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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >Fundamentals of Arthroscopic Surgery Training Program Improves Knee Arthroscopy Simulator Performance in Arthroscopic Trainees
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Fundamentals of Arthroscopic Surgery Training Program Improves Knee Arthroscopy Simulator Performance in Arthroscopic Trainees

机译:关节镜手术训练的基础项目改善膝盖关节镜模拟器在关节镜学员的表现

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Purpose: To determine the effectiveness of a nonanatomic simulator in developing basic arthroscopy motor skills transferable to an anatomic model. Methods: Forty-three arthroscopy novice individuals currently enrolled in medical school were recruited to perform a diagnostic knee arthroscopy using a high-fidelity virtual reality arthroscopic simulator providing haptic feedback after viewing a video of an expert performing an identical procedure. Students were then randomized into an experimental or control group. The experimental group then completed a series of self-guided training modules using the fundamentals of arthroscopy simulator training nonanatomic modules including camera centering, tracking, periscoping, palpation, and collecting stars in a three-dimensional space. Both groups completed another diagnostic knee arthroscopy between 1 and 2 weeks later. Camera path length, time, tibia and femur cartilage damage, as well as a composite score were recorded by the simulator on each attempt. Results: The experimental group (n = 22) showed superior performance in composite score (30.09 vs 24, P = .046) and camera path length (71.51 cm vs 109.07 cm, P = .0274) at the time of the second diagnostic knee arthroscope compared with the control group (n = 21). The experimental group also showed significantly greater improvement in composite score between the first and second arthroscopes compared with the control group (14.27 vs 4.95, P .01). Femoral and tibial cartilage damage were not significantly improved between arthroscopy attempts (-0.86% vs -1.45%, P = .40) and (-1.10 vs -1.27%, P = .83), respectively. Conclusions: The virtual reality-based fundamentals of arthroscopy simulator training nonanatomic simulator is beneficial in developing basic motor skills in arthroscopy novice individuals resulting in significantly greater composite performance in an anatomic knee model. Based on the results of this study, it appears that there may be benefit from nonanatomic simulators in general as part of an arthroscopy training program.
机译:目的:确定的有效性在发展中基本nonanatomic模拟器关节镜运动技能转移到一个解剖模型。新手个人目前参加体检学校招募进行诊断膝盖关节镜使用高保真虚拟现实关节镜模拟器提供触觉反馈后观看的视频专家执行相同的程序。然后随机分为实验或控制组。一系列自导的培训模块使用关节镜模拟器训练的基础nonanatomic模块包括相机定心,跟踪、潜望镜触诊和收集明星在一个三维空间。完成另一个膝盖关节镜诊断1 - 2周后。时间、胫骨和股骨软骨损伤作为一个复合的得分记录模拟器在每一个尝试。实验组(n = 22)显示优越表现综合评分(P = 30.09 vs 24日.046)和相机路径长度(109.07 vs 71.51厘米厘米,P = .0274)的时候诊断膝关节关节内窥镜相比对照组(n = 21)。还显示明显更大的改善第一次和第二次之间的综合得分关节内窥镜与对照组相比(14.27 vs 4.95, P & . 01)。软骨损伤没有显著改善关节镜之间尝试(-0.86%比-1.45%,P= .40)和(-1.10 vs -1.27%, P =点),分别。以现实为基础的基本原理,关节镜检查模拟器训练nonanatomic模拟器有利于发展基本运动技能关节镜新手个人导致大大增强复合材料的性能解剖膝关节模型。研究中,似乎有可能受益nonanatomic模拟器的一部分关节镜培训项目。

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