Stahl KD, Brien SB. Reducing patient errors in trauma care. In: Cohn SM (Ed.). Acute Care Surgery and Trauma - Evidenced-Based Practice. Informa UK Ltd; 2009: 268-77.
Williams JC. A data-based method for assessing and reducing human error to improve operational performance. Monterey, CA, USA: IEEE fourth conference on human factors and power plants; 1988. p. 436-50.
Google Scholar
Hendy KC. A Tool for Human Factors Accident Investigation, Classification and Risk Management. Defense R&D Canada – Toronto. Technical Report - DRDC Toronto TR 2002-057: 2003. Available from URL: http://i3pod.com/wp-content/uploads/2011/04/A-tool-for-human-factors-accident-invest-classification-risk-management-K-C-Hendy.pdf (accessed September 2012).
Leape LL, Brennan TA, Laird N, et al. The nature of adverse events in hospitalized patients. Results of the Harvard Medical Practice Study II. N Engl J Med 1991; 324: 377-84.
PubMed
Article
CAS
Google Scholar
Thomas EJ, Studdert DM, Newhouse JP, et al. Costs of medical injuries in Utah and Colorado. Inquiry 1999; 36: 255-64.
PubMed
CAS
Google Scholar
Martin JA, Smith BL, Mathews TJ, Ventura SJ; Divisio of Vital Statistics. Centers for Disease Control and Prevention. (National Center for Health Statistics). Births and Deaths: Preliminary Data for 1998. National Vital Statistics Reports 1999. Available from URL: http://www.cdc.gov/nchs/data/nvsr/nvsr47/nvs47_25.pdf (accessed September 2012).
Baker GR, Norton PG, Flintoft V, et al. The Canadian Adverse Events Study: the incidence of adverse events among hospital patients in Canada. CMAJ 2004; 170: 1678-86.
PubMed
Google Scholar
Weick KE, Sutcliffe KM. Managing the Unexpected. San Francisco, CA: Jossey-Bass; 2001. p. 10.
Google Scholar
Gaba DM, Howard SK, Flanagan B, Smith BE, Fish KJ, Botney R. Assessment of clinical performance during simulated crises using both technical and behavioral ratings. Anesthesiology 1998; 89: 8-18.
PubMed
Article
CAS
Google Scholar
Flin R, Yule S, Paterson-Brown S, Maran N, Rowley D, Youngson G. Teaching surgeons about non-technical skills. Surgeon 2007; 5: 86-9.
PubMed
Article
CAS
Google Scholar
Fletcher G, Flin R, McGeorge P, Glavin R, Maran N, Patey R. Rating non-technical skills: developing a behavioural marker system for use in anaesthesia. Cognition, Technology & Work 2004; 6: 165-71.
Article
Google Scholar
Frank JR, Danoff D. The CanMEDS initiative: implementing an outcomes-based framework of physician competencies. Med Teach 2007; 29: 642-7.
PubMed
Article
Google Scholar
Naik VN, Wong AK, Hamstra SJ. Review article: Leading the future: guiding two predominant paradigm shifts in medical education through scholarship. Can J Anesth 2012; 59: 213-23.
PubMed
Article
Google Scholar
Frank JR, Brien S, The Safety Competencies Steering Committee. The Safety Competencies: Enhancing Patient Safety Across the Health Professions. Ottawa, ON: Canadian Patient Safety Institute; 2008 .
Google Scholar
Yee B, Naik VN, Joo HS, et al. Nontechnical skills in anesthesia crisis management with repeated exposure to simulation-based education. Anesthesiology 2005; 103: 241-8.
PubMed
Article
Google Scholar
O’Sullivan H, van Mook W, Fewtrell R, Wass V. Integrating professionalism into the curriculum: AMEE Guide No. 61. Med Teach 2012; 34: e64-77.
PubMed
Article
Google Scholar
Issenberg SB, McGaghie WC, Hart IR, et al. Simulation technology for health care professional skills training and assessment. JAMA 1999; 282: 861-6.
PubMed
Article
CAS
Google Scholar
Kassab E, Kyaw Tun J, Kneebone RL. A novel approach to contextualized surgical simulation training. Simul Healthc 2012; 7: 155-61.
PubMed
Article
Google Scholar
Paige JT. Surgical team training: promoting high reliability with nontechnical skills. Surg Clin North Am 2010; 90: 569-81.
PubMed
Article
Google Scholar
Park CS. Simulation and quality improvement in anesthesiology. Anesthesiol Clin 2011; 29: 13-28.
PubMed
Article
Google Scholar
Salas E, DiazGranados D, Weaver SJ, King H. Does team training work? Principles for health care. Acad Emerg Med 2008; 15: 1002-9.
PubMed
Article
Google Scholar
Wilson KA, Burke CS, Priest HA, Salas E. Promoting health care safety through training high reliability teams. Qual Saf Health Care 2005; 14: 303-9.
PubMed
Article
CAS
Google Scholar
Park CS, Rochlen LR, Yaghmour E, et al. Acquisition of critical intraoperative event management skills in novice anesthesiology residents by using high-fidelity simulation-based training. Anesthesiology 2010; 112: 202-11.
PubMed
Article
Google Scholar
Gaba DM. The future vision of simulation in health care. Qual Saf Health Care 2004; 13(Suppl 1): i2-10.
PubMed
Article
Google Scholar
Rosen KR. The history of medical simulation. J Crit Care 2008; 23: 157-66.
PubMed
Article
Google Scholar
Denson JS, Abrahamson S. A computer-controlled patient simulator. JAMA 1969; 208: 504-8.
PubMed
Article
CAS
Google Scholar
Brydges R, Carnahan H, Rose D, Rose L, Dubrowski A. Coordinating progressive levels of simulation fidelity to maximize educational benefit. Acad Med 2010; 85: 806-12.
PubMed
Article
Google Scholar
Matsumoto ED, Hamstra SJ, Radomski SB, Cusimano MD. The effect of bench model fidelity on endourological skills: a randomized controlled study. J Urol 2002; 167: 1243-7.
PubMed
Article
Google Scholar
Grober ED, Hamstra SJ, Wanzel KR, et al. The educational impact of bench model fidelity on the acquisition of technical skill: the use of clinically relevant outcome measures. Ann Surg 2004; 240: 374-81.
PubMed
Article
Google Scholar
Halamek LP. The simulated delivery-room environment as the future modality for acquiring and maintaining skills in fetal and neonatal resuscitation. Semin Fetal Neonatal Med 2008; 13: 448-53.
PubMed
Article
Google Scholar
Cook DA, Erwin PJ, Triola MM. Computerized virtual patients in health professions education: a systematic review and meta-analysis. Acad Med 2010; 85: 1589-602.
PubMed
Article
Google Scholar
Sijstermans R, Jaspers MW, Bloemendaal PM, Schoonderwaldt EM. Training inter-physician communication using the Dynamic Patient Simulator. Int J Med Inform 2007; 76: 336-43.
PubMed
Article
CAS
Google Scholar
Dye J, Gillon L, Sales R. Benefits and challenges of interprofessional collaboration in the development of a virtual learning environment. J Interprof Care 2009; 23: 95-7.
PubMed
Article
Google Scholar
Norman GR, Brooks LR, Cunnington JP, Shali V, Marriott M, Regehr G. Expert-novice differences in the use of history and visual information from patients. Acad Med 1996; 71(10 Suppl): S62-4.
PubMed
Article
CAS
Google Scholar
Russell JA. A circumplex model of affect. J Personality and Social Psychology 1980; 39: 1161-78.
Article
Google Scholar
Issenberg SB, Mcgaghie WC, Petrusa ER, Lee Gordon D, Scalese RJ. Features and uses of high-fidelity medical simulations that lead to effective learning: a BEME systematic review. Med Teach 2005; 27: 10-28.
PubMed
Article
Google Scholar
Fanning RM, Gaba DM. The role of debriefing in simulation-based learning. Simul Healthc 2007; 2: 115-25.
PubMed
Article
Google Scholar
Savoldelli GL, Naik VN, Park J, Joo HS, Chow R, Hamstra SJ. Value of debriefing during simulated crisis management: oral versus video-assisted oral feedback. Anesthesiology 2006; 105: 279-85.
PubMed
Article
Google Scholar
Rudolph JW, Simon R, Rivard P, Dufresne RL, Raemer DB. Debriefing with good judgment: combining rigorous feedback with genuine inquiry. Anesthesiol Clin 2007; 25: 361-76.
PubMed
Article
Google Scholar
Leblanc VR. Review article: simulation in anesthesia: state of the science and looking forward. Can J Anesth 2012; 59: 193-202.
PubMed
Article
Google Scholar
Ericsson KA. Deliberate practice and the acquisition and maintenance of expert performance in medicine and related domains. Acad Med 2004; 79(10 Suppl): S70-81.
PubMed
Article
Google Scholar
McGaghie WC, Siddall VJ, Mazmanian PE, Myers J, American College of Chest Physicians Health and Science Policy Committee. Lessons for continuing medical education from simulation research in undergraduate and graduate medical education: effectiveness of continuing medical education: American College of Chest Physicians Evidence-Based Educational Guidelines. Chest 2009; 135(3 Suppl): 62S-8S.
PubMed
Article
Google Scholar
Heard AM, Green RJ, Eakins P. The formulation and introduction of a ‘can’t intubate, can’t ventilate’ algorithm into clinical practice. Anaesthesia 2009; 64: 601-8.
PubMed
Article
CAS
Google Scholar
Wong DT, Lai K, Chung FF, Ho RY. Cannot intubate-cannot ventilate and difficult intubation strategies: results of a Canadian national survey. Anesth Analg 2005; 100: 1439-46.
PubMed
Article
Google Scholar
Boet S, Borges BC, Naik VN, et al. Complex procedural skills are retained for a minimum of 1 yr after a single high-fidelity simulation training session. Br J Anaesth 2011; 107: 533-9.
PubMed
Article
CAS
Google Scholar
Miller G. The assessment of clinical skills/competence/performance. Acad Med 1990; 65: S63.
PubMed
Article
CAS
Google Scholar
Epstein R. Assessment in medical education. N Engl J Med 2007; 356: 387.
PubMed
Article
CAS
Google Scholar
Savoldelli GL, Naik VN, Joo HS, et al. Evaluation of patient simulator performance as an adjunct to the oral examination for senior anesthesia residents. Anesthesiology 2006; 104: 475-81.
PubMed
Article
Google Scholar
Dougherty D, Conway PH. The “3T’s” road map to transform US health care. JAMA 2008; 299: 2319-21.
PubMed
Article
CAS
Google Scholar
McGaghie WC, Draycott TJ, Dunn WF, Lopez CM, Stefanidis D. Evaluating the impact of simulation on translational patient outcomes. Simulation in Healthcare 2011; 6: s42-7.
PubMed
Article
Google Scholar
Grantcharov TP, Kristiansen VB, Bendix J, Bardram L, Rosenberg J, Funch-Jensen P. Randomized clinical trial of virtual reality simulation for laparoscopic skills training. Br J Surg 2004; 91: 146-50.
PubMed
Article
CAS
Google Scholar
Ahlberg G, Enochsson L, Gallagher AG, et al. Proficiency-based virtual reality training significantly reduces the error rate for residents during their first 10 laparoscopic cholecystectomies. Am J Surg 2007; 193: 797-804.
PubMed
Article
Google Scholar
Barsuk JH, McGaghie WC, Cohen ER, O’Leary KJ, Wayne DB. Simulation-based mastery learning reduces complications during central venous catheter insertion in a medical intensive care unit. Crit Care Med 2009; 37: 2697-701.
PubMed
Article
Google Scholar
Barsuk JH, McGaghie WC, Cohen ER, Balachandran JS, Wayne DB. Use of simulation based mastery learning to improve the quality of central venous catheter placement in a medical intensive care unit. J Hosp Med 2009; 4: 397-403.
PubMed
Article
Google Scholar
Draycott TJ, Crofts JF, Ash JP, et al. Improving neonatal outcome through practical shoulder dystocia training. Obstet Gynecol 2008; 112: 14-20.
PubMed
Article
Google Scholar
Ma IW, Brindle ME, Ronksley PE, Lorenzetti DL, Sauve RS, Ghali WA. Use of simulation-based education to improve outcomes of central venous catheterization: a systematic review and meta-analysis. Acad Med 2011; 86: 1137-47.
PubMed
Article
Google Scholar
Dieckmann P, Gaba D, Rall M. Deepening the theoretical foundations of patient simulation as social practice. Simulation in Healthcare 2007; 2: 183-93.
PubMed
Article
Google Scholar
Dieckmann P, Manser T, Wehner T, Rall M. Reality and fiction cues in medical patient simulation: An interview study with anesthesiologists. Journal of Cognitive Engineering and Decision Making 2007; 1: 148-68.
Article
Google Scholar
Wayne DB, Didwania A, Feinglass J, Fudala MJ, Barsuk JH, McGaghie WC. Simulation-based education improves quality of care during cardiac arrest team responses at an academic teaching hospital: a case-control study. Chest 2008; 133: 56-61.
PubMed
Article
Google Scholar
Bruppacher HR, Alam SK, LeBlanc VR, et al. Simulation-based training improves physicians’ performance in patient care in high-stakes clinical setting of cardiac surgery. Anesthesiology 2010; 112: 985-92.
PubMed
Article
Google Scholar
Gaba DM. Improving anesthesiologists’ performance by simulating reality. Anesthesiology 1992; 76: 491-4.
PubMed
Article
CAS
Google Scholar