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一种用于描述带有骨锚定经皮植入物的截肢股骨强度的失效包络方法。

A failure envelope approach to characterizing strength of an amputated femur with a bone-anchored percutaneous implant.

机构信息

Department of Biomedical Engineering, University of Melbourne, Parkville, VIC, 3010, Australia.

出版信息

Sci Rep. 2024 Nov 20;14(1):28799. doi: 10.1038/s41598-024-78421-3.

Abstract

Bone-anchored percutaneous implants, commonly referred to as osseointegrated implants, are gaining popularity as an alternative to sockets for attaching a prosthetic limb to an amputated femur. While these implants have several advantages, femoral fractures are relatively common in these patients, occurring in 6.3% of femurs within 4 years. This study aimed to develop a novel method to quantify femoral strength under all possible external loads acting on the distal implant. Finite element analysis was used to explore combinations of forces and moments that, when applied on the bone-anchored implant, were just sufficient to fracture the femur. The 6-dimensional envelope generated in the current study provided a quantitative description of the strength of the femur-implant construct. All the femoral fractures were predicted in the trochanteric region, corresponding to where most in vivo fractures have been reported. The 6-dimensional envelopes developed in the current study may be useful in the design of fail-safe devices that could reduce femoral fractures in patients with bone-anchored percutaneous femoral implants. The framework presented may also be used for determining patient suitability for bone-anchored percutaneous implants, and for evaluating the functional performance of implant designs.

摘要

骨内固定经皮植入物,通常被称为骨整合植入物,作为一种将假肢附接到截肢股骨的替代方法,正越来越受到关注。虽然这些植入物有几个优点,但在这些患者中,股骨骨折相对常见,4 年内有 6.3%的股骨发生骨折。本研究旨在开发一种新方法,以量化在作用于远端植入物的所有可能外部载荷下的股骨强度。有限元分析用于探索力和力矩的组合,当这些力和力矩施加在骨内固定植入物上时,足以使股骨骨折。本研究中生成的 6 维包络提供了股骨-植入物结构强度的定量描述。所有股骨骨折均预测发生在转子区域,与大多数体内骨折报告的位置相对应。本研究中开发的 6 维包络可能有助于设计失效安全装置,以减少使用骨内固定经皮股骨植入物的患者的股骨骨折。所提出的框架也可用于确定患者是否适合骨内固定经皮植入物,以及评估植入物设计的功能性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dadc/11579467/f58a0f939351/41598_2024_78421_Fig1_HTML.jpg

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