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Inroads Toward Robot-Assisted Internal Fixation of Bone Fractures Using a Bendable Medical Screw and the Curved Drilling Technique

机译:利用可弯曲的医疗螺钉和弯曲钻孔技术侵入机器人辅助的骨折内固定术

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摘要

Internal fixation is a common orthopedic procedure in which a rigid screw is used to fix fragments of a fractured bone together and expedite the healing process. However, the rigidity of the screw, geometry of the fractured anatomy (e.g. femur and pelvis), and patient’s age can cause an array of complications during screw placement, such as improper fracture healing due to misalignment of the bone fragments, lengthy procedure time and subsequently high radiation exposure. To address these issues, we propose a minimally invasive robot-assisted procedure comprising of a continuum robot, called ortho-snake, together with a novel bendable medical screw (BMS) for fixating the fractures. We describe the implementation of a curved drilling technique and focus on the design, manufacturing, and evaluation of a novel BMS, which can passively morph into the drilled curved tunnels with various curvatures. We evaluate the performance and efficacy of the proposed BMS using both finite element simulations as well as experiments conducted on synthetic bone samples.
机译:内固定是一种常见的骨科手术,其中使用刚性螺钉将骨折的骨块固定在一起,并加快愈合过程。但是,螺钉的刚度,骨折解剖结构(例如股骨和骨盆)以及患者的年龄可能会在螺钉放置期间引起一系列并发症,例如由于骨碎片未对准,漫长的手术时间和随后高辐射暴露。为了解决这些问题,我们提出了一种微创机器人辅助程序,该程序包括一个称为“正蛇”的连续机器人以及一个用于固定骨折的新型可弯曲医用螺钉(BMS)。我们描述了弯曲钻孔技术的实现方式,并着重于新型BMS的设计,制造和评估,该BMS可以被动变形为具有各种曲率的钻孔弯曲隧道。我们使用有限元模拟以及对合成骨样品进行的实验来评估所提出的BMS的性能和功效。

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