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DOI: 10.1055/a-2379-8729
How to Play a Game Properly – Enhancing Obstetrics and Gynecology Education through Gamification: A Scoping Review
Wie spielt man das Spiel richtig – der Einsatz von Gamification zur Verbesserung der geburtshilflichen und gynäkologischen Ausbildung: eine Scoping-ÜbersichtAbstract
Background
Effective healthcare relies on well-trained professionals, and the quality of their training is dependent on appropriate learning methods and assessment techniques. Gamification, the use of game mechanics in non-game environments, has emerged as a promising strategy in medical education. This review explores the applicability and effectiveness of gamification in obstetrics and gynecology education.
Methods
Adhering to PRISMA guidelines, a comprehensive search was conducted on PubMed, Google Scholar, Embase, and Medline databases from January to March 2023. The search terms included “medical students OR residents OR physicians OR midwives AND games OR educational games OR serious games AND gynecology OR obstetrics”. The inclusion criteria encompassed studies published in English or German from 1990 to March 2023, focusing on gamification in gynecology and obstetrics education. Data extraction and analysis were structured using the PICOS framework.
Results
The review identified various studies demonstrating the effectiveness of gamification in obstetrics and gynecology education. Gaming shows like Jeopardy significantly boosted knowledge retention and engagement. VR technologies, such as Second Life, enhanced emergency and surgical training. Improvisational games improved empathy skills, though requiring reinforcement. Video games and laparoscopy trainers showed promise in enhancing surgical skills, with gamers performing better in initial tasks. Custom-developed games like Play and Learn for Surgeons significantly improved procedural skills.
Discussion
Gamification in obstetrics and gynecology education boosts learner engagement, knowledge retention, and practical skills. VR technologies and video games are effective for surgical training, while custom games can enhance specific procedural skills. Further research is needed to optimize and integrate gamification strategies into standard curricula, offering a modern approach to equip healthcare professionals with essential skills and knowledge.
Zusammenfassung
Hintergrund
Eine gute Gesundheitsversorgung beruht auf gut ausgebildeten Fachkräften. Die Qualität ihrer Ausbildung hängt aber auch von den richtigen Lernmethoden und Beurteilungstechniken ab. Gamification, d. h. der Einsatz von Spielmechanismen in spielfremden Umgebungen, hat sich in der medizinischen Ausbildung als vielversprechender Ansatz entpuppt. Dieser Übersichtsartikel untersucht die Anwendbarkeit und Leistungsfähigkeit von Gamification in der geburtshilflichen und gynäkologischen Fachausbildung.
Methoden
Unter Einhaltung der PRISMA-Richtlinien wurde von Januar bis März 2023 eine umfassende Suche in den Datenbanken PubMed, Google Scholar, Embase und Medline durchgeführt. Zu den Suchbegriffen gehörten „medical students OR residents OR physicians OR midwives AND games OR educational games OR serious games AND gynecology OR obstetrics“. Einschlusskriterien waren Studien, die zwischen 1990 und März 2023 auf Englisch oder Deutsch veröffentlicht wurden und den Einsatz von Gamification in der gynäkologischen und geburtshilflichen Ausbildung untersuchten. Datenextraktion und -analyse wurden mithilfe des PICOS-Modells strukturiert.
Ergebnisse
Diese Übersicht identifizierte verschiedene Studien, welche die Effektivität von Gamification in der geburtshilflichen und gynäkologischen Fachausbildung beschrieben. Spielshows wie Jeopardy haben die Erinnerung an das vermittelte Fachwissen und das Engagement der Lernenden signifikant verstärkt. VR-Technologien wie Second Life trugen zu einer Verbesserung des Notfalltrainings und der chirurgischen Ausbildung bei. Improvisationsspiele vertieften die Empathiefähigkeit, obwohl eine Verstärkung nötig war. Videospiele und Laparoskopietraining stellten einen vielversprechenden Ansatz bei der Verbesserung der chirurgischen Kompetenz dar, wobei Gamer bei der Erledigung von Aufgaben zunächst besser abschnitten. Eigens entwickelte Spiele wie Play and Learn for Surgeons führten zu einer signifikanten Verbesserung der Fachkompetenz.
Diskussion
In der gynäkologischen und geburtshilflichen Fachausbildung förderte Gamification das Engagement bei den Lernenden, verbesserte die Erinnerung an das vermittelte Fachwissen und steigerte die praktischen Fähigkeiten. In der chirurgischen Ausbildung stellen VR-Technologien und Videospiele effektive Methoden zur Wissensvermittlung dar, und speziell angefertigte Spiele können bei der Aneignung spezifischer Fachkompetenzen behilflich sein. Weitere Forschungen werden benötigt, um Gamification-Strategien zu optimieren und sie in den Standardlehrplan zu integrieren. Während der Fachausbildung medizinischer Fachkräfte stellt Gamification einen modernen Ansatz für die Vermittlung von Fachwissen und wichtigen Fachkompetenzen dar.
Publication History
Received: 19 June 2024
Accepted after revision: 03 August 2024
Article published online:
27 August 2024
© 2024. The Author(s). This is an open access article published by Thieme under the terms of the Creative Commons Attribution-NonDerivative-NonCommercial-License, permitting copying and reproduction so long as the original work is given appropriate credit. Contents may not be used for commercial purposes, or adapted, remixed, transformed or built upon. (https://creativecommons.org/licenses/by-nc-nd/4.0/).
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References
- 1 Ahmed M, Sherwani Y, Al-Jibury O. et al. Gamification in medical education. Med Educ Online 2015; 20: 29536 DOI: 10.3402/meo.v20.29536. (PMID: 26426401)
- 2 McCoy L, Lewis JH, Dalton D. Gamification and multimedia for medical education: a landscape review. J Am Osteopath Assoc 2016; 116: 22-34 DOI: 10.7556/jaoa.2016.003. (PMID: 26745561)
- 3 Gorbanev I, Agudelo-Londoño S. et al. A systematic review of serious games in medical education: quality of evidence and pedagogical strategy. Med Educ Online 2018; 23: 1438718 DOI: 10.1080/10872981.2018.1438718. (PMID: 29457760)
- 4 Wynter L, Burgess A, Kalman E. et al. Medical students: what educational resources are they using?. BMC Med Educ 2019; 19: 36 DOI: 10.1186/s12909-019-1462-9.
- 5 Bai S, Hew KF, Huang B. Does gamification improve student learning outcome? Evidence from a meta-analysis and synthesis of qualitative data in educational contexts. Educ Res Rev 2020; 30: 100322 DOI: 10.1016/j.edurev.2020.100322.
- 6 O’Leary S, Diepenhorst L, Churley-Strom R. et al. Educational games in an obstetrics and gynecology core curriculum. Am J Obstet Gynecol 2005; 193: 1848-1851 DOI: 10.1016/j.ajog.2005.07.059. (PMID: 16260247)
- 7 Butler SK, Runge MA, Milad MP. A Game Show-Based Curriculum for Teaching Principles of Reproductive Infectious Disease (GBS PRIDE Trial). South Med J 2020; 113: 531-537 DOI: 10.14423/SMJ.0000000000001165. (PMID: 33140104)
- 8 Bou Nemer L, Kalin D, Fiorentino D. et al. The Labor Games. Obstet Gynecol 2016; 128 (Suppl. 1) 1s-5s DOI: 10.1097/AOG.0000000000001572.
- 9 Cai F, Ruhotina M, Bowler M. et al. Can I Get a Suggestion? Medical Improv as a Tool for Empathy Training in Obstetrics and Gynecology Residents. J Grad Med Educ 2019; 11: 597-600 DOI: 10.4300/JGME-D-19-00185.1. (PMID: 31636832)
- 10 McGrath J, Kman N, Danforth D. et al. Virtual alternative to the oral examination for emergency medicine residents. West J Emerg Med 2015; 16: 336-343 DOI: 10.5811/westjem.2015.1.24344. (PMID: 25834684)
- 11 Uribe-Ocampo S, Torres EA, Luna IF. et al. SIM-CIG: A Serious Game to Practice and Improve Clinical Guidelines Adoption Based on Computer-Interpretable Guidelines. Stud Health Technol Inform 2019; 264: 1997-1998 DOI: 10.3233/SHTI190753. (PMID: 31438447)
- 12 Ebner F, De Gregorio A, Schochter F. et al. Effect of an Augmented Reality Ultrasound Trainer App on the Motor Skills Needed for a Kidney Ultrasound: Prospective Trial. JMIR Serious Games 2019; 7: e12713 DOI: 10.2196/12713. (PMID: 31042155)
- 13 Jean Dit Gautier E, Bot-Robin V, Libessart A. et al. Design of a Serious Game for Handling Obstetrical Emergencies. JMIR Serious Games 2016; 4: e21 DOI: 10.2196/games.5526.
- 14 Parham G, Bing EG, Cuevas A. et al. Creating a low-cost virtual reality surgical simulation to increase surgical oncology capacity and capability. Ecancermedicalscience 2019; 13: 910 DOI: 10.3332/ecancer.2019.910. (PMID: 31123493)
- 15 Benda NC, Kellogg KM, Hoffman DJ. et al. Lessons Learned From an Evaluation of Serious Gaming as an Alternative to Mannequin-Based Simulation Technology: Randomized Controlled Trial. JMIR Serious Games 2020; 8: e21123 DOI: 10.2196/21123.
- 16 Sharifzadeh N, Tabesh H, Kharrazi H. et al. Play and Learn for Surgeons: A Serious Game to Educate Medical Residents in Uterine Artery Ligation Surgery. Games Health J 2021; 10: 220-227 DOI: 10.1089/g4h.2020.0220. (PMID: 34264757)
- 17 Alvare G, Gordon R. CT brush and CancerZap!: two video games for computed tomography dose minimization. Theor Biol Med Model 2015; 12: 7 DOI: 10.1186/s12976-015-0003-4. (PMID: 25962597)
- 18 Ashley CW, Donaldson K, Evans KM. et al. Surgical Cross-Training With Surgery Naive Learners: Implications for Resident Training. J Surg Educ 2019; 76: 1469-1475 DOI: 10.1016/j.jsurg.2019.06.015.
- 19 Ju R, Chang PL, Buckley AP. et al. Comparison of Nintendo Wii and PlayStation2 for enhancing laparoscopic skills. JSLS 2012; 16: 612-618 DOI: 10.4293/108680812X13462882737294. (PMID: 23484573)
- 20 Borahay MA, Jackson M, Tapısız OL. et al. Assessment of minimally invasive surgical skills of pre-medical students: What can we learn from future learners?. J Turk Ger Gynecol Assoc 2014; 15: 69-73 DOI: 10.5152/jtgga.2014.0044.
- 21 Chalhoub M, Khazzaka A, Sarkis R. et al. The role of smartphone game applications in improving laparoscopic skills. Adv Med Educ Pract 2018; 9: 541-547 DOI: 10.2147/AMEP.S162619. (PMID: 30123018)
- 22 Öge T, Borahay MA, Achjian T. et al. Impact of current video game playing on robotic simulation skills among medical students. J Turk Ger Gynecol Assoc 2015; 16: 1-4 DOI: 10.5152/jtgga.2015.15188.
- 23 Fanning J, Fenton B, Johnson C. et al. Comparison of teenaged video gamers vs PGY-I residents in obstetrics and gynecology on a laparoscopic simulator. J Minim Invasive Gynecol 2011; 18: 169-172 DOI: 10.1016/j.jmig.2010.11.002. (PMID: 21215709)
- 24 Elder SB, Gregory C. The “Lactation Game”: an innovative teaching method for health care professionals. J Hum Lact 1996; 12: 137-138 DOI: 10.1177/089033449601200218. (PMID: 8932045)
- 25 Drummond D, Delval P, Abdenouri S. et al. Serious game versus online course for pretraining medical students before a simulation-based mastery learning course on cardiopulmonary resuscitation: A randomised controlled study. Eur J Anaesthesiol 2017; 34: 836-844 DOI: 10.1097/EJA.0000000000000675.
- 26 Lang F, Willuth E, Haney CM. et al. Serious gaming and virtual reality in the multimodal training of laparoscopic inguinal hernia repair: a randomized crossover study. Surg Endosc 2023; 37: 2050-2061 DOI: 10.1007/s00464-022-09733-6. (PMID: 36289083)
- 27 Tsai CL, Heinrichs WL. Acquisition of Eye-hand Coordination Skills for Videoendoscopic Surgery. J Am Assoc Gynecol Laparosc 1994; 1: S37 DOI: 10.1016/s1074-3804(05)80989-2. (PMID: 9073766)