Colorectal Polyp Clinical Trial
Official title:
A Randomised Controlled Trial of the Prediction of Diminutive/Small Polyp Histology: a Comparison Between Didactic Training Versus Self-directed Computer Based Training
Bowel cancer is one of the most common cancers and the best method of diagnosing it is
through endoscopic examination of the bowel (colonoscopy). Pre-cursors of bowel cancer are
called polyps which can be detected and removed at the time of the colonoscopy. This reduces
the chance of developing bowel cancer. There are different types of polyp ranging from
completely harmless to those that may develop into cancer over time.
Advances in technology mean more polyps are being detected and it is possible to predict the
type of polyp. Therefore there is a new strategy in endoscopy whereby when a small polyp is
detected, a prediction of polyp type is made, the polyp removed and then discarded rather
than sending to the laboratory, thereby reducing costs to health services.
In the hands of experts, accuracies in predicting polyp type is similar to when the polyp is
removed and sent to the lab for analysis. Whilst experts can do this, non-experts cannot
reach these standards and there is a need for effective training.
The aim of the study is to compare the effectiveness of two training methods: Didactic
face-to-face training and computer-based self-learning on the ability of trainees at
predicting polyp type.
Status | Not yet recruiting |
Enrollment | 160 |
Est. completion date | December 2019 |
Est. primary completion date | June 2019 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | N/A and older |
Eligibility |
Inclusion Criteria: - Training colonoscopists: gastroenterology trainee in the process of training in colonoscopy and have had some experience of colonoscopy. Exclusion Criteria: - Inability to consent to take part in the study - Gastroenterology trainees without experience of colonoscopy |
Country | Name | City | State |
---|---|---|---|
n/a |
Lead Sponsor | Collaborator |
---|---|
University of Birmingham | Brigham and Women's Hospital, Federico II University, Gunma University Graduate School of Medicine, Maebashi, IEO-Istituto Europeo di Oncologia, Milan, Italy, Iwate Medical University, Mount Sinai Hospital, New York, University of Erlangen-Nürnberg |
Bisschops R, Hassan C, Bhandari P, Coron E, Neumann H, Pech O, Correale L, Repici A. BASIC (BLI Adenoma Serrated International Classification) classification for colorectal polyp characterization with blue light imaging. Endoscopy. 2018 Mar;50(3):211-220. — View Citation
Chang CC, Hsieh CR, Lou HY, Fang CL, Tiong C, Wang JJ, Wei IV, Wu SC, Chen JN, Wang YH. Comparative study of conventional colonoscopy, magnifying chromoendoscopy, and magnifying narrow-band imaging systems in the differential diagnosis of small colonic po — View Citation
Chiu HM, Chang CY, Chen CC, Lee YC, Wu MS, Lin JT, Shun CT, Wang HP. A prospective comparative study of narrow-band imaging, chromoendoscopy, and conventional colonoscopy in the diagnosis of colorectal neoplasia. Gut. 2007 Mar;56(3):373-9. Epub 2006 Sep 2 — View Citation
Curvers WL, van den Broek FJ, Reitsma JB, Dekker E, Bergman JJ. Systematic review of narrow-band imaging for the detection and differentiation of abnormalities in the esophagus and stomach (with video). Gastrointest Endosc. 2009 Feb;69(2):307-17. doi: 10. — View Citation
Gono K, Obi T, Yamaguchi M, Ohyama N, Machida H, Sano Y, Yoshida S, Hamamoto Y, Endo T. Appearance of enhanced tissue features in narrow-band endoscopic imaging. J Biomed Opt. 2004 May-Jun;9(3):568-77. — View Citation
Hassan C, Pickhardt PJ, Rex DK. A resect and discard strategy would improve cost-effectiveness of colorectal cancer screening. Clin Gastroenterol Hepatol. 2010 Oct;8(10):865-9, 869.e1-3. doi: 10.1016/j.cgh.2010.05.018. Epub 2010 Jun 1. — View Citation
Hewett DG, Kaltenbach T, Sano Y, Tanaka S, Saunders BP, Ponchon T, Soetikno R, Rex DK. Validation of a simple classification system for endoscopic diagnosis of small colorectal polyps using narrow-band imaging. Gastroenterology. 2012 Sep;143(3):599-607.e1 — View Citation
Higashi R, Uraoka T, Kato J, Kuwaki K, Ishikawa S, Saito Y, Matsuda T, Ikematsu H, Sano Y, Suzuki S, Murakami Y, Yamamoto K. Diagnostic accuracy of narrow-band imaging and pit pattern analysis significantly improved for less-experienced endoscopists after — View Citation
Hoffman A, Kagel C, Goetz M, Tresch A, Mudter J, Biesterfeld S, Galle PR, Neurath MF, Kiesslich R. Recognition and characterization of small colonic neoplasia with high-definition colonoscopy using i-Scan is as precise as chromoendoscopy. Dig Liver Dis. 2 — View Citation
Iacucci M, Trovato C, Daperno M, Akinola O, Greenwald D, Gross SA, Hoffman A, Lee J, Lethebe BC, Lowerison M, Nayor J, Neumann H, Rath T, Sanduleanu S, Sharma P, Kiesslich R, Ghosh S, Saltzman JR; SIMPLE classification investigator team. Development and v — View Citation
Ignjatovic A, East JE, Suzuki N, Vance M, Guenther T, Saunders BP. Optical diagnosis of small colorectal polyps at routine colonoscopy (Detect InSpect ChAracterise Resect and Discard; DISCARD trial): a prospective cohort study. Lancet Oncol. 2009 Dec;10(1 — View Citation
Ignjatovic A, Thomas-Gibson S, East JE, Haycock A, Bassett P, Bhandari P, Man R, Suzuki N, Saunders BP. Development and validation of a training module on the use of narrow-band imaging in differentiation of small adenomas from hyperplastic colorectal pol — View Citation
Khan T, Cinnor B, Gupta N, Hosford L, Bansal A, Olyaee MS, Wani S, Rastogi A. Didactic training vs. computer-based self-learning in the prediction of diminutive colon polyp histology by trainees: a randomized controlled study. Endoscopy. 2017 Dec;49(12):1 — View Citation
Ladabaum U, Fioritto A, Mitani A, Desai M, Kim JP, Rex DK, Imperiale T, Gunaratnam N. Real-time optical biopsy of colon polyps with narrow band imaging in community practice does not yet meet key thresholds for clinical decisions. Gastroenterology. 2013 J — View Citation
Lee CK, Lee SH, Hwangbo Y. Narrow-band imaging versus I-Scan for the real-time histological prediction of diminutive colonic polyps: a prospective comparative study by using the simple unified endoscopic classification. Gastrointest Endosc. 2011 Sep;74(3) — View Citation
Lieberman D, Moravec M, Holub J, Michaels L, Eisen G. Polyp size and advanced histology in patients undergoing colonoscopy screening: implications for CT colonography. Gastroenterology. 2008 Oct;135(4):1100-5. doi: 10.1053/j.gastro.2008.06.083. Epub 2008 — View Citation
Machida H, Sano Y, Hamamoto Y, Muto M, Kozu T, Tajiri H, Yoshida S. Narrow-band imaging in the diagnosis of colorectal mucosal lesions: a pilot study. Endoscopy. 2004 Dec;36(12):1094-8. — View Citation
McGill SK, Evangelou E, Ioannidis JP, Soetikno RM, Kaltenbach T. Narrow band imaging to differentiate neoplastic and non-neoplastic colorectal polyps in real time: a meta-analysis of diagnostic operating characteristics. Gut. 2013 Dec;62(12):1704-13. doi: — View Citation
Neumann H, Vieth M, Fry LC, Günther C, Atreya R, Neurath MF, Mönkemüller K. Learning curve of virtual chromoendoscopy for the prediction of hyperplastic and adenomatous colorectal lesions: a prospective 2-center study. Gastrointest Endosc. 2013 Jul;78(1): — View Citation
Rex DK, Overhiser AJ, Chen SC, Cummings OW, Ulbright TM. Estimation of impact of American College of Radiology recommendations on CT colonography reporting for resection of high-risk adenoma findings. Am J Gastroenterol. 2009 Jan;104(1):149-53. doi: 10.10 — View Citation
Rogart JN, Jain D, Siddiqui UD, Oren T, Lim J, Jamidar P, Aslanian H. Narrow-band imaging without high magnification to differentiate polyps during real-time colonoscopy: improvement with experience. Gastrointest Endosc. 2008 Dec;68(6):1136-45. doi: 10.10 — View Citation
Sakamoto T, Matsuda T, Aoki T, Nakajima T, Saito Y. Time saving with narrow-band imaging for distinguishing between neoplastic and non-neoplastic small colorectal lesions. J Gastroenterol Hepatol. 2012 Feb;27(2):351-5. doi: 10.1111/j.1440-1746.2011.06854. — View Citation
Shimoda R, Sakata Y, Fujise T, Yamanouchi K, Tsuruoka N, Hara M, Nakayama A, Yamaguchi D, Akutagawa T, Fujimoto K, Iwakiri R. The adenoma miss rate of blue-laser imaging vs. white-light imaging during colonoscopy: a randomized tandem trial. Endoscopy. 201 — View Citation
Su MY, Hsu CM, Ho YP, Chen PC, Lin CJ, Chiu CT. Comparative study of conventional colonoscopy, chromoendoscopy, and narrow-band imaging systems in differential diagnosis of neoplastic and nonneoplastic colonic polyps. Am J Gastroenterol. 2006 Dec;101(12): — View Citation
Wu L, Li Y, Li Z, Cao Y, Gao F. Diagnostic accuracy of narrow-band imaging for the differentiation of neoplastic from non-neoplastic colorectal polyps: a meta-analysis. Colorectal Dis. 2013 Jan;15(1):3-11. doi: 10.1111/j.1463-1318.2012.02947.x. — View Citation
Yoshida N, Yagi N, Inada Y, Kugai M, Okayama T, Kamada K, Katada K, Uchiyama K, Ishikawa T, Handa O, Takagi T, Konishi H, Kokura S, Yanagisawa A, Naito Y. Ability of a novel blue laser imaging system for the diagnosis of colorectal polyps. Dig Endosc. 201 — View Citation
* Note: There are 26 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Ability to predict colorectal polyp histology | Accuracy of polyp prediction, sensitivity, specificity, positive predictive value and negative predictive value | 6 months | |
Secondary | High confidence predictions | Proportion of high confidence predictions will be recorded in both arms | 6 months | |
Secondary | Interobserver agreement | Kappa statistics will be used to determine interobsever agreement in each polyp video classification | 6 months |
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