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Evidence Based Development of a Novel Lateral Fibula Plate (VariAx Fibula) Using a Real CT Bone Data Based Optimization Process During Device Development

机译:在设备开发过程中使用基于真实CT骨数据的优化过程,基于证据的新型外侧腓骨板(VariAx腓骨)的开发

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摘要

Development of novel implants in orthopaedic trauma surgery is based on limited datasets of cadaver trials or artificial bone models. A method has been developed whereby implants can be constructed in an evidence based method founded on a large anatomic database consisting of more than 2.000 datasets of bones extracted from CT scans. The aim of this study was the development and clinical application of an anatomically pre-contoured plate for the treatment of distal fibular fractures based on the anatomical database.udud48 Caucasian and Asian bone models (left and right) from the database were used for the preliminary optimization process and validation of the fibula plate. The implant was constructed to fit bilaterally in a lateral position of the fibula. Then a biomechanical comparison of the designed implant to the current gold standard in the treatment of distal fibular fractures (locking 1/3 tubular plate) was conducted. Finally, a clinical surveillance study to evaluate the grade of implant fit achieved was performed. The results showed that with a virtual anatomic database it was possible to design a fibula plate with an optimized fit for a large proportion of the population. Biomechanical testing showed the novel fibula plate to be superior to 1/3 tubular plates in 4-point bending tests. The clinical application showed a very high degree of primary implant fit. Only in a small minority of cases further intra-operative implant bending was necessary. Therefore, the goal to develop an implant for the treatment of distal fibular fractures based on the evidence of a large anatomical database could be attained. Biomechanical testing showed good results regarding the stability and the clinical application confirmed the high grade of anatomical fit.
机译:骨外科手术中新型植入物的开发基于尸体试验或人造骨模型的有限数据集。已经开发出一种方法,通过该方法,可以基于基于证据的方法构建植入物,该方法基于大型解剖数据库,该数据库包含从CT扫描中提取的2000多个骨骼数据集。这项研究的目的是基于解剖数据库,开发一种解剖学轮廓的钢板来治疗远端腓骨骨折。 ud ud48使用了该数据库中的白种人和亚洲骨模型(左右)用于腓骨板的初步优化过程和验证。植入物构造成可双侧安装在腓骨的横向位置。然后进行了设计的植入物与目前的金标准在远端腓骨骨折(锁定的1/3管状钢板)治疗中的生物力学比较。最后,进行了一项临床监测研究,以评估所达到的植入物贴合度。结果表明,通过虚拟解剖数据库,可以设计出适合大部分人群的腓骨板。生物力学测试表明,在4点弯曲测试中,新型腓骨板要优于1/3管状板。临床应用显示出非常高的一次种植体贴合度。仅在少数情况下,才需要进一步术中弯曲植入物。因此,可以达到基于大型解剖数据库的证据开发用于治疗腓骨远端骨折的植入物的目标。生物力学测试显示出关于稳定性的良好结果,临床应用证实了高等级的解剖学适应性。

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