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    Munoz N,Bosch FX,de Sanjose S,Herrero R,Castellsague X,Shah KV,Snijders PJ,Meijer CJ. Epidemiologic classification of human papillomavirus types associated with cervical cancer. N Engl J Med 2003; 348: 51827.
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    Bulkmans NW,Rozendaal L,Snijders PJ,Voorhorst FJ,Boeke AJ,Zandwijken GR,van Kemenade FJ,Verheijen RH,Groningen K,Boon ME,Keuning HJ,van Ballegooijen M, et al. POBASCAM, a population-based randomized controlled trial for implementation of high-risk HPV testing in cervical screening: design, methods and baseline data of 44,102 women. Int J Cancer 2004; 110: 94101.
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    Berkhof J,Bulkmans NW,Bleeker MC,Bulk S,Snijders PJ,Voorhorst FJ,Meijer CJ. Human papillomavirus type-specific 18-month risk of high-grade cervical intraepithelial neoplasia in women with a normal or borderline/mildly dyskaryotic smear. Cancer Epidemiol Biomarkers Prev 2006; 15: 126873.
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    van den Brule AJ,Pol R,Fransen-Daalmeijer N,Schouls LM,Meijer CJ,Snijders PJ. GP5+/6+ PCR followed by reverse line blot analysis enables rapid and high-throughput identification of human papillomavirus genotypes. J Clin Microbiol 2002; 40: 77987.
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    Hesselink AT,van den Brule AJ,Groothuismink ZM,Molano M,Berkhof J,Meijer CJ,Snijders PJ. Comparison of three different PCR methods for quantifying human papillomavirus type 16 DNA in cervical scrape specimens. J Clin Microbiol 2005; 43: 486871.
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    Arbyn M,Sasieni P,Meijer CJ,Clavel C,Koliopoulos G,Dillner J. Chapter 9: clinical applications of HPV testing: a summary of meta-analyses. Vaccine 2006; 24( Suppl 3): S78S89.
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    Cuzick J,Clavel C,Petry KU,Meijer CJ,Hoyer H,Ratnam S,Szarewski A,Birembaut P,Kulasingam S,Sasieni P,Iftner T. Overview of the European and North American studies on HPV testing in primary cervical cancer screening. Int J Cancer 2006; 119: 1095101.
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    Cuzick J,Mayrand MH,Ronco G,Snijders P,Wardle J. Chapter 10: new dimensions in cervical cancer screening. Vaccine 2006; 24( Suppl 3): S90S97.
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    Bulk S,Bulkmans NW,Berkhof J,Rozendaal L,Boeke AJ,Verheijen RH,Snijders PJ,Meijer CJ. Risk of high-grade cervical intra-epithelial neoplasia based on cytology and high-risk HPV testing at baseline and at 6-months. Int J Cancer 2007; 121: 3617.
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    Khan MJ,Castle PE,Lorincz AT,Wacholder S,Sherman M,Scott DR,Rush BB,Glass AG,Schiffman M. The elevated 10-year risk of cervical precancer and cancer in women with human papillomavirus (HPV) type 16 or 18 and the possible utility of type-specific HPV testing in clinical practice. J Natl Cancer Inst 2005; 97: 10729.
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    Castle PE,Solomon D,Schiffman M,Wheeler CM. Human papillomavirus type 16 infections and 2-year absolute risk of cervical precancer in women with equivocal or mild cytologic abnormalities. J Natl Cancer Inst 2005; 97: 106671.
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    Molden T,Kraus I,Karlsen F,Skomedal H,Nygard JF,Hagmar B. Comparison of human papillomavirus messenger RNA and DNA detection: a cross-sectional study of 4,136 women >30 years of age with a 2-year follow-up of high-grade squamous intraepithelial lesion. Cancer Epidemiol Biomarkers Prev 2005; 14: 36772.
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    Cuschieri KS,Whitley MJ,Cubie HA. Human papillomavirus type specific DNA and RNA persistence–implications for cervical disease progression and monitoring. J Med Virol 2004; 73: 6570.
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    Henken FE,Wilting SM,Overmeer RM,van Rietschoten JG,Nygren AO,Errami A,Schouten JP,Meijer CJ,Snijders PJ,Steenbergen RD. Sequential gene promoter methylation during HPV-induced cervical carcinogenesis. Br J Cancer 2007; 97: 145764.
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    Wilting SM,Snijders PJ,Meijer GA,Ylstra B,van den Ijssel PR,Snijders AM,Albertson DG,Coffa J,Schouten JP,van de Wiel MA,Meijer CJ,Steenbergen RD. Increased gene copy numbers at chromosome 20q are frequent in both squamous cell carcinomas and adenocarcinomas of the cervix. J Pathol 2006; 209: 22030.