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探索模拟训练在提高住院医师外科技能中的作用:一项叙述性综述。

Exploring the Role of Simulation Training in Improving Surgical Skills Among Residents: A Narrative Review.

作者信息

Cardoso Swizel Ann, Suyambu Jenisha, Iqbal Javed, Cortes Jaimes Diana Carolina, Amin Aamir, Sikto Jarin Tasnim, Valderrama Melissa, Aulakh Simranjit Singh, Ramana Venkata, Shaukat Behram, Patel Tirath

机构信息

Major Trauma Services, University Hospital Birmingham National Health Service (NHS) Foundation Trust, Birmingham, GBR.

Medical Education, Jonalta School of Medicine, University of Perpetual Help System Dalta, Laspinas City, PHL.

出版信息

Cureus. 2023 Sep 4;15(9):e44654. doi: 10.7759/cureus.44654. eCollection 2023 Sep.

DOI:10.7759/cureus.44654
PMID:37799263
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10549779/
Abstract

The role of simulation in medical education is crucial to the development of surgeons' skills. Surgical simulation can be used to improve surgical skills in a secure and risk-free environment. Animal models, simulated patients, virtual reality, and mannequins are some types of surgical simulation. As a result, feedback encourages students to reflect on their strengths and weaknesses, enabling them to focus on improvement. Healthcare simulation is a strong educational instrument, and the main goal of this is to give the students an opportunity to do a practical application of what they have learned through theory. Before taking it to the patients, they will already have certain tools they have previously acquired during the practice. This makes it easier for students to identify the knowledge gaps that they must fill to improve patient outcomes. Moreover, simulation brings a wonderful opportunity for students to acquire skills, gain confidence, and experience success before working with real patients, especially when their clinical exposure is limited. The use of simulation to teach technical skills to surgical trainees has become more prevalent. The cost of setting up a simulation lab ranges from $100,000 to $300,000. There are several ways to evaluate the effectiveness of simulation-based surgical training. Repetitive surgical simulation training can improve speed and fluidity in general surgical skills in comparison to conventional training. Few previous studies compared learners who received structured simulation training to a group of trainees who did not receive any simulation training in single-center randomized control research. Significantly faster and less time-consuming skill proficiency was noticeable in simulated trainees. Despite being anxious in the operating room for the first time, simulated trainees completed the surgery on time, demonstrating the effectiveness of surgical simulation training. Traditional surgical training involves senior-surgeon supervision in the operating room. In simulation-based training, the trainees have full control over clinical scenarios and settings; however, guidance and assessment are also crucial. Simulators allow users to practice tasks under conditions resembling real-life scenarios. Simulators can be compared with traditional surgical training methods for different reasons. For example, intraoperative bleeding may occasionally show up not only visibly on the screen but also by shaking the trocars erratically. Without haptics, training on virtual simulators can cause one's pulling and pushing forces, which are frequently greater than what the tissue needs, to be distorted. A good method of simulation training is using virtual reality simulators with haptics and simulated patients. The availability of these facilities is limited, though, and a typical session might include an exercise involving stacking sugar cubes and box trainers. The degree of expertise or competency is one area that needs clarification as medical education transitions to a competency-based paradigm. The article aims to provide an overview of simulation, methods of simulation training, and the key role and importance of surgical simulation in improving skills in surgical residents.

摘要

模拟在医学教育中的作用对于外科医生技能的培养至关重要。手术模拟可用于在安全无风险的环境中提高手术技能。动物模型、模拟患者、虚拟现实和人体模型是手术模拟的一些类型。因此,反馈促使学生反思自己的优点和不足,使他们能够专注于改进。医疗模拟是一种强大的教育工具,其主要目标是让学生有机会将所学理论实际应用。在接触患者之前,他们将已经具备在实践中先前获得的某些工具。这使学生更容易识别为改善患者治疗效果而必须填补的知识空白。此外,模拟为学生在与真实患者合作之前提供了一个绝佳的机会来获取技能、增强信心并体验成功,尤其是当他们的临床接触有限时。使用模拟向外科实习生教授技术技能已变得更为普遍。建立一个模拟实验室的成本在10万美元到30万美元之间。有几种方法可以评估基于模拟的外科培训的有效性。与传统培训相比,重复性手术模拟训练可以提高普通外科手术技能的速度和流畅性。在单中心随机对照研究中,以前很少有研究将接受结构化模拟培训的学习者与未接受任何模拟培训的一组受训者进行比较。在模拟受训者中,技能熟练程度明显更快且耗时更少。尽管首次在手术室时会感到焦虑,但模拟受训者仍按时完成了手术,证明了手术模拟训练的有效性。传统的外科培训包括在手术室中由资深外科医生进行监督。在基于模拟的培训中,受训者可以完全控制临床场景和设置;然而,指导和评估也至关重要。模拟器允许用户在类似于现实生活场景的条件下练习任务。由于不同原因,模拟器可与传统外科培训方法进行比较。例如,术中出血偶尔不仅会在屏幕上明显显示,还会通过不稳定地摇动套管针表现出来。如果没有触觉反馈,在虚拟模拟器上进行训练可能会导致人的推拉力量(通常大于组织所需的力量)出现偏差。一种好的模拟训练方法是使用带有触觉反馈的虚拟现实模拟器和模拟患者。然而,这些设施的可用性有限,并且一次典型的课程可能包括涉及堆叠糖块和箱式训练器的练习。随着医学教育向基于能力的模式转变,专业知识或能力的程度是一个需要明确的领域。本文旨在概述模拟、模拟训练方法以及手术模拟在提高外科住院医师技能方面的关键作用和重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/39489cc84fe2/cureus-0015-00000044654-i03.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/0fb00e9d2f56/cureus-0015-00000044654-i01.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/d774aa617587/cureus-0015-00000044654-i02.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/39489cc84fe2/cureus-0015-00000044654-i03.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/0fb00e9d2f56/cureus-0015-00000044654-i01.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/d774aa617587/cureus-0015-00000044654-i02.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f253/10549779/39489cc84fe2/cureus-0015-00000044654-i03.jpg

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2
The Impact of Simulation-Based Trabeculectomy Training on Resident Core Surgical Skill Competency.基于模拟的小梁切除术培训对住院医师核心外科技能能力的影响。
J Glaucoma. 2023 Jan 1;32(1):57-64. doi: 10.1097/IJG.0000000000002114. Epub 2022 Aug 22.
3
The Importance of Mental Models in Implementation Science.心理模式在实施科学中的重要性。
早产儿视网膜病变的刻意练习:眼科教育中使用模拟眼进行视网膜激光训练。
PLoS One. 2025 May 29;20(5):e0323365. doi: 10.1371/journal.pone.0323365. eCollection 2025.
4
Effect of educational strategies to develop nursing students' skills in pediatric procedures.培养护生儿科操作技能的教育策略效果
J Educ Health Promot. 2025 Apr 30;14:143. doi: 10.4103/jehp.jehp_884_24. eCollection 2025.
5
Exploring the Current Applications of Artificial Intelligence in Orthopaedic Surgical Training: A Systematic Scoping Review.探索人工智能在骨科手术培训中的当前应用:一项系统的范围综述。
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6
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Facts Views Vis Obgyn. 2025 Mar 28;17(1):50-60. doi: 10.52054/FVVO.2024.13522.
7
Simulation-based learning in orthopaedics: q s r.骨科基于模拟的学习:QS R
J Clin Orthop Trauma. 2025 Mar 23;65:102986. doi: 10.1016/j.jcot.2025.102986. eCollection 2025 Jun.
8
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4
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8
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9
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10
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