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Convergent validation and transfer of learning studies of a virtual reality-based pattern cutting simulator

机译:基于虚拟现实模式切割模拟器的收敛验证和学习研究转移

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Abstract Introduction Research has clearly shown the benefits of surgical simulators to train laparoscopic motor skills required for positive patient outcomes. We have developed the Virtual Basic Laparoscopic Skill Trainer (VBLaST) that simulates tasks from the Fundamentals of Laparoscopic Surgery (FLS) curriculum. This study aims to show convergent validity of the VBLaST pattern cutting module via the CUSUM method to quantify learning curves along with motor skill transfer from simulation environments to ex vivo tissue samples. Methods 18 medical students at the University at Buffalo, with no prior laparoscopic surgical skills, were placed into the control, FLS training, or VBLaST training groups. Each training group performed pattern cutting trials for 12 consecutive days on their respective simulation trainers. Following a 2-week break period, the trained students performed three pattern cutting trials on each simulation platform to measure skill retention. All subjects then performed one pattern cutting task on ex vivo cadaveric peritoneal tissue. FLS and VBLaST pattern cutting scores, CUSUM scores, and transfer task completion times were reported. Results Results indicate that the FLS and VBLaST trained groups have significantly higher task performance scores than the control group in both the VBLaST and FLS environments ( p ? p ? Conclusion We characterized task performance scores for trained VBLaST and FLS subjects via CUSUM analysis of the learning curves and showed evidence that both groups have significant improvements in surgical motor skill. Furthermore, we showed that learned surgical skills in the FLS and VBLaST environments transfer not only to the different simulation environments, but also to ex vivo tissue models.
机译:摘要介绍研究清楚地表明了外科模拟器培训持续患者结果所需的腹腔镜运动技能的好处。我们开发了虚拟基本的腹腔镜技能培训师(VBLAST),模拟腹腔镜手术(FLS)课程的基础上的任务。本研究旨在通过CUSUM方法显示Vblast模式切割模块的会聚有效性,以量化学习曲线以及从模拟环境转移到离体组织样本的电机技能。方法对水牛大学的18项医学生,没有先前的腹腔镜手术技能,被置于控制,刷训练或Vblast培训群体中。每个培训小组在各自的模拟培训师上连续12天进行了模式切割试验。休假期间,训练有素的学生在每个模拟平台上进行了三种模式切割试验,以测量技能保留。然后,所有受试者在离体尸体腹膜组织上进行了一个图案切割任务。报告了杂志和Vblast模式切割分数,小心数分和转移任务完成时间。结果结果表明,FLS和VBLAST培训的组在VBLAST和FLS环境中的对照组具有明显更高的任务性能分数(P?P?结论我们以培训的VBLAST和FLS受试者进行了任务性能分数,通过学习的CUSUM分析曲线并显示了两组的证据表明,两组的手术机技能都具有显着的改善。此外,我们表明,杂志和Vblast环境中的学习外科技能不仅转移到不同的仿真环境,还转移到离体组织模型。

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