New in situ capture quantitative (real-time) reverse transcription-PCR method as an alternative approach for determining inactivation of Tulane virus.
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Evaluation of the porcine gastric mucin binding assay for high-pressure-inactivation studies using murine norovirus and tulane virusHuman Norovirus Aptamer Exhibits High Degree of Target Conformation-Dependent Binding Similar to That of Receptors and Discriminates Particle FunctionalityBacterial Surface-Displayed GII.4 Human Norovirus Capsid Proteins Bound to HBGA-Like Molecules in Romaine Lettuce.In Situ Capture RT-qPCR: A New Simple and Sensitive Method to Detect Human Norovirus in OystersEstimation of Human Norovirus Infectivity from Environmental Water Samples by In Situ Capture RT-qPCR Method.Physicochemical stability profile of Tulane virus: a human norovirus surrogate.Binding of Escherichia coli Does Not Protect Tulane Virus from Heat-Inactivation Regardless the Expression of HBGA-Like Molecules.A Bacterial Surface Display System Expressing Cleavable Capsid Proteins of Human Norovirus: A Novel System to Discover Candidate Receptors.Alternative In Vitro Methods for the Determination of Viral Capsid Structural Integrity.Infectivity and RNA Persistence of a Norovirus Surrogate, the Tulane Virus, in Oysters.
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New in situ capture quantitative (real-time) reverse transcription-PCR method as an alternative approach for determining inactivation of Tulane virus.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 24 January 2014
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
New in situ capture quantitati ...... inactivation of Tulane virus.
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New in situ capture quantitative
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type
label
New in situ capture quantitati ...... inactivation of Tulane virus.
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New in situ capture quantitative
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prefLabel
New in situ capture quantitati ...... inactivation of Tulane virus.
@en
New in situ capture quantitative
@nl
P2093
P2860
P356
P1476
New in situ capture quantitati ...... inactivation of Tulane virus.
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P2093
David Yang
Glenn M Young
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P304
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10.1128/AEM.04036-13
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P50
P577
2014-01-24T00:00:00Z