Triage May Improve Selection to Colonoscopy and Reduce the Number of Unnecessary Colonoscopies
Abstract
:Simple Summary
Abstract
Country | Cut-off Level | Screening Age Interval [Reference] |
---|---|---|
Denmark | 100 ng/mL | screening age interval: 50–74 years [19] |
France (Paris) | 150 ng/mL (30 µg Hb/g) | screening age interval: 50–74 years [43] |
The Netherlands | 235 ng/mL (47 µg Hb/g) | screening age interval: 55–75 years [41] |
Sweden (females) | 200 ng/mL | screening age interval: 60–69 years [44] |
Sweden (males) | 400 ng/mL | screening age interval: 60–69 years [44] |
Scotland | 400 ng/mL (80 µg Hb/g) | screening age interval: 50–74 years [45] |
England | 600 ng/mL (120 µg Hb/g) | screening age interval: 60–74 years [46] |
Wales | 750 ng/mL (150 µg Hb/g) | screening age interval: 60–74 years [47] |
Author Contributions
Funding
Conflicts of Interest
References
- Gini, A.; Jansen, E.E.L.; Zielonke, N.; Meester, R.G.S.; Senore, C.; Anttila, A.; Segnan, N.; Mlakar, D.N.; De Koning, H.J.; Lansdorp-Vogelaar, I.; et al. Impact of colorectal cancer screening on cancer-specific mortality in Europe: A systematic review. Eur. J. Cancer 2020, 127, 224–235. [Google Scholar] [CrossRef] [Green Version]
- Levin, T.R.; Corley, D.A.; Jensen, C.D.; Schottinger, J.E.; Quinn, V.P.; Zauber, A.G.; Lee, J.K.; Zhao, W.K.; Udaltsova, N.; Ghai, N.R.; et al. Effects of Organized Colorectal Cancer Screening on Cancer Incidence and Mortality in a Large Community-Based Population. Gastroenterology 2018, 155, 1383–1391.e5. [Google Scholar] [CrossRef] [PubMed]
- Ladabaum, U.; Dominitz, J.A.; Kahi, C.; E Schoen, R. Strategies for Colorectal Cancer Screening. Gastroenterology 2020, 158, 418–432. [Google Scholar] [CrossRef] [PubMed]
- Cusumano, V.T.; May, F.P. Making FIT Count: Maximizing Appropriate Use of the Fecal Immunochemical Test for Colorectal Cancer Screening Programs. J. Gen. Intern. Med. 2020, 35, 1870–1874. [Google Scholar] [CrossRef] [PubMed]
- von Karsa, L.; Patnick, J.; Segnan, N.; Atkin, W.; Halloran, S.; Lansdorp-Vogelaar, I.; Malila, N.; Minozzi, S.; Moss, S.; Quirke, P.; et al. European guidelines for quality assurance in colorectal cancer screening and diagnosis. Endoscopy 2013, 45, 51–59. [Google Scholar] [PubMed] [Green Version]
- Niedermaier, T.; Balavarca, Y.; Brenner, H. Stage-specific sensitivity for fecal immunochemical tests for detecting colorectal cancer: Systemic review and metaanalysis. Am. J. Gastroenterol. 2020, 115, 56–69. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Brenner, H.; Gies, A.; Selby, K. Overestimated sensitivity for fecal immunochemical tests in screening cohorts with registry-based follow-up. Am. J. Gastroenterol. 2019, 114, 1795–1801. [Google Scholar] [CrossRef]
- Niedermaier, T.; Tikk, K.; Gies, A.; Bieck, S.; Brenner, H. Sensitivity of Fecal Immunochemical Test for Colorectal Cancer Detection Differs According to Stage and Location. Clin. Gastroenterol. Hepatol. 2020. [Google Scholar] [CrossRef]
- Brenner, H.; Niedermaier, T.; Chen, H. Strong subsite-specific variation in detecting advanced adenomas by fecal immunochemical testing for hemoglobin. Int. J. Cancer 2017, 140, 2015–2022. [Google Scholar] [CrossRef] [Green Version]
- Pox, C.P.; Altenhofen, L.; Brenner, H.; Theilmeier, A.; Von Stillfried, S.; Schmiegel, W. Efficacy of a Nationwide Screening Colonoscopy Program for Colorectal Cancer. Gastroenterology 2012, 142, 1460–1467. [Google Scholar] [CrossRef]
- Toes-Zoutendijk, E.; Portillo, I.; Hoeck, S.; De Brabander, I.; Perrin, P.; Dubois, C.; Van Leerdam, M.; Lansdorp-Vogelaar, I.; Bardou, M. Participation in faecal immunochemical testing-based colorectal cancer screening programmes in the northwest of Europe. J. Med Screen. 2019, 27, 68–76. [Google Scholar] [CrossRef] [PubMed]
- D’Andrea, E.; Ahnen, D.J.; Sussman, D.A.; Najafzadeh, M. Quantifying the impact of adherence to screening startegies on colorectal cancer incidence and mortality. Cancer Med. 2020, 9, 824–836. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- May, F.P.; Yano, E.M.; Provenzale, D.; Brunner, J.; Yu, C.; Phan, J.; Bharath, P.; Aby, E.; Dinh, D.; Ehrlich, D.S.; et al. Barriers to follow-up colonoscopies for patients with positive results from fecal immunochemical tests during colorectal cancer screening. Clin. Gastroenterol. Hepatol. 2019, 17, 469–476. [Google Scholar] [CrossRef] [PubMed]
- Jetelina, K.K.; Yudkin, J.S.; Miller, S.; Berry, E.; Lieberman, A.; Gupta, S.; Balasubramanian, B.A. Patient-reported barriers to completing a diagnostic colonoscopy following abnormal fecal immunochemical test among uninsured patients. J. Gen. Intern. Med. 2019, 34, 1730–1736. [Google Scholar] [CrossRef] [PubMed]
- Corley, D.A.; Jensen, C.D.; Quinn, V.P.; Doubeni, C.A.; Zauber, A.G.; Lee, J.K.; Schottinger, J.E.; Marks, A.R.; Zhao, W.K.; Ghai, N.R.; et al. Association between Time to Colonoscopy after a Positive Fecal Test Result and Risk of Colorectal Cancer and Cancer Stage at Diagnosis. JAMA 2017, 317, 1631–1641. [Google Scholar] [CrossRef] [PubMed]
- Beshara, A.; Ahoroni, M.; Comanester, D.; Dotan, I.; Niv, Y.; Vilkin, A.; Gingold-Belfer, R.; Cohen, A.D.; Levi, Z. Mo1621—Association Between Time to Colonoscopy after a Positive Guaiac Fecal Test Result and Risk of Colorectal Cancer and Advanced Stage Disease at Diagnosis. Gastroenterology 2018, 154, 1532–1540. [Google Scholar] [CrossRef]
- Dalton, A.R.H. Incomplete diagnostic follow-up after a positive colorectal cancer screening test: A systematic review. J. Public Health 2017, 40, e46–e58. [Google Scholar] [CrossRef]
- Lee, Y.-C.; Fann, J.C.; Chiang, T.-H.; Chuang, S.-L.; Chen, S.L.-S.; Chiu, H.-M.; Yen, A.M.; Chiu, S.Y.; Hsu, C.-Y.; Hsu, W.-F.; et al. Time to Colonoscopy and Risk of Colorectal Cancer in Patients with Positive Results from Fecal Immunochemical Tests. Clin. Gastroenterol. Hepatol. 2018, 17, 1332–1340.e3. [Google Scholar] [CrossRef] [Green Version]
- Larsen, M.B.; Njor, S.; Ingeholm, P.; Andersen, B. Effectiveness of Colorectal Cancer Screening in Detecting Earlier-Stage Disease-A Nationwide Cohort Study in Denmark. Gastroenterology 2018, 155, 99–106. [Google Scholar] [CrossRef] [Green Version]
- Nielsen, H.J.; Jakobsen, K.V.; Christensen, I.J.; Brünner, N. Screening for colorectal cancer: Possible improvements by risk assessment evaluation? Scand. J. Gastroenterol. 2011, 46, 1283–1294. [Google Scholar] [CrossRef] [Green Version]
- Sharara, A.I.; El Reda, Z.D.; Harb, A.H.; Fadel, G.G.A.; Sarkis, F.S.; Chalhoub, J.M.; Mrad, R.A. The burden of bowel preparations in patients undergoing elective colonoscopy. United Eur. Gastroenterol. J. 2016, 4, 314–318. [Google Scholar] [CrossRef] [PubMed]
- Brenner, H.; Altenhofen, L.; Hoffmeister, M. Eight Years of Colonoscopic Bowel Cancer Screening in Germany. Dtsch. Aerztebl. Int. 2010, 107, 753–759. [Google Scholar] [CrossRef]
- Wilhelmsen, M.; Christensen, I.J.; Rasmussen, L.; Jørgensen, L.N.; Madsen, M.R.; Vilandt, J.; Hillig, T.; Klaerke, M.; Nielsen, K.T.; Laurberg, S.; et al. Detection of colorectal neoplasia: Combination of eight blood-based, cancer-associated protein biomarkers. Int. J. Cancer 2017, 140, 1436–1446. [Google Scholar] [CrossRef]
- Phallen, J.; Sausen, M.; Adleff, V.; Leal, A.I.C.; Hruban, C.; White, J.; Anagnostou, V.; Fiksel, J.; Cristiano, S.; Papp, E.; et al. Direct detection of early-stage cancers using circulating tumor DNA. Sci. Transl. Med. 2017, 9, eaan2415. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Cristiano, S.; Leal, A.; Phallen, J.; Fiksel, J.; Adleff, V.; Bruhm, D.C.; Jensen, S.Ø.; Medina, J.E.; Hruban, C.; White, J.R.; et al. Genome-wide cell-free DNA fragmentation in patients with cancer. Nature 2019, 570, 385–389. [Google Scholar] [CrossRef] [PubMed]
- Jensen, S.Ø.; Øgaard, N.; Ørntoft, M.W.; Rasmussen, M.H.; Bramsen, J.B.; Kristensen, H.; Mouritsen, P.; Madsen, M.R.; Madsen, A.H.; Sunesen, K.G.; et al. Novel DNA methylation biomarkers show high sensitivity and specificity for blood-based detection of colorectal cancer—A clinical biomarker discovery and validation study. Clin. Epigenet. 2019, 11, 158. [Google Scholar] [CrossRef]
- Raut, J.R.; Guan, Z.; Schrotz-King, P.; Brenner, H. Whole-blood DNA Methylation Markers for Risk Stratification in Colorectal Cancer Screening: A Systematic Review. Cancers 2019, 11, 912. [Google Scholar] [CrossRef] [Green Version]
- Hariharan, R.; Jenkins, M.A. Utility of the methylated SEPT9 test for the early detection of colorectal cancer: A systematic review and meta-analysis of diagnostic test accuracy. BMJ Open Gastroenterol. 2020, 7, e000355. [Google Scholar] [CrossRef]
- Cohen, J.D.; Li, L.; Wang, Y.; Thoburn, C.; Afsari, B.; Danilova, L.V.; Douville, C.B.; Javed, A.A.; Wong, F.; Mattox, A.; et al. Detection and localization of surgically resectable cancers with a multi-analyte blood test. Science 2018, 359, 926–930. [Google Scholar] [CrossRef] [Green Version]
- Taber, J.M.; Aspinwall, L.G.; Heichman, K.A.; Kinney, A.Y. Preferences for Blood-Based Colon Cancer Screening Differ by Race/Ethnicity. Am. J. Health Behav. 2014, 38, 351–361. [Google Scholar] [CrossRef]
- Osborne, J.M.; Flight, I.; Wilson, C.; Chen, G.; Ratcliffe, J.; Young, G.P. The impact of sample type and procedural attributes on relative acceptability of different colorectal cancer screening regimens. Patient Prefer. Adherence 2018, 12, 1825–1836. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Shen, S.Y.; Singhania, R.; Fehringer, G.; Chakravarthy, A.; Roehrl, M.H.A.; Chadwick, D.; Zuzarte, P.C.; Borgida, A.; Wang, T.T.; Li, T.; et al. Sensitive tumour detection and classification using plasma cell-free DNA methylomes. Nature 2018, 563, 579–583. [Google Scholar] [CrossRef] [PubMed]
- Werner, S.; Krause, F.; Rolny, V.; Strobl, M.; Morgenstern, D.; Datz, C.; Chen, H.; Brenner, H. Evaluation of a 5-Marker Blood Test for Colorectal Cancer Early Detection in a Colorectal Cancer Screening Setting. Clin. Cancer Res. 2015, 22, 1725–1733. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Qian, J.; Tikk, K.; Werner, S.; Balavarca, Y.; Saadati, M.; Hechtner, M.; Brenner, H. Biomarker discovery study of inflammatory proteins for colorectal cancer early detection demonstrated importance of screening setting validation. J. Clin. Epidemiol. 2018, 104, 24–34. [Google Scholar] [CrossRef]
- Bhardwaj, M.; Weigl, K.; Tikk, K.; Holland-Letz, T.; Schrotz-King, P.; Borchers, C.H.; Brenner, H. Multiplex quantitation of 270 plasma protein markers to identify a signature for early detection of colorectal cancer. Eur. J. Cancer 2020, 127, 30–40. [Google Scholar] [CrossRef]
- Fiala, C.; Diamandis, E.P. New approaches for detecting cancer with circulating cell-free DNA. BMC Med. 2019, 17, 159. [Google Scholar] [CrossRef] [Green Version]
- Kleif, J.; Ferm, L.; Davis, G.J.; Christensen, I.J.; Nielsen, H.J. Development of blood-based, cancer-associated biomarkers for early detection of colorectal cancer: Significant differences between results from symptomatic and screening subjects. Gastroenterology 2020, 158. [Google Scholar] [CrossRef]
- Rasmussen, L.; Wilhelmsen, M.; Christensen, I.J.; Andersen, J.; Jørgensen, L.N.; Rasmussen, M.S.; Hendel, J.W.; Madsen, M.R.; Vilandt, J.; Hillig, T.; et al. Protocol Outlines for Parts 1 and 2 of the Prospective Endoscopy III Study for the Early Detection of Colorectal Cancer: Validation of a Concept Based on Blood Biomarkers. JMIR Res. Protoc. 2016, 5, e182. [Google Scholar] [CrossRef] [Green Version]
- Niedermaier, T.; Weigl, K.; Hoffmeister, M.; Brenner, H. Fecal immunochemical tests in combination with blood tests for colorectal cancer and advanced adenoma detection—Systematic review. United Eur. Gastroenterol. J. 2018, 6, 13–21. [Google Scholar] [CrossRef] [Green Version]
- Imperiale, T.F.; Ransohoff, D.F.; Itzkowitz, S.H.; Levin, T.R.; Lavin, P.; Lidgaard, G.P.; Ahlquist, D.A.; Berger, B.M. Multitarget stool DNA testing for colorectal cancer screening. N. Engl. J. Med. 2014, 370, 1287–1297. [Google Scholar] [CrossRef] [Green Version]
- Toes-Zoutendijk, E.; Van Leerdam, M.E.; Dekker, E.; Van Hees, F.; Penning, C.; Nagtegaal, I.; Van Der Meulen, M.P.; Van Vuuren, A.J.; Kuipers, E.J.; Bonfrer, J.M.; et al. Real-Time Monitoring of Results During First Year of Dutch Colorectal Cancer Screening Program and Optimization by Altering Fecal Immunochemical Test Cut-Off Levels. Gastroenterology 2016, 152, 767–775.e2. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Toes-Zoutendijk, E.; Bonfrer, J.M.; Ramakers, C.; Thelen, M.; Spaander, M.; Dekker, E.; Van Der Meulen, M.P.; Buskermolen, M.; Van Vuuren, A.J.; Kuipers, E.J.; et al. Quality Monitoring of a FIT-Based Colorectal Cancer Screening Program. Clin. Chem. 2019, 65, 419–426. [Google Scholar] [CrossRef] [PubMed]
- Pellat, A.; Deyra, J.; Coriat, R.; Chaussade, S. Results of the national organized colorectal cancer screening program with FIT in Paris. Sci. Rep. 2018, 8, 4162. [Google Scholar] [CrossRef] [PubMed]
- Blom, J.; Löwbeer, C.; Elfström, K.M.; Sventelius, M.; Öhman, D.; Saraste, D.; Törnberg, S. Gender-specific cut-offs in colorectal cancer screening with FIT: Increased compliance and equal positivity rate. J. Med. Screen. 2018, 26, 92–97. [Google Scholar] [CrossRef]
- Public Health Scotland. Available online: www.healthscotland.scot (accessed on 13 September 2020).
- NHS. Available online: www.nhs.uk/conditions/bowel-cancer (accessed on 13 September 2020).
- Bowel Screening Wales. Available online: www.bowelscreening.wales.nhs.uk (accessed on 13 September 2020).
- NHS Waiting Times Trends Shows Drastic Increase in Delays to Bowel Cancer Diagnostic Testing. Available online: www.bowelcanceruk.org.uk/shop 2019 (accessed on 11 September 2020).
- Nielsen, H.J.; Christensen, I.J.; Andersen, B.; Rasmussen, M.; Friis-Hansen, L.; Bygott, T.; Micallef, J. Serological biomarkers in triage of FIT-positive subjects? Scand. J. Gastroenterol. 2017, 52, 742–744. [Google Scholar] [CrossRef]
- Mertz-Petersen, M.; Piper, T.B.; Kleif, J.; Ferm, L.; Christensen, I.J.; Nielsen, H.J.; Jørgensen, L.N.; Rasmussen, M.S.; Hendel, J.; Madsen, M.R.; et al. Triage for selection to colonoscopy? Eur. J. Surg. Oncol. 2018, 44, 1539–1541. [Google Scholar] [CrossRef]
- Lieberman, D.A.; Gupta, S. Does Colon Polyp Surveillance Improve Patient Outcomes? Gastroenterology 2020, 158, 436–440. [Google Scholar] [CrossRef] [Green Version]
- Kleif, J.; Jørgensen, L.N.; Vilandt, J.; Hillig, T.; Madsen, M.R.; Nielsen, K.T.; Hendel, J.W.; Khalid, A.; Brandsborg, S.; Christensen, I.J.; et al. Early detection of colorectal neoplasia: Application of a blood-based serological protein test on subjects undergoing population-based screening. Gastroenterology 2020, in press. [Google Scholar] [CrossRef]
- Nielsen, H.J.; Brünner, N.; Jørgensen, L.N.; Olsen, J.; Rahr, H.B.; Thygesen, K.; Hoyer, U.; Laurberg, S.; Stieber, P.; Blankenstein, M.A.; et al. Plasma TIMP-1 and CEA in detection of primary colorectal cancer: A prospective, population based study of 4509 high-risk individuals. Scand. J. Gastroenterol. 2011, 46, 60–69. [Google Scholar] [CrossRef]
- Harrison, N.M.; Hjelkrem, M.C. Bowel cleansing before colonoscopy: Balancing efficacy, safety, cost and patient tolerance. World J. Gastrointest. Endosc. 2016, 8, 4–12. [Google Scholar] [CrossRef]
- Rutherford, C.C.; Calderwood, A.H. Update on Bowel Preparation for Colonoscopy. Curr. Treat. Options Gastroenterol. 2018, 16, 165–181. [Google Scholar] [CrossRef] [PubMed]
- Allen, M.L.; Leslie, K.; Hebbard, G.; Jones, I.; Mettho, T.; Maruff, A. A randomized controlled trial of light versus deep propofol sedation for elective outpatient colonoscopy: Recall, procedural conditions, and recovery. Can. J. Anesth. 2015, 62, 1169–1178. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Hoff, G.; De Lange, T.; Bretthauer, M.; Buset, M.; Dahler, S.; Halvorsen, F.-A.; Halwe, J.M.; Heibert, M.; Høie, O.; Kjellevold, Ø.; et al. Patient-reported adverse events after colonoscopy in Norway. Endoscopy 2017, 49, 745–753. [Google Scholar] [CrossRef] [PubMed]
- Forsberg, A.; Hammar, U.; Ekbom, A.; Hultcrantz, R. A register-based study: Adverse events in colonoscopies performed in Sweden 2001–2013. Scand. J. Gastroenterol. 2017, 52, 1042–1047. [Google Scholar] [CrossRef]
- Mikkelsen, E.M.; Thomsen, M.K.; Tybjerg, J.; Friis-Hansen, L.J.; Andersen, B.; Jørgensen, J.C.R.; Baatrup, G.; Njor, S.H.; Mehnert, F.; Rasmussen, M.S. Colonoscopy-related complications in a nationwide immunochemical fecal occult blood test-based colorectal cancer screening program. Clin. Epidemiol. 2018, 10, 1649–1655. [Google Scholar] [CrossRef] [Green Version]
- Kasi, P.M.; Shahjehan, F.; Cochuyt, J.J.; Li, Z.; Colibaseanu, D.T.; Merchea, A. Rising proportion of young individuals with rectal and colon cancer. Clin. Colorectal. Cancer 2019, 18, e87–e95. [Google Scholar] [CrossRef] [Green Version]
- Siegel, R.L.; Torre, L.A.; Soerjomataram, I.; Hayes, R.B.; Bray, F.; Weber, T.K.; Jemal, A. Global patterns and trends in colorectal cancer incidence in young adults. Gut 2019, 68, 2179–2185. [Google Scholar] [CrossRef] [Green Version]
- Lui, R.N.; Tsoi, K.K.; Ho, M.-W.; Lo, C.; Chan, F.C.; Kyaw, M.H.; Sung, J.J. Global Increasing Incidence of Young-Onset Colorectal Cancer Across 5 Continents: A Joinpoint Regression Analysis of 1,922,167 Cases. Cancer Epidemiol. Biomark. Prev. 2019, 28, 1275–1282. [Google Scholar] [CrossRef] [Green Version]
- Peterse, E.F.; Meester, R.G.; Siegel, R.L.; Chen, J.C.; Dwyer, A.; Ahnen, D.J.; Smith, R.A.; Zauber, A.G.; Lansdorp-Vogelaar, I. The impact of the rising colorectal cancer incidence in young adults on the optimal age to start screening: Microsimulation analysis I to inform the American Cancer Society colorectal cancer screening guideline. Cancer 2018, 124, 2964–2973. [Google Scholar] [CrossRef]
- Mannucci, A.; Zuoardo, R.A.; Rosati, R.; Leo, M.D.; Perea, J.; Cavestro, G.M. Colorectral cancer screening from 45 years of age: Thesis, antithesis and synthesis. World J. Gastroenterol. 2019, 25, 2565–2580. [Google Scholar] [CrossRef]
- Abualkhair, W.H.; Zhou, M.; Ahnen, D.; Yu, Q.; Wu, X.-C.; Karlitz, J.J. Trends in Incidence of Early-Onset Colorectal Cancer in the United States among those Approaching Screening Age. JAMA Netw. Open 2020, 3, e1920407. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Wolf, A.M.D.; Fontham, E.T.H.; Church, T.R.; Flowers, C.R.; Guerra, C.E.; LaMonte, S.J.; Etzioni, R.; McKenna, M.T.; Oeffinger, K.C.; Shih, Y.-C.T.; et al. Colorectal cancer screening for average-risk adults: 2018 guideline update from the American Cancer Society. CA Cancer J. Clin. 2018, 68, 250–281. [Google Scholar] [CrossRef] [PubMed]
- Colorectal Cancer Screening. Available online: www.uspreventiveservicestaskforce.org/aspstf/recommendation (accessed on 12 August 2020).
- Areia, M.; Fuccio, L.; Hassan, C.; Dekker, E.; Dias-Pereira, A.; Dinis-Ribeiro, M. Cost-utility analysis of colonoscopy or fecal immunochemical test for population-based organized colorectal cancer screening. United Eur. Gastroenterol. J. 2019, 7, 105–113. [Google Scholar] [CrossRef] [PubMed]
- Rex, D.K.; Boland, C.R.; Dominitz, J.A.; Giardiello, F.M.; Johnson, D.A.; Kaltenbach, T.; Levin, T.R.; Lieberman, D.; Robertson, D.J. Colorectal cancer screening: Recommendations for physicians and patients from the U.S. Multi-Scociety Task Force on colorectal cancer. Gastrointest. Endosc. 2017, 86, 18–29. [Google Scholar] [CrossRef] [Green Version]
- Azad, N.S.; Leeds, I.L.; Wanjau, W.; Shin, E.J.; Padula, W.V. Cost-utility of colorectal cancer screening at 40 years old for average-risk patients. Prev. Med. 2020, 133, 106003. [Google Scholar] [CrossRef]
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Petersen, M.M.; Ferm, L.; Kleif, J.; Piper, T.B.; Rømer, E.; Christensen, I.J.; Nielsen, H.J. Triage May Improve Selection to Colonoscopy and Reduce the Number of Unnecessary Colonoscopies. Cancers 2020, 12, 2610. https://doi.org/10.3390/cancers12092610
Petersen MM, Ferm L, Kleif J, Piper TB, Rømer E, Christensen IJ, Nielsen HJ. Triage May Improve Selection to Colonoscopy and Reduce the Number of Unnecessary Colonoscopies. Cancers. 2020; 12(9):2610. https://doi.org/10.3390/cancers12092610
Chicago/Turabian StylePetersen, Mathias M., Linnea Ferm, Jakob Kleif, Thomas B. Piper, Eva Rømer, Ib J. Christensen, and Hans J. Nielsen. 2020. "Triage May Improve Selection to Colonoscopy and Reduce the Number of Unnecessary Colonoscopies" Cancers 12, no. 9: 2610. https://doi.org/10.3390/cancers12092610
APA StylePetersen, M. M., Ferm, L., Kleif, J., Piper, T. B., Rømer, E., Christensen, I. J., & Nielsen, H. J. (2020). Triage May Improve Selection to Colonoscopy and Reduce the Number of Unnecessary Colonoscopies. Cancers, 12(9), 2610. https://doi.org/10.3390/cancers12092610