in the malaria parasite.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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