Roel Bogie
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colorectal cancer screening program. Endoscopy. 2014;46(03):203-11. 50. Pilonis ND, Bugajski M, Wieszczy P, . . . Kaminski MF. Long Term Colorectal Cancer Incidence and Mortality After a Single Negative Screening Colonoscopy. Ann Intern Med. 2020;173(2):81-91. 51. Castaneda D, Popov VB, Verheyen E, Wander P, Gross SA. New technologies improve adenoma detection rate, adenoma miss rate and polyp detection rate: a systematic review and meta-analysis. Gastrointest Endosc. 2018. 52. Iwatate M, Hirata D, Francisco CPD, . . . Sano Y. Efficacy of international web‐based educational intervention in the detection of high‐risk flat and depressed colorectal lesions higher (CATCH project) with a video: Randomized trial. Digestive Endoscopy. 2022. 53. Forsberg A, Widman L, Bottai M, Ekbom A, Hultcrantz R. Postcolonoscopy Colorectal Cancer in Sweden From 2003 to 2012: Survival, Tumor Characteristics, and Risk Factors. Clinical Gastroenterology and Hepatology. 2020;18(12):2724-33.e3. 54. Sakata S, Lee AHS, Kheir AO, . . . Hewett DG. Patient acceptance of the optical diagnosis and misdiagnosis of diminutive colorectal polyps. Gastrointestinal Endoscopy. 2017;86(2):372-5.e2. 55. Hassan C, Bisschops R, Bhandari P, . . . Repici A. Predictive rules for optical diagnosis of < 10-mm colorectal polyps based on a dedicated software. Endoscopy. 2020;52(1):52-60. 56. van den Heuvel TR, Wintjens DS, Jeuring SF, . . . Pierik MJ. Inflammatory bowel disease, cancer and medication: Cancer risk in the Dutch population-based IBDSL cohort. Int J Cancer. 2016;139(6):1270-80. 57. Sebastian S, Hernandez V, Myrelid P, . . . Danese S. Colorectal cancer in inflammatory bowel disease: results of the 3rd ECCO pathogenesis scientific workshop (I). Journal of Crohn's & colitis. 2014;8(1):5-18. 58. le Clercq CM, Bouwens MW, Rondagh EJ, . . . Sanduleanu S. Postcolonoscopy colorectal cancers are preventable: a population-based study. Gut. 2014;63(6):957-63. 59. Stjarngrim J, EkbomA, Hammar U, Hultcrantz R, Forsberg AM. Rates and characteristics of postcolonoscopy colorectal cancer in the Swedish IBD population: what are the differences from a non-IBD population? Gut. 2019;68(9):1588-96. 60. Hazewinkel Y, Lopez-Ceron M, East JE, . . . Dekker E. Endoscopic features of sessile serrated adenomas: validation by international experts using high-resolution white-light endoscopy and narrow-band imaging. Gastrointest Endosc. 2013;77(6):916-24. 61. Rondagh EJ, Masclee AA, Bouwens MW, . . . Sanduleanu S. Endoscopic red flags for the detection of high-risk serrated polyps: an observational study. Endoscopy. 2011;43(12):1052-8. 62. Cappellesso R, Lo Mele M, Munari G, . . . Rugge M. Molecular characterization of "sessile serrated" adenoma to carcinoma transition in six early colorectal cancers.
Pathology, research and practice. 2019. 63. Erichsen R, Baron JA, Hamilton-Dutoit SJ, . . . Sorensen HT. Increased Risk of Colorectal Cancer Development Among Patients With Serrated Polyps. Gastroenterology. 2016;150(4):895-902 e5. 64. Holme O, Bretthauer M, Eide TJ, . . . Hoff G. Long-term risk of colorectal cancer in individuals with serrated polyps. Gut. 2015;64(6):929-36. 65. Bianco MA, Cipolletta L, Rotondano G, . . . Flat Lesions Italian N. Prevalence of nonpolypoid colorectal neoplasia: an Italian multicenter observational study. Endoscopy. 2010;42(4):279-85. 66. Voorham QJ, Rondagh EJ, Knol DL, . . . Sanduleanu S. Tracking the molecular features of nonpolypoid colorectal neoplasms: a systematic review and meta analysis. Am J Gastroenterol. 2013;108(7):1042-56. 67. Chang LC, Chiu HM, Shun CT, . . . Wu MS. Mutational profiles of different macroscopic subtypes of colorectal adenoma reveal distinct pathogenetic roles for KRAS, BRAF and PIK3CA. BMC Gastroenterol. 2014;14:221. 68. Konda K, Konishi K, Yamochi T, . . . Yoshida H. Distinct molecular features of different macroscopic subtypes of colorectal neoplasms. PloS one. 2014;9(8):e103822. 69. Metz AJ, Bourke MJ, Moss A, . . . Hesson LB. A correlation of the endoscopic characteristics of colonic laterally spreading tumours with genetic alterations. European journal of gastroenterology & hepatology. 2013;25(3):319-26. 70. Niki Y, Hanaki H, Matsumoto T, . . . Totsuka K. Nationwide surveillance of bacterial respiratory pathogens conducted by the Japanese Society of Chemotherapy in 2008: general view of the pathogens' antibacterial susceptibility. J Infect Chemother. 2011;17(4):510-23. 71. Sugai T, Habano W, Takagi R, . . . Matsumoto T. Analysis of molecular alterations in laterally spreading tumors of the colorectum. Journal of gastroenterology. 2017;52(6):715-23. 72. Nong Y, Zhang Y, Zhang Y, . . . Liu S. Analysis of genetic alterations identifies the frequent mutation of GNAS in colorectal laterally spreading tumors. Cancer Communications. 2020;40(11):636-40. 73. Sakai E, Ohata K, Chiba H, . . . Kaneda A. Methylation epigenotypes and genetic features in colorectal laterally spreading tumors. Int J Cancer. 2014;135(7):1586-95. 74. Hesson LB, Ng B, Zarzour P, . . . Ward RL. Integrated Genetic, Epigenetic, and Transcriptional Profiling Identifies Molecular Pathways in the Development of Laterally Spreading Tumors. Mol Cancer Res. 2016;14(12):1217-28. 75. Kudo T, Kudo SE, Wakamura K, . . . Inoue H. Diagnostic performance of endocytoscopy for evaluating the invasion depth of different morphological types of colorectal tumors. Digestive endoscopy : official journal of the Japan Gastroenterological Endoscopy Society. 2015;27(7):754-61. 76. Matsuda T, Fujii T, Saito Y, . . . Fujimori T. Efficacy of
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