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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 2/2017

01-02-2017 | Sports Traumatology

Newly acquired arthroscopic skills: Are they transferable during simulator training of other joints?

Authors: Jamie Ferguson, Robert Middleton, Abtin Alvand, Jonathan Rees

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 2/2017

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Abstract

Purpose

This randomized study investigates whether novices learning simulation-based arthroscopic skills in one anatomical joint environment can immediately transfer their learnt skills to another joint.

Methods

Medical students were randomized to a simulated diagnostic knee or shoulder arthroscopic task on benchtop training models. After nine task repetitions over 3 weeks on one model, each participant undertook the simulation task of the other anatomical joint. Performance was objectively measured using a validated electromagnetic motion analysis system and a validated global rating scale (GRS).

Results

Eighteen students participated; eight started the knee task and ten the shoulder task. All participants demonstrated a learning curve in all parameters during task repetition (time taken, hand path length, number of hand movements and GRS scores; p < 0.001) with learning effects >1 SD from initial performance (range 1.1–2.2 SD). When the groups swapped models, there was no immediate evidence of skill transfer, with a significant drop in performance between the final training episode and the transfer task (all parameters p < 0.003). In particular, the transfer task performance was no better than the first episode performance on that model by these novices.

Conclusion

This study showed basic arthroscopic skills did not immediately transfer to an unfamiliar anatomical environment within a simulated setting. These findings have important clinical implications with regard to surgical training as they potentially challenge the assumption that arthroscopic skills acquired in one joint are universally transferrable to other joints. Future orthopaedic simulation training should aim to deliver exposure to a greater variety of arthroscopic procedures and joint environments. This would allow trainees to become familiar with the different arthroscopic setting before undertaking real surgery and consequently improve patient safety.

Level of evidence

Therapeutic, Level II.
Literature
1.
go back to reference Alvand A, Auplish S, Gill H, Rees J (2011) Innate arthroscopic skills in medical students and variation in learning curves. J Bone Joint Surg Am 93(1–9):e115PubMed Alvand A, Auplish S, Gill H, Rees J (2011) Innate arthroscopic skills in medical students and variation in learning curves. J Bone Joint Surg Am 93(1–9):e115PubMed
2.
go back to reference Tuijthof GJ, van Sterkenburg MN, Sierevelt IN, van Oldenrijk J, Van Dijk CN, Kerkhoffs GM (2010) First validation of the passport training environment for arthroscopic skills. Knee Surg Sports Traumatol Arthrosc 18:218–224CrossRefPubMed Tuijthof GJ, van Sterkenburg MN, Sierevelt IN, van Oldenrijk J, Van Dijk CN, Kerkhoffs GM (2010) First validation of the passport training environment for arthroscopic skills. Knee Surg Sports Traumatol Arthrosc 18:218–224CrossRefPubMed
4.
go back to reference Damadi A, Davis AT, Saxe A, Apelgren K (2007) ACGME duty-hour restrictions decrease resident operative volume: a 5-year comparison at an ACGME-accredited university general surgery residency. J Surg Educ 64:256–259CrossRefPubMed Damadi A, Davis AT, Saxe A, Apelgren K (2007) ACGME duty-hour restrictions decrease resident operative volume: a 5-year comparison at an ACGME-accredited university general surgery residency. J Surg Educ 64:256–259CrossRefPubMed
5.
go back to reference Chikwe J, De Souza AC, Pepper JR (2004) No time to train the surgeons. Br Med J 328:418–419CrossRef Chikwe J, De Souza AC, Pepper JR (2004) No time to train the surgeons. Br Med J 328:418–419CrossRef
6.
go back to reference Slade Shantz JAS, Leiter JR, Gottschalk T, MacDonald PB (2014) The internal validity of arthroscopic simulators and their effectiveness in arthroscopic education. Knee Surg Sports Traumatol Arthrosc 22:33–40CrossRefPubMed Slade Shantz JAS, Leiter JR, Gottschalk T, MacDonald PB (2014) The internal validity of arthroscopic simulators and their effectiveness in arthroscopic education. Knee Surg Sports Traumatol Arthrosc 22:33–40CrossRefPubMed
7.
go back to reference Pedowitz RA, Marsh JL (2012) Motor skills training in orthopaedic surgery: a paradigm shift toward a simulation-based educational curriculum. J Am Acad Orthop Surg 20:407–409CrossRefPubMed Pedowitz RA, Marsh JL (2012) Motor skills training in orthopaedic surgery: a paradigm shift toward a simulation-based educational curriculum. J Am Acad Orthop Surg 20:407–409CrossRefPubMed
8.
go back to reference Al-Ali S, Alvand A, Gill HS, Beard DJ, Jackson W, Price AJ, Rees JL (2012) Objective assessment of the learning curve for arthroscopic meniscal repair. J Bone Joint Surg Br 94:74CrossRef Al-Ali S, Alvand A, Gill HS, Beard DJ, Jackson W, Price AJ, Rees JL (2012) Objective assessment of the learning curve for arthroscopic meniscal repair. J Bone Joint Surg Br 94:74CrossRef
9.
go back to reference Alvand A, Auplish S, Gill HS, Rees JL (2012) The impact of training on the arthroscopic performance of medical students: a randomised study. J Bone Joint Surg Br 94:39CrossRef Alvand A, Auplish S, Gill HS, Rees JL (2012) The impact of training on the arthroscopic performance of medical students: a randomised study. J Bone Joint Surg Br 94:39CrossRef
10.
go back to reference Alvand A, Logishetty K, Middleton R, Khan T, Jackson WF, Price AJ, Rees JL (2013) Validating a global rating scale to monitor individual resident learning curves during arthroscopic knee meniscal repair. Arthroscopy 29:906–912CrossRefPubMed Alvand A, Logishetty K, Middleton R, Khan T, Jackson WF, Price AJ, Rees JL (2013) Validating a global rating scale to monitor individual resident learning curves during arthroscopic knee meniscal repair. Arthroscopy 29:906–912CrossRefPubMed
11.
go back to reference Howells NR, Auplish S, Hand GC, Gill HS, Carr AJ, Rees JL (2009) Retention of arthroscopic shoulder skills learned with use of a simulator. Demonstration of a learning curve and loss of performance level after a time delay. J Bone Joint Surg Am 91:1207–1213CrossRefPubMed Howells NR, Auplish S, Hand GC, Gill HS, Carr AJ, Rees JL (2009) Retention of arthroscopic shoulder skills learned with use of a simulator. Demonstration of a learning curve and loss of performance level after a time delay. J Bone Joint Surg Am 91:1207–1213CrossRefPubMed
12.
go back to reference Howells NR, Gill HS, Carr AJ, Price AJ, Rees JL (2008) Transferring simulated arthroscopic skills to the operating theatre. J Bone Joint Surg Br 90:494–499CrossRefPubMed Howells NR, Gill HS, Carr AJ, Price AJ, Rees JL (2008) Transferring simulated arthroscopic skills to the operating theatre. J Bone Joint Surg Br 90:494–499CrossRefPubMed
13.
go back to reference Jackson WFM, Khan T, Alvand A, Al-Ali S, Gill HS, Price AJ, Rees JL (2012) Learning and retaining simulated arthroscopic meniscal repair skills. J Bone Joint Surg Am 94(e132):1–8 Jackson WFM, Khan T, Alvand A, Al-Ali S, Gill HS, Price AJ, Rees JL (2012) Learning and retaining simulated arthroscopic meniscal repair skills. J Bone Joint Surg Am 94(e132):1–8
14.
go back to reference Pollard TC, Khan T, Price AJ, Gill HS, Glyn-Jones S, Rees JL (2012) Simulated hip arthroscopy skills: learning curves with the lateral and supine patient positions. a randomized trial. J Bone Joint Surg Am 94(1–10):e68CrossRefPubMed Pollard TC, Khan T, Price AJ, Gill HS, Glyn-Jones S, Rees JL (2012) Simulated hip arthroscopy skills: learning curves with the lateral and supine patient positions. a randomized trial. J Bone Joint Surg Am 94(1–10):e68CrossRefPubMed
15.
go back to reference Alvand A, Auplish S, Khan T, Gill HS, Rees JL (2011) Identifying orthopaedic surgeons of the future the inability of some medical students to achieve competence in basic arthroscopic tasks despite training: a randomised study. J Bone Joint Surg Br 93:1586–1591CrossRefPubMed Alvand A, Auplish S, Khan T, Gill HS, Rees JL (2011) Identifying orthopaedic surgeons of the future the inability of some medical students to achieve competence in basic arthroscopic tasks despite training: a randomised study. J Bone Joint Surg Br 93:1586–1591CrossRefPubMed
16.
go back to reference Howells NR, Brinsden MD, Gill RS, Carr AJ, Rees JL (2008) Motion analysis: a validated method for showing skill levels in arthroscopy. Arthroscopy 24:335–342CrossRefPubMed Howells NR, Brinsden MD, Gill RS, Carr AJ, Rees JL (2008) Motion analysis: a validated method for showing skill levels in arthroscopy. Arthroscopy 24:335–342CrossRefPubMed
17.
go back to reference Insel A, Carofino B, Leger R, Arciero R, Mazzocca AD (2009) The development of an objective model to assess arthroscopic performance. J Bone Joint Surg Am 91:2287–2295CrossRefPubMed Insel A, Carofino B, Leger R, Arciero R, Mazzocca AD (2009) The development of an objective model to assess arthroscopic performance. J Bone Joint Surg Am 91:2287–2295CrossRefPubMed
18.
go back to reference Cook DA, Hatala R, Brydges R, Zendejas B, Szostek JH, Wang AT, Erwin PJ, Hamstra SJ (2011) Technology-enhanced simulation for health professions education: a systematic review and meta-analysis. J Am Med Assoc 306:978–988 Cook DA, Hatala R, Brydges R, Zendejas B, Szostek JH, Wang AT, Erwin PJ, Hamstra SJ (2011) Technology-enhanced simulation for health professions education: a systematic review and meta-analysis. J Am Med Assoc 306:978–988
19.
go back to reference Henn RF, Shah N, Warner JJ, Gomoll AH (2013) Shoulder arthroscopy simulator training improves shoulder arthroscopy performance in a cadaveric model. Arthroscopy 29:982–985CrossRefPubMedPubMedCentral Henn RF, Shah N, Warner JJ, Gomoll AH (2013) Shoulder arthroscopy simulator training improves shoulder arthroscopy performance in a cadaveric model. Arthroscopy 29:982–985CrossRefPubMedPubMedCentral
20.
go back to reference Naik VN, Matsumoto ED, Houston PL, Hamstra SJ, Yeung RY-M, Mallon JS, Martire TM (2001) Fiberoptic orotracheal intubation on anesthetized patients: do manipulation skills learned on a simple model transfer into the operating room? Anesthesiology 95:343–348CrossRefPubMed Naik VN, Matsumoto ED, Houston PL, Hamstra SJ, Yeung RY-M, Mallon JS, Martire TM (2001) Fiberoptic orotracheal intubation on anesthetized patients: do manipulation skills learned on a simple model transfer into the operating room? Anesthesiology 95:343–348CrossRefPubMed
21.
go back to reference Park J, MacRae H, Musselman LJ, Rossos P, Hamstra SJ, Wolman S, Reznick RK (2007) Randomized controlled trial of virtual reality simulator training: transfer to live patients. Am J Surg 194:205–211CrossRefPubMed Park J, MacRae H, Musselman LJ, Rossos P, Hamstra SJ, Wolman S, Reznick RK (2007) Randomized controlled trial of virtual reality simulator training: transfer to live patients. Am J Surg 194:205–211CrossRefPubMed
22.
go back to reference Stefanidis D, Hope WW, Korndorffer JR, Markley S, Scott DJ (2010) Initial laparoscopic basic skills training shortens the learning curve of laparoscopic suturing and is cost-effective. J Am Coll Surg 210:436–440CrossRefPubMed Stefanidis D, Hope WW, Korndorffer JR, Markley S, Scott DJ (2010) Initial laparoscopic basic skills training shortens the learning curve of laparoscopic suturing and is cost-effective. J Am Coll Surg 210:436–440CrossRefPubMed
23.
go back to reference Zendejas B, Cook DA, Bingener J, Huebner M, Dunn WF, Sarr MG, Farley DR (2011) Simulation-based mastery learning improves patient outcomes in laparoscopic inguinal hernia repair: a randomized controlled trial. Ann Surg 254:502–511CrossRefPubMed Zendejas B, Cook DA, Bingener J, Huebner M, Dunn WF, Sarr MG, Farley DR (2011) Simulation-based mastery learning improves patient outcomes in laparoscopic inguinal hernia repair: a randomized controlled trial. Ann Surg 254:502–511CrossRefPubMed
24.
go back to reference Ström P, Kjellin A, Hedman L, Wredmark T, Felländer-Tsai L (2004) Training in tasks with different visual-spatial components does not improve virtual arthroscopy performance. Surg Endosc 18:115–120CrossRefPubMed Ström P, Kjellin A, Hedman L, Wredmark T, Felländer-Tsai L (2004) Training in tasks with different visual-spatial components does not improve virtual arthroscopy performance. Surg Endosc 18:115–120CrossRefPubMed
25.
go back to reference Kassab E, Tun JK, Kneebone RL (2012) A novel approach to contextualized surgical simulation training. Simul Healthc 7:155–161CrossRefPubMed Kassab E, Tun JK, Kneebone RL (2012) A novel approach to contextualized surgical simulation training. Simul Healthc 7:155–161CrossRefPubMed
26.
go back to reference Kneebone RL, Nestel D, Vincent C, Darzi A (2007) Complexity, risk and simulation in learning procedural skills. Med Educ 41:808–814CrossRefPubMed Kneebone RL, Nestel D, Vincent C, Darzi A (2007) Complexity, risk and simulation in learning procedural skills. Med Educ 41:808–814CrossRefPubMed
27.
go back to reference Sadideen H, Hamaoui K, Saadeddin M, Kneebone R (2012) Simulators and the simulation environment: getting the balance right in simulation-based surgical education. Int J Surg 10:458–462CrossRefPubMed Sadideen H, Hamaoui K, Saadeddin M, Kneebone R (2012) Simulators and the simulation environment: getting the balance right in simulation-based surgical education. Int J Surg 10:458–462CrossRefPubMed
28.
29.
go back to reference Ericsson KA, Krampe RT, Tesch-Römer C (1993) The role of deliberate practice in the acquisition of expert performance. Psychol Rev 100:363–406CrossRef Ericsson KA, Krampe RT, Tesch-Römer C (1993) The role of deliberate practice in the acquisition of expert performance. Psychol Rev 100:363–406CrossRef
30.
go back to reference Ericsson KA (1996) The acquisition of expert performance: an introduction to some of the issues. In: Ericsson KA (ed) The road to excellence: the acquisition of expert performance in the arts and sciences, sports and games. Lawrence Erlbaum Associates, Mahwah, pp 1–50 Ericsson KA (1996) The acquisition of expert performance: an introduction to some of the issues. In: Ericsson KA (ed) The road to excellence: the acquisition of expert performance in the arts and sciences, sports and games. Lawrence Erlbaum Associates, Mahwah, pp 1–50
31.
go back to reference Ericsson KA (2004) Deliberate practice and the acquisition and maintenance of expert performance in medicine and related domains. Acad Med 79:S70–S81CrossRefPubMed Ericsson KA (2004) Deliberate practice and the acquisition and maintenance of expert performance in medicine and related domains. Acad Med 79:S70–S81CrossRefPubMed
Metadata
Title
Newly acquired arthroscopic skills: Are they transferable during simulator training of other joints?
Authors
Jamie Ferguson
Robert Middleton
Abtin Alvand
Jonathan Rees
Publication date
01-02-2017
Publisher
Springer Berlin Heidelberg
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 2/2017
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-015-3766-6

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