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Magnetic Resonance Imaging of Postoperative Fracture Healing Process without Metal Artifact: A Preliminary Report of a Novel Animal Model

机译:术后骨折愈合过程的磁共振成像,无金属伪影:新型动物模型的初步报告

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摘要

Background. Early radiological diagnosis and continual monitoring are of ultimate importance for timely treatment of delayed union, nonunion, and infection after bone fracture surgery. Although magnetic resonance imaging (MRI) could provide superior detailed images compared with X-ray and computed tomography (CT) without ionizing radiation, metal implants used for fracture fixation lead to abundant artifacts on MRI and thus prohibit accurate interpretation. The authors develop a novel intramedullary fixation model of rat femoral fracture using polyetheretherketone (PEEK) threaded rods and investigate its feasibility for in vivo MRI monitoring of the fracture healing process without artifact. Methods. Femoral fractures of 3 adult male Sprague-Dawley rats were fixed with intramedullary PEEK threaded rods. X-ray and MRI examinations were performed at day 7 postoperatively. Radiological images were analyzed for the existence of artifact interruption and postoperative changes in bone and peripheral soft tissue. Results. Postoperative plain film revealed no loss of reduction. MRI images illustrated the whole length of femur and peripheral tissue without artifact interruption, and the cortical bone, implanted PEEK rod, and soft tissue were clearly illustrated. Conclusion. This preliminary study introduced a novel rat model for in vivo MRI monitoring of the fracture healing process without metal artifact, by using intramedullary fixation of femur with PEEK threaded rod.
机译:背景。早期放射诊断和持续监测对于骨折手术后及时治疗延迟联盟,壬核和感染的最终意义。尽管磁共振成像(MRI)可以与X射线和计算机断层扫描(CT)相比提供优异的详细图像,但是在不电离辐射的情况下,用于断裂固定的金属植入物导致MRI的丰富伪像,从而禁止准确的解释。作者使用聚醚醚酮(PEEK)螺纹杆开发了大鼠股骨骨折的新型髓内固定模型,并研究了在没有伪影的情况下对骨折愈合过程的体内MRI监测的可行性。方法。 3个成年雄性Sprague-Dawley大鼠的股骨骨折用髓内钉螺纹杆固定。 X射线和MRI检查在术后第7天进行。分析了放射学图像,用于骨骼和外周软组织中的伪影中断和术后变化的存在。结果。术后平原薄膜显示没有减少损失。 MRI图像说明了没有伪影中断的股骨和外周组织的整个长度,并且清楚地说明了皮质骨,植入垂直的垂直和软组织。结论。该初步研究通过使用PEEK螺纹杆使用股骨的髓内固定,引入了一种新的大鼠MRI监测裂缝愈合过程的骨折愈合过程。

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