Bridging the gap: Using reservoir ecology and human serosurveys to estimate Lassa virus spillover in West Africa
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Paul E. Gessler | Andrew J. Basinski | Elisabeth Fichet-Calvet | Anna R. Sjodin | Tanner J. Varrelman | Christopher H. Remien | Nathan C. Layman | Brian H. Bird | David J. Wolking | Corina Monagin | Bruno M. Ghersi | Peter A. Barry | Michael A. Jarvis | Scott L. Nuismer | P. Gessler | C. Remien | P. Barry | M. Jarvis | B. Bird | E. Fichet-Calvet | S. Nuismer | C. Monagin | T. Varrelman | Nathan C Layman | Corina Monagin
[1] T. Monath,et al. Lassa fever in the Eastern Province of Sierra Leone, 1970-1972. I. Epidemiologic studies. , 1974, The American journal of tropical medicine and hygiene.
[2] I. Lukashevich,et al. Lassa virus activity in Guinea: Distribution of human antiviral antibody defined using enzyme‐linked immunosorbent assay with recombinant antigen , 1993, Journal of medical virology.
[3] A. Townsend Peterson,et al. Novel methods improve prediction of species' distributions from occurrence data , 2006 .
[4] J Elith,et al. A working guide to boosted regression trees. , 2008, The Journal of animal ecology.
[5] J. Chang-Claude,et al. Hunting of peridomestic rodents and consumption of their meat as possible risk factors for rodent-to-human transmission of Lassa virus in the Republic of Guinea. , 1996, The American journal of tropical medicine and hygiene.
[6] Dennis A. Benson,et al. GenBank , 2016, Nucleic Acids Res..
[7] A. Peterson,et al. Mapping Transmission Risk of Lassa Fever in West Africa: The Importance of Quality Control, Sampling Bias, and Error Weighting , 2014, PloS one.
[8] T. Monath,et al. Lassa Virus Isolation from Mastomys natalensis Rodents during an Epidemic in Sierra Leone , 1974, Science.
[9] B. Buddle,et al. The potential of oral vaccines for disease control in wildlife species. , 2007, Veterinary journal.
[10] Giovanni Lo Iacono,et al. Using Modelling to Disentangle the Relative Contributions of Zoonotic and Anthroponotic Transmission: The Case of Lassa Fever , 2015, PLoS neglected tropical diseases.
[11] G. Dobigny,et al. A cytotaxonomic survey of Rodents from Niger: implications for systematics, biodiversity and biogeography , 2002 .
[12] Rosamund F. Lewis,et al. Prevalence and Risk Factors of Lassa Seropositivity in Inhabitants of the Forest Region of Guinea: A Cross-Sectional Study , 2009, PLoS neglected tropical diseases.
[13] Steven J. Phillips,et al. Sample selection bias and presence-only distribution models: implications for background and pseudo-absence data. , 2009, Ecological applications : a publication of the Ecological Society of America.
[14] W. Schmidt,et al. Poor housing quality increases risk of rodent infestation and Lassa fever in refugee camps of Sierra Leone. , 2007, The American journal of tropical medicine and hygiene.
[15] E. Fichet-Calvet,et al. Systematics, Ecology, and Host Switching: Attributes Affecting Emergence of the Lassa Virus in Rodents across Western Africa , 2020, Viruses.
[16] T. Ksiazek,et al. Lassa fever in Guinea: I. Epidemiology of human disease and clinical observations. , 2001, Vector borne and zoonotic diseases.
[17] R. Hijmans,et al. Cross-validation of species distribution models: removing spatial sorting bias and calibration with a null model. , 2012, Ecology.
[18] L. Hutwagner,et al. Review of cases of nosocomial Lassa fever in Nigeria: the high price of poor medical practice , 1995, BMJ.
[19] L. Granjon,et al. Chromosomal characterization of three species of the genus Mastomys in Senegal , 2009 .
[20] L. Hutwagner,et al. Effective Vaccine for Lassa Fever , 2000, Journal of Virology.
[21] K. Ukwaja,et al. Widespread arenavirus occurrence and seroprevalence in small mammals, Nigeria , 2018, Parasites & Vectors.
[22] L. Granjon,et al. SYSTEMATICS OF THE GENUS MASTOMYS (Thomas, 1915) (Rodentia: Muridae) A REVIEW , 1997 .
[23] T. Selhorst,et al. The elimination of fox rabies from Europe: determinants of success and lessons for the future , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[24] Kate E. Jones,et al. Understanding the cryptic nature of Lassa fever in West Africa , 2017, Pathogens and Global Health.
[25] E. Fichet-Calvet,et al. Two Novel Arenaviruses Detected in Pygmy Mice, Ghana , 2013, Emerging infectious diseases.
[26] T. Monath,et al. Recent isolations of Lassa virus from Nigerian rodents. , 1975, Bulletin of the World Health Organization.
[27] H. Feldmann,et al. Lassa Virus Seroprevalence in Sibirilia Commune, Bougouni District, Southern Mali , 2016, Emerging infectious diseases.
[28] Debbie Baglole,et al. Lassa fever: epidemiology, clinical features, and social consequences , 2003, BMJ : British Medical Journal.
[29] Molly H. Biehl,et al. Local, national, and regional viral haemorrhagic fever pandemic potential in Africa: a multistage analysis , 2017, The Lancet.
[30] S. Günther,et al. Small mammal diversity and dynamics within Nigeria, with emphasis on reservoirs of the lassa virus , 2018 .
[31] J. Frame,et al. Endemic Lassa fever in Liberia. VI. Village serological surveys for evidence of Lassa virus activity in Lofa County, Liberia. , 1984, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[32] James O. Lloyd-Smith,et al. Pathways to zoonotic spillover , 2017, Nature Reviews Microbiology.
[33] A. Loiseau,et al. Population genetic structure of two ecologically distinct multimammate rats: the commensal Mastomys natalensis and the wild Mastomys erythroleucus in southeastern Senegal , 2007, Molecular ecology.
[34] Kate E. Jones,et al. Global trends in emerging infectious diseases , 2008, Nature.
[35] Mary E. Wilson,et al. The Origin and Prevention of Pandemics , 2010, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[36] H. Leirs,et al. A mitochondrial phylogeographic scenario for the most widespread African rodent, Mastomys natalensis , 2013 .
[37] D. Rogers,et al. Risk Maps of Lassa Fever in West Africa , 2009, PLoS neglected tropical diseases.
[38] S. Günther,et al. Spatial and temporal evolution of Lassa virus in the natural host population in Upper Guinea , 2016, Scientific Reports.
[39] Bayesian estimation of Lassa virus epidemiological parameters: Implications for spillover prevention using wildlife vaccination , 2020, PLoS neglected tropical diseases.
[40] E. Koonin,et al. Taxonomy of the family Arenaviridae and the order Bunyavirales: update 2018 , 2018, Archives of Virology.
[41] A. Akinpelu,et al. Diversity and distribution of murid rodent populations between forest and derived savanna sites within south western Nigeria , 2008, Biodiversity and Conservation.
[42] L. Moses,et al. Environmental‐mechanistic modelling of the impact of global change on human zoonotic disease emergence: a case study of Lassa fever , 2016 .
[43] R. Schoepp,et al. Rodent-borne infections in rural Ghanaian farming communities , 2019, PloS one.
[44] S. Günther,et al. Lassa Virus in Pygmy Mice, Benin, 2016–2017 , 2019, Emerging infectious diseases.
[45] M. Galan,et al. Molecular identification of four cryptic species of Mastomys (Rodentia, Murinae) , 2005 .
[46] Robert K. Colwell,et al. PREDICTABILITY, CONSTANCY, AND CONTINGENCY OF PERIODIC PHENOMENA' , 1974 .
[47] Nick Golding,et al. Mapping the zoonotic niche of Lassa fever in Africa , 2015, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[48] F. Jiguet,et al. Selecting pseudo‐absences for species distribution models: how, where and how many? , 2012 .
[49] S. Günther,et al. Mastomys natalensis and Lassa Fever, West Africa , 2006, Emerging infectious diseases.
[50] David L. Smith,et al. Mapping the zoonotic niche of Ebola virus disease in Africa , 2014, eLife.
[51] M. Jarvis,et al. Self-disseminating vaccines for emerging infectious diseases , 2015, Expert review of vaccines.
[52] S. Günther,et al. Lassa serology in natural populations of rodents and horizontal transmission. , 2014, Vector borne and zoonotic diseases.
[53] Dylan B. George,et al. Global distribution maps of the leishmaniases , 2014, eLife.
[54] L. Moses,et al. Sequence Variability and Geographic Distribution of Lassa Virus, Sierra Leone , 2015, Emerging infectious diseases.
[55] J. T. ter Meulen,et al. Fluctuation of abundance and Lassa virus prevalence in Mastomys natalensis in Guinea, West Africa. , 2007, Vector borne and zoonotic diseases.
[56] Andrew J. Basinski,et al. When to vaccinate a fluctuating wildlife population: Is timing everything? , 2019, The Journal of applied ecology.
[57] Benny Borremans,et al. When Viruses Don’t Go Viral: The Importance of Host Phylogeographic Structure in the Spatial Spread of Arenaviruses , 2017, PLoS pathogens.
[58] E. S. Smith,et al. A prospective study of the epidemiology and ecology of Lassa fever. , 1987, The Journal of infectious diseases.
[59] Barbara A. Han,et al. Updates to the zoonotic niche map of Ebola virus disease in Africa , 2016, eLife.
[60] Rustom Antia,et al. The role of evolution in the emergence of infectious diseases , 2003, Nature.
[61] D. Walker,et al. Pathogenesis of Lassa Fever , 2012, Viruses.
[62] Pardis C Sabeti,et al. Lassa Fever in Post-Conflict Sierra Leone , 2014, PLoS neglected tropical diseases.
[63] A. Akhmetzhanov,et al. Quantifying the seasonal drivers of transmission for Lassa fever in Nigeria , 2019, Philosophical Transactions of the Royal Society B.
[64] Herwig Leirs,et al. Productivity of different generations in a population of Mastomys natalensis rats in Tanzania , 1993 .
[65] H. Ebihara,et al. Detection of Lassa Virus, Mali , 2010, Emerging infectious diseases.
[66] S. Günther,et al. Novel Arenavirus Sequences in Hylomyscus sp. and Mus (Nannomys) setulosus from Côte d'Ivoire: Implications for Evolution of Arenaviruses in Africa , 2011, PloS one.
[67] Robert J. Fischer,et al. Geographic Distribution and Genetic Characterization of Lassa Virus in Sub-Saharan Mali , 2013, PLoS neglected tropical diseases.