Investigating Hip Arthroplasty Femur Preparation Training Using a Haptic-Enabled Virtual Reality Simulation.

IF 1.6 4区 医学 Q3 SURGERY
Justin M T Duncombe, Pierre Camaly de Brosses, Al-Amin M Kassam, David J Harris, Gavin Buckingham
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引用次数: 0

Abstract

ObjectiveVirtual reality (VR) simulation training offers a promising solution to the growing challenges of acquiring operative experience in surgical skill development. As previous studies have primarily utilised VR systems without haptic feedback, there remains limited evidence on the impact of more immersive, tactilely responsive platforms. This study aimed to assess if haptic-enabled VR technology could accelerate the acquisition of hip arthroplasty skills.MethodsTwenty undergraduate medical students (12 Female, 8 Male; age = 20 ± 2 years) were randomly allocated to either a 60-minute haptic VR training session or a traditional mentor teaching session on hip arthroplasty. After training, all participants performed a SawBone simulated hemiarthroplasty procedure in a physical environment. Outcomes measured included implant depth error, which determined procedural success, operative time, and an objective evaluation of technical skills by a blinded Consultant Orthopaedic Surgeon.ResultsWe observed no difference in levels of implant depth error (P = .705), rated technical skill (P = .704), or operative time (for successful implant insertions; P = .551) between traditional and VR-trained groups.ConclusionsThese results indicate that VR may, at least, serve as a valuable adjunct to traditional early-stage training in complex open procedures like joint arthroplasty. The study also emphasized the importance of realistic VR training modules and illustrated the potential limitations of incorporating low-fidelity haptic feedback in VR training for such procedures.

利用触觉虚拟现实模拟研究髋关节置换术股骨准备训练。
目的虚拟现实(VR)模拟训练为外科技能发展中获取手术经验的日益增长的挑战提供了一个有希望的解决方案。由于之前的研究主要是使用没有触觉反馈的VR系统,因此关于更具沉浸感和触觉响应的平台的影响的证据仍然有限。本研究旨在评估触觉虚拟现实技术是否可以加速髋关节置换术技能的获得。方法将20名医科本科生(女12人,男8人,年龄20±2岁)随机分为两组,一组接受60分钟的触觉VR训练,另一组接受传统的髋关节置换术指导教学。训练后,所有参与者在物理环境中进行了SawBone模拟半关节成形术。测量的结果包括植入物深度误差,这决定了手术成功、手术时间和盲法骨科顾问医师对技术技能的客观评估。结果传统组和vr训练组在种植体深度误差(P = 0.705)、技术水平评分(P = 0.704)和手术时间(成功植入种植体;P = 0.551)方面均无差异。结论这些结果表明,VR至少可以作为传统早期训练的一种有价值的辅助手段,用于复杂的开放手术,如关节置换术。该研究还强调了逼真的VR训练模块的重要性,并说明了在此类程序的VR训练中结合低保真触觉反馈的潜在局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Surgical Innovation
Surgical Innovation 医学-外科
CiteScore
2.90
自引率
0.00%
发文量
72
审稿时长
6-12 weeks
期刊介绍: Surgical Innovation (SRI) is a peer-reviewed bi-monthly journal focusing on minimally invasive surgical techniques, new instruments such as laparoscopes and endoscopes, and new technologies. SRI prepares surgeons to think and work in "the operating room of the future" through learning new techniques, understanding and adapting to new technologies, maintaining surgical competencies, and applying surgical outcomes data to their practices. This journal is a member of the Committee on Publication Ethics (COPE).
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