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A PEDIATRIC SUPRACONDYLAR HUMERUS FRACTURE WIRE NAVIGATION SIMULATOR

机译:小儿肱骨HU上骨折线导航模拟器

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Trainees in orthopedic surgery are required to receive dedicated laboratory-based surgical skills training in their first year of residency. Simulators are often used in this training. Our group previously developed a hip fracture wire navigation simulator to train and assess skill in placing a K-wire within a femur bone surrogate using synthetic fluoroscopic images to aid in navigation. In this paper, we describe design considerations and challenges in modifying the existing simulator to enable the training of multi-wire pinning of a pediatric supracondylar humerus fracture. The design involves changing the bone of interest from the adult femur to the pediatric humerus, while using the same platform technology. Considerations include ease of use, minimizing motion of the fixed bone, and minimizing materials used. The robustness of the bone mounting was tested by running an experiment using 3D scans and surface deviation analysis to test repeatability of bone placement and its resistance to rotational motion after being placed in the fixture. After the new design was shown to hold the bone rigidly, a pilot study of the new simulator was conducted to confirm that the surgeons and residents consider the simulator experience as being a valid representation of the actual surgical skill.
机译:骨科手术实习生在住院的第一年必须接受专门的实验室手术技能培训。在此培训中经常使用模拟器。我们的小组以前开发了一种髋部骨折线导航模拟器,以训练和评估使用合成荧光透视图像辅助将K线置于股骨替代物中的技能。在本文中,我们描述了设计方面的考虑因素和在修改现有模拟器以实现对小儿con上肱骨骨折的多线钉扎训练中所面临的挑战。设计涉及使用相同的平台技术,将感兴趣的骨骼从成人股骨变为小儿肱骨。考虑因素包括易用性,最小化固定骨骼的运动以及最小化使用的材料。通过使用3D扫描和表面偏差分析进行实验来测试骨骼放置的坚固性,以测试骨骼放置的可重复性及其在放置到固定装置中后对旋转运动的抵抗力。在表明新设计牢固地固定了骨骼之后,对新模拟器进行了初步研究,以确认外科医生和住院医师认为模拟器经验是实际手术技能的有效代表。

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