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Imaging-compatible oral retractor system for use in image-guided transoral robotic surgery

机译:用于图像引导的传输机器人手术的成像兼容的口腔牵开器系统

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Currently-available metallic retractors typically used in transoral robotic surgery (TORS) cause significant artifacts in CT imaging and cannot be safely used in MRI. The lack of imaging-compatible oral retractors poses a significant challenge to enabling intraoperative imaging in TORS. This work introduces a customizable compact 3D-printed polymer retractor system that enables multiple modes of adjustability, artifact-free CT and MR images, and adequate surgical exposure. The polymer retractor design was modeled after the traditional metal FK and Crowe-Davis retractors and can be used with an acrylic suspension system that rests over the patient's chest. Finite element analysis was conducted to evaluate the mechanical performance in relevant clinical loading conditions. Cadaver experiments followed by endoscopic, CT, and MR imaging were performed to demonstrate functionality. Artifact-free CT and MR images were obtained. An inter-incisive distance of 42.50 mm and 200.09 cm~3 working volume were achieved, which allow the introduction of robotic arms and necessary instruments in TORS. This polymer retractor system makes it possible to acquire intraoperative images and establishes a critical step to make image-guided TORS both feasible and effective.
机译:目前可用的金属缩回剂通常用于传输型机器人手术(TORS),导致CT成像中的重要伪像,不能在MRI中安全使用。缺乏成像兼容的口腔牵引力造成重大挑战,以便在职权中启用术中成像。这项工作引入了可定制的紧凑型3D印刷聚合物牵开器系统,可实现多种可调性,无伪像CT和MR图像,以及充分的手术暴露。聚合物牵开器设计是在传统的金属FK和众克达维斯牵接器之后建模的,可以与丙烯酸悬架系统一起使用,依赖于患者的胸部。进行有限元分析以评估相关临床负载条件下的机械性能。尸体实验之后进行内窥镜,CT和MR成像以证明功能性。获得无伪影CT和MR图像。实现了42.50毫米和200.09cm〜3工作体积的互连距离,从而允许引入机器人武器和替代中必要的仪器。该聚合物牵开器系统使得可以获取术中图像并建立一个临界步骤,以制造可行性和有效的图像引导性的。

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