Department of Medical Education, Taichung Veterans General Hospital, Taichung, Taiwan.
Department of Medical Education, National Cheng Kung University Hospital, Tainan, Taiwan.
J Reconstr Microsurg. 2022 May;38(4):313-320. doi: 10.1055/s-0041-1735291. Epub 2021 Aug 28.
Various studies have discussed the benefits of applying three-dimensional (3D) techniques, specifically its advantages with respect to ergonomics, feasibility, and the rate of learning achievable in microsurgery training. However, no study has been conducted that compares the operator experience of using two-dimensional (2D) and 3D systems in microsurgical training. The aim of this study is to compare 2D- and 3D-assisted microsurgical training in novices based on anastomosis of chicken femoral arteries.
The participants were grouped by previous microsurgical experience. Group A includes novice participants. Group B includes 2D-experienced participants. Group C includes both participants in groups A and B. A questionnaire composed of 10 parameters in the field of image quality, dexterity, ergonomic, and feasibility will be filled out after each participant finished their anastomoses by the 2D and 3D systems.
The results demonstrated 3D system was scored better on "field of view" ( = 0.004), "less tremor" ( = 0.005), "neck/upper back comfort" ( = 0.043), "lower back comfort" ( = 0.015), "technical feasibility" ( = 0.020), and "educational feasibility" ( = 0.004) in group A ( = 12). In group B ( = 9), 3D system was scored better on "field of view" ( = 0.041) but worse on "image resolution" ( = 0.031).
With the 3D visualization system for microsurgical anastomosis of chicken femoral model, there are significant improvements in the field of view, stability, ergonomics, and educational value compared with 2D system among all participants. Accordingly, 3D-assisted microsurgery training can be a novel and potential popular training method.
多项研究讨论了应用三维(3D)技术的好处,特别是在微创外科培训方面的优势,包括其在人体工程学、可行性和学习速度方面的优势。然而,目前还没有研究比较使用二维(2D)和 3D 系统进行微创外科训练的操作人员体验。本研究旨在比较 2D 和 3D 辅助微创训练在新手使用鸡股骨动脉吻合方面的效果。
参与者按之前的微创经验分组。A 组包括新手参与者,B 组包括 2D 经验参与者,C 组包括 A 组和 B 组的所有参与者。参与者使用 2D 和 3D 系统完成吻合后,将填写一份由 10 个参数组成的问卷,内容涉及图像质量、灵巧性、人体工程学和可行性领域。
结果显示,3D 系统在“视野”( = 0.004)、“震颤较少”( = 0.005)、“颈部/上背部舒适”( = 0.043)、“下背部舒适”( = 0.015)、“技术可行性”( = 0.020)和“教育可行性”( = 0.004)方面的得分在 A 组( = 12)中更高。在 B 组( = 9)中,3D 系统在“视野”( = 0.041)方面得分更高,但在“图像分辨率”( = 0.031)方面得分更低。
与 2D 系统相比,使用鸡股骨模型进行微创吻合的 3D 可视化系统在所有参与者中均显著改善了视野、稳定性、人体工程学和教育价值。因此,3D 辅助微创手术训练可能成为一种新颖且有潜力的培训方法。