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Improvement and FEA of New Type of Osteointegrated Implant For Higher Amputated Leg Attachment

机译:新型截肢术植入物的改进与FEA,换截肢腿附件

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Stress concentration is one of the main mechanical problems leading to the failure of clinical application for osteointegrated implant of percutaneous osteointegrated prosthesis, which is especially marked for higher amputated leg prosthesis. Traditionally design was composed of only the distal part. To improve the biomechanical safety, a new design with the lag part similar to the lag screw was introduced. Based on CT scan data, relatively accurate model of femur for finite element analysis (FEA) were obtained. The FEA results with the new implant demonstrated that compared to traditional design, the declination of bone stress peak ranged from 15.68% to 28.67%, perpendicular deformation from 34.73% to 72.16%, and maximal stress of implant from 14.51% to 23.36% with the increasing of loads from 3750N to 2000N. So the new design of osteointegrated implant would be more secure mechanically, in the case of higher amputated leg attachment.
机译:应力集中是导致临床应用失败的主要机械问题之一,骨瘦如柴的经皮骨折假体的骨干植入物,这对于较高的截肢腿假体特别标记。传统上设计仅由远端部分组成。为了提高生物力学安全,引入了具有类似于滞后螺钉的滞后部分的新设计。基于CT扫描数据,获得了用于有限元分析(FEA)的相对准确的股骨模型。新植入物的FEA结果证明,与传统设计相比,骨应激峰的偏差范围为15.68%至28.67%,垂直变形为34.73%至72.16%,植入物从14.51%到23.36%的最大胁迫。增加3750n至2000n的负荷。因此,在截肢腿附着较高的情况下,骨骨整向植入物的新设计将更加安全。

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