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Comparison of two PCR-based human papillomavirus genotyping methods
Philip E. Castle
, Carolina Porras
, Wim G. Quint
, Ana Cecilia Rodriguez
, Mark Schiffman
, Patti E. Gravitt
, Paula González
, Hormuzd A. Katki
, Sandra Silva
, Enrique Freer
, Leen Jan Van Doorn
, Silvia Jiménez
, Rolando Herrero
, Allan Hildesheim
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Article
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peer-review
75
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Keyphrases
PCR-based
100%
Genotyping Techniques
100%
SPF10
100%
Human Papillomavirus Genotyping
100%
Linear Array
90%
HPV16
70%
Human Papillomavirus Genotypes
70%
Array Techniques
60%
Human Papillomavirus
50%
HPV18
40%
Genotype
30%
Cervical Specimen
30%
Reverse Line Blot
20%
PCR Amplification
20%
Amplicon
20%
L1 Gene
20%
Genotype-specific
20%
Hybrid Capture
10%
Stratified Sampling
10%
Consensus Primers
10%
Human Papillomavirus Vaccine
10%
Clinical Trials
10%
Costa Rica
10%
Sexually Active
10%
HPV31
10%
Kappa Coefficient
10%
Vaccine Trial
10%
Specific Detectivity
10%
HPV 52
10%
HPV58
10%
HPV68
10%
Specimen Test
10%
Specific Testing
10%
Biochemistry, Genetics and Molecular Biology
Genotyping
100%
Wart Virus
100%
Human Papillomavirus Type 16
46%
Human Papillomavirus Type 18
26%
Amplicon
13%
Clinical Trial
6%
Human Papillomavirus Type 31
6%
Human Papillomavirus Type 58
6%
Human Papillomavirus Type 52
6%
Human Papillomavirus Type 59
6%
Robotics
6%
Immunology and Microbiology
Wart Virus
100%
Human Papillomavirus Type 16
50%
Human Papillomavirus Type 18
28%
Amplicon
14%
Vaccine Efficacy
7%
Infectious Disease
7%
Human Papillomavirus Type 31
7%
Cervarix
7%
Human Papillomavirus Type 52
7%
Human Papillomavirus Type 58
7%
Human Papillomavirus Type 59
7%
Infection
7%
Cell Biology
7%
Cytology
7%
Cytotechnology
7%
Robotics
7%
Pharmacology, Toxicology and Pharmaceutical Science
Human Papillomavirus Type 59
7%