CrossRef Text and Data Mining
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One-Step Reverse Transcription-Polymerase Chain Reaction for Ebola and Marburg Viruses
Sun-Whan Park, Ye-Ji Lee, Won-Ja Lee, Youngmee Jee, WooYoung Choi
Osong Public Health Res Perspect. 2016;7(3):205-209.   Published online June 30, 2016

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One-Step Reverse Transcription-Polymerase Chain Reaction for Ebola and Marburg Viruses
Osong Public Health and Research Perspectives. 2016;7(3):205-209   Crossref logo
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Rapid detection and quantification of Ebola Zaire virus by one-step real-time quantitative reverse transcription-polymerase chain reaction
Microbiology and Immunology. 2017;61(3-4):130-137   Crossref logo
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Fast, Sensitive and Specific Detection of Thailand orthohantavirus and its Variants Using One-Step Real-Time Reverse-Transcription Polymerase Chain Reaction Assay
Viruses. 2019;11(8):718   Crossref logo

Reverse Transcription-Polymerase Chain Reaction
Encyclopedia of Cancer. 2011;3297-3297   Crossref logo

Development of a rapid and sensitive one-step reverse transcription-nested polymerase chain reaction in a single tube using the droplet-polymerase chain reaction machine
Clinica Chimica Acta. 2015;448:150-154   Crossref logo
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A one-step quantitative reverse transcription polymerase chain reaction procedure
Brain Research Protocols. 2001;6(3):100-107   Crossref logo
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One-Step Duplex Reverse Transcription–Polymerase Chain Reaction for Quantitative Assessment of RNA Degradation
Analytical Biochemistry. 2001;295(1):113-116   Crossref logo
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Quantitation of mRNA levels of steroid 5α-reductase isozymes: A method that combines one-step reverse transcription-polymerase chain reaction and separation by capillary electrophoresis
ELECTROPHORESIS. 2004;25(3):415-420   Crossref logo
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Reverse-transcription polymerase chain reaction for the detection of viruses from plants and aphids
Journal of Virological Methods. 1998;74(2):125-138   Crossref logo
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Reverse Transcription‐Polymerase Chain Reaction‐Based Detection of Plant Viruses
Current Protocols in Microbiology. 2007;6(1):   Crossref logo
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