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quantitation < quantitative < quarantine  Facettes :

List of bibliographic references indexed by quantitative

Number of relevant bibliographic references: 16.
Ident.Authors (with country if any)Title
000300 (2020) Jaegyun Lim [Corée du Sud] ; Seunghyun Jeon [Corée du Sud] ; Hyun Young Shin [Corée du Sud] ; Moon Jung Kim [Corée du Sud] ; Yu Min Seong [Corée du Sud] ; Wang Jun Lee [Corée du Sud] ; Kang Won Choe [Corée du Sud] ; Yu Min Kang [Corée du Sud] ; Baeckseung Lee [Corée du Sud] ; Sang Joon Park [Corée du Sud]The Author's Response: Case of the Index Patient Who Caused Tertiary Transmission of Coronavirus Disease 2019 in Korea: the Application of Lopinavir/Ritonavir for the Treatment of COVID-19 Pneumonia Monitored by Quantitative RT-PCR.
000608 (2020) Jin Yong KimLetter to the Editor: Case of the Index Patient Who Caused Tertiary Transmission of Coronavirus Disease 2019 in Korea: the Application of Lopinavir/Ritonavir for the Treatment of COVID-19 Pneumonia Monitored by Quantitative RT-PCR
000773 (2020) Susanne Pfefferle [Allemagne] ; Svenja Reucher [Allemagne] ; Dominic Nörz [Allemagne] ; Marc Lütgehetmann [Allemagne]Evaluation of a quantitative RT-PCR assay for the detection of the emerging coronavirus SARS-CoV-2 using a high throughput system.
000A58 (2020) Jaegyun Lim [Corée du Sud] ; Seunghyun Jeon [Corée du Sud] ; Hyun-Young Shin [Corée du Sud] ; Moon Jung Kim [Corée du Sud] ; Yu Min Seong [Corée du Sud] ; Wang Jun Lee [Corée du Sud] ; Kang-Won Choe [Corée du Sud] ; Yu Min Kang [Corée du Sud] ; Baeckseung Lee [Corée du Sud] ; Sang-Joon Park [Corée du Sud]Case of the Index Patient Who Caused Tertiary Transmission of Coronavirus Disease 2019 in Korea: the Application of Lopinavir/Ritonavir for the Treatment of COVID-19 Pneumonia Monitored by Quantitative RT-PCR
000D92 (2018) Ramneek Kaur [Inde] ; Monika Sodhi [Inde] ; Ankita Sharma [Inde] ; Vijay Lakshmi Sharma [Inde] ; Preeti Verma [Inde] ; Shelesh Kumar Swami [Inde] ; Parvesh Kumari [Inde] ; Manishi Mukesh [Inde]Selection of suitable reference genes for normalization of quantitative RT-PCR (RT-qPCR) expression data across twelve tissues of riverine buffaloes (Bubalus bubalis)
000F34 (2017) Carles Vilalta [États-Unis] ; Andreia G. Arruda [États-Unis] ; Steven J. P. Tousignant [États-Unis] ; Pablo Valdes-Donoso [États-Unis] ; Petra Muellner [Nouvelle-Zélande] ; Ulrich Muellner [Nouvelle-Zélande] ; Moh A. Alkhamis [États-Unis, Koweït] ; Robert B. Morrison [États-Unis] ; Andres M. Perez [États-Unis]A Review of Quantitative Tools Used to Assess the Epidemiology of Porcine Reproductive and Respiratory Syndrome in U.S. Swine Farms Using Dr. Morrison’s Swine Health Monitoring Program Data
001225 (2013) Falong Yang [République populaire de Chine] ; Xiaowen Lei [République populaire de Chine] ; Alexander Rodriguez-Palacios [États-Unis] ; Cheng Tang [République populaire de Chine] ; Hua Yue [République populaire de Chine]Selection of reference genes for quantitative real-time PCR analysis in chicken embryo fibroblasts infected with avian leukosis virus subgroup J
001319 (2012) Qingdi Quentin Li [États-Unis] ; Jeff Skinner [États-Unis] ; John E. Bennett [États-Unis]Evaluation of reference genes for real-time quantitative PCR studies in Candida glabrata following azole treatment
001401 (2011) Simone Peletto ; Simone Bertuzzi ; Chiara Campanella ; Paola Modesto ; Maria Grazia Maniaci ; Claudio Bellino ; Dario Ariello ; Antonio Quasso ; Maria Caramelli ; Pier Luigi AcutisEvaluation of Internal Reference Genes for Quantitative Expression Analysis by Real-Time PCR in Ovine Whole Blood
001486 (2010) S. Chey [Allemagne] ; C. Claus [Allemagne] ; U. G. Liebert [Allemagne]Validation and application of normalization factors for gene expression studies in rubella virus‐infected cell lines with quantitative real‐time PCR
001496 (2010) Tiziana Mascia [Italie] ; Elisa Santovito [Italie] ; Donato Gallitelli [Italie] ; Fabrizio Cillo [Italie]Evaluation of reference genes for quantitative reverse‐transcription polymerase chain reaction normalization in infected tomato plants
001644 (2007) Sarah Watson [Australie] ; Sarah Mercier [Australie] ; Chris Bye [Australie] ; John Wilkinson [Australie] ; Anthony L. Cunningham [Australie] ; Andrew N. Harman [Australie]Determination of suitable housekeeping genes for normalisation of quantitative real time PCR analysis of cells infected with human immunodeficiency virus and herpes viruses
001691 (2006) Lies Bogaert [Belgique] ; Mario Van Poucke [Belgique] ; Cindy De Baere [Belgique] ; Luc Peelman [Belgique] ; Frank Gasthuys [Belgique] ; Ann Martens [Belgique]Selection of a set of reliable reference genes for quantitative real-time PCR in normal equine skin and in equine sarcoids
001752 (2005) Karen Goossens [Belgique] ; Mario Van Poucke [Belgique] ; Ann Van Soom [Belgique] ; Jo Vandesompele [Belgique] ; Alex Van Zeveren [Belgique] ; Luc J. Peelman [Belgique]Selection of reference genes for quantitative real-time PCR in bovine preimplantation embryos
001753 (2005) Elizabeth P. Garcia ; Lori A. Dowding ; Lawrence W. Stanton ; Vladimir I. SlepnevScalable Transcriptional Analysis Routine—Multiplexed Quantitative Real-Time Polymerase Chain Reaction Platform for Gene Expression Analysis and Molecular Diagnostics
001754 (2005) Aleksandar Radoni [Allemagne] ; Stefanie Thulke [Allemagne] ; Hi-Gung Bae [Allemagne] ; Marcel A. Müller [Allemagne] ; Wolfgang Siegert [Allemagne] ; Andreas Nitsche [Allemagne]Reference gene selection for quantitative real-time PCR analysis in virus infected cells: SARS corona virus, Yellow fever virus, Human Herpesvirus-6, Camelpox virus and Cytomegalovirus infections

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