Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
about
Malaria modeling: In vitro stem cells vs in vivo modelsVariation in Human Cytochrome P-450 Drug-Metabolism Genes: A Gateway to the Understanding of Plasmodium vivax RelapsesThe Vivax Surveyor: Online mapping database for Plasmodium vivax clinical trialsPlasmodium cynomolgi infections in rhesus macaques display clinical and parasitological features pertinent to modelling vivax malaria pathology and relapse infectionsDefining the next generation of Plasmodium vivax diagnostic tests for control and elimination: Target product profiles.Using G6PD tests to enable the safe treatment of Plasmodium vivax infections with primaquine on the Thailand-Myanmar border: A cost-effectiveness analysis.Malaria control by commodities without practical malariology.Asia-Pacific malaria is singular, pervasive, diverse and invisiblePlasmodium vivax Transmission in Africa.Molecular evidence of high rates of asymptomatic P. vivax infection and very low P. falciparum malaria in Botswana.Maternal-foetal transfer of Plasmodium falciparum and Plasmodium vivax antibodies in a low transmission setting.Key Knowledge Gaps for Plasmodium vivax Control and EliminationThe Incidence and Differential Seasonal Patterns of Plasmodium vivax Primary Infections and Relapses in a Cohort of Children in Papua New GuineaProteogenomic analysis of the total and surface-exposed proteomes of Plasmodium vivax salivary gland sporozoites.Plasmodium vivax Infections over 3 Years in Duffy Blood Group Negative Malians in Bandiagara, Mali.Integrative analysis associates monocytes with insufficient erythropoiesis during acute Plasmodium cynomolgi malaria in rhesus macaques.malERA: An updated research agenda for combination interventions and modelling in malaria elimination and eradication.Implications of current therapeutic restrictions for primaquine and tafenoquine in the radical cure of vivax malaria.
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P2860
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
description
2015 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2015 թվականի մարտին հրատարակված գիտական հոդված
@hy
article scientifique
@fr
artículu científicu espublizáu en 2015
@ast
scientific article (publication date: March 2015)
@en
vedecký článok (publikovaný 2015-03)
@sk
vědecký článek publikovaný v roce 2015
@cs
wetenschappelijk artikel (gepubliceerd in 2015-03)
@nl
wissenschaftlicher Artikel
@de
наукова стаття, опублікована в березні 2015
@uk
name
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@ast
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@en
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@nl
type
label
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@ast
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@en
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@nl
prefLabel
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@ast
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@en
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@nl
P2093
P2860
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P3181
P1476
Modeling the dynamics of Plasmodium vivax infection and hypnozoite reactivation in vivo
@en
P2093
Christine Luxemburger
Deborah Cromer
Mykola Pinkevych
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P304
P3181
P356
10.1371/JOURNAL.PNTD.0003595
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P50
P577
2015-03-01T00:00:00Z