Repair of Inferior Alveolar Nerve in Orthognathic Surgery Simulator (RIANOS): A Novel, Open-Source, Combined 3D Printed, and Ex-Vivo Chicken Sciatic Nerve Training Model

Alfonso Navia, Sebastian Tapia, Maria Fernanda Rojas, Francisco Rojas, Alex Vargas, Claudio Guerra, Álvaro Cuadra, Susana Searle, Hernan Ramírez, C. Teuber
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Abstract

Face and content validation of a surgical simulation model. Accidental transection of the inferior alveolar nerve (IAN) during bilateral sagittal split osteotomies (BSSO) has a reported incidence of up to 7%, determining important sensory disturbances in patients. Proper repair demands the need of microsurgical anastomosis skills. No previous training models have been described to simulate this. Therefore, we present a validated simulation model for intraoral repair of transected IAN. A CT scan of an orthognathic surgery patient was modified and a 3D model of a mandible with BSSO was printed. Chicken thigh anatomy was reviewed, and 2.5 mm sciatic nerves were dissected and mounted in the model. In order to simulate intraoral work depth, it was put inside a dental phantom or medical glove box. The model was tested by a group of experts (n = 12), simulating a transected IAN repair inside the mouth with both loupes and a double visor surgical training microscope. A survey was conducted to assess Face and Content validity. The model was named RIANOS after Repair of Inferior Alveolar Nerve in Orthognathic Surgery Simulator. The printing cost of each model was approximately US$3 and the design file is open-source and available for download. All experts “Strongly Agreed” that the model was useful for training inferior alveolar nerve microsurgical repair and would consider implementing it with their residents. We developed a low cost, reproducible, open-source simulator for IAN injury repair training during BSSO. Face and Content validity was achieved through evaluation by a group of experts.
修复下牙槽神经正颌外科手术模拟器(RIANOS):一种新型、开源、三维打印与活体鸡坐骨神经训练相结合的模型
手术模拟模型的表面和内容验证。据报道,在双侧矢状面劈开截骨术(BSSO)中意外横断下牙槽神经(IAN)的发生率高达 7%,给患者造成了严重的感觉障碍。正确的修复需要显微外科吻合技能。以前还没有模拟这种情况的训练模型。因此,我们提出了一个经过验证的口内修复横断 IAN 的模拟模型。我们修改了一名正颌外科患者的 CT 扫描图像,并打印了带有 BSSO 的下颌骨三维模型。对鸡大腿解剖结构进行了审查,解剖出 2.5 毫米坐骨神经并将其安装在模型中。为了模拟口内工作深度,模型被放置在牙科模型或医用手套箱内。一组专家(n = 12)对该模型进行了测试,用放大镜和双面手术训练显微镜模拟了口腔内的横断 IAN 修复。为评估面效度和内容效度进行了一项调查。该模型被命名为 "RIANOS",即 "正颌外科下牙槽神经修复模拟器"。每个模型的打印成本约为 3 美元,设计文件是开源的,可供下载。所有专家都 "强烈同意 "该模型可用于下牙槽神经显微手术修复培训,并会考虑在住院医生中使用。我们开发了一种低成本、可重复、开源的下牙槽神经损伤修复模拟器,用于 BSSO 期间的下牙槽神经损伤修复培训。通过专家组的评估,实现了表面和内容效度。
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