The effective rate of influenza reassortment is limited during human infection
10.1371/journal.ppat.1006203
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sg-nus-scholar.10635-1618992023-10-31T20:34:18Z The effective rate of influenza reassortment is limited during human infection Sobel Leonard A. McClain M.T. Smith G.J.D. Wentworth D.E. Halpin R.A. Lin X. Ransier A. Stockwell T.B. Das S.R. Gilbert A.S. Lambkin-Williams R. Ginsburg G.S. Woods C.W. Koelle K. Illingworth C.J.R. DUKE-NUS MEDICAL SCHOOL oseltamivir amino acid substitution Article Bayes theorem dispersity drug resistance gene frequency gene locus genetic association genetic reassortment haplotype human human cell influenza mutation nonhuman simulation single nucleotide polymorphism validation process virus load biological model genetic selection genetics influenza Orthomyxoviridae virology Humans Influenza, Human Models, Genetic Orthomyxoviridae Selection, Genetic 10.1371/journal.ppat.1006203 PLoS Pathogens 13 2 e1006203 2019-11-08T06:45:16Z 2019-11-08T06:45:16Z 2017 Article Sobel Leonard A., McClain M.T., Smith G.J.D., Wentworth D.E., Halpin R.A., Lin X., Ransier A., Stockwell T.B., Das S.R., Gilbert A.S., Lambkin-Williams R., Ginsburg G.S., Woods C.W., Koelle K., Illingworth C.J.R. (2017). The effective rate of influenza reassortment is limited during human infection. PLoS Pathogens 13 (2) : e1006203. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.ppat.1006203 15537366 https://scholarbank.nus.edu.sg/handle/10635/161899 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20191101 |
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oseltamivir amino acid substitution Article Bayes theorem dispersity drug resistance gene frequency gene locus genetic association genetic reassortment haplotype human human cell influenza mutation nonhuman simulation single nucleotide polymorphism validation process virus load biological model genetic selection genetics influenza Orthomyxoviridae virology Humans Influenza, Human Models, Genetic Orthomyxoviridae Selection, Genetic |
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oseltamivir amino acid substitution Article Bayes theorem dispersity drug resistance gene frequency gene locus genetic association genetic reassortment haplotype human human cell influenza mutation nonhuman simulation single nucleotide polymorphism validation process virus load biological model genetic selection genetics influenza Orthomyxoviridae virology Humans Influenza, Human Models, Genetic Orthomyxoviridae Selection, Genetic Sobel Leonard A. McClain M.T. Smith G.J.D. Wentworth D.E. Halpin R.A. Lin X. Ransier A. Stockwell T.B. Das S.R. Gilbert A.S. Lambkin-Williams R. Ginsburg G.S. Woods C.W. Koelle K. Illingworth C.J.R. The effective rate of influenza reassortment is limited during human infection |
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10.1371/journal.ppat.1006203 |
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DUKE-NUS MEDICAL SCHOOL |
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DUKE-NUS MEDICAL SCHOOL Sobel Leonard A. McClain M.T. Smith G.J.D. Wentworth D.E. Halpin R.A. Lin X. Ransier A. Stockwell T.B. Das S.R. Gilbert A.S. Lambkin-Williams R. Ginsburg G.S. Woods C.W. Koelle K. Illingworth C.J.R. |
format |
Article |
author |
Sobel Leonard A. McClain M.T. Smith G.J.D. Wentworth D.E. Halpin R.A. Lin X. Ransier A. Stockwell T.B. Das S.R. Gilbert A.S. Lambkin-Williams R. Ginsburg G.S. Woods C.W. Koelle K. Illingworth C.J.R. |
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Sobel Leonard A. |
title |
The effective rate of influenza reassortment is limited during human infection |
title_short |
The effective rate of influenza reassortment is limited during human infection |
title_full |
The effective rate of influenza reassortment is limited during human infection |
title_fullStr |
The effective rate of influenza reassortment is limited during human infection |
title_full_unstemmed |
The effective rate of influenza reassortment is limited during human infection |
title_sort |
effective rate of influenza reassortment is limited during human infection |
publishDate |
2019 |
url |
https://scholarbank.nus.edu.sg/handle/10635/161899 |
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1781791860583301120 |