犬长骨椭圆髓管内假体残肢生物力学试验。

Rosa Mendaza-DeCal, Yolanda Ballesteros, Salvador Peso-Fernandez, Juan Carlos Del Real-Romero, Jesus Rodriguez-Quiros
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引用次数: 1

摘要

由于迄今为止只使用了昂贵的金属装置,外腔-内假体是一种用于动物的肢体挽救手术。目前,增材制造(AM)可以通过探索广泛的新材料,使这种类型的植入物负担得起。然而,安全因素应该被考虑,并且可以与犬自然步态的动力学和运动学研究有关。采用熔断沉积模型(FDM)制造的新型外腔内假体内部部分的适用性进行了评估,用于具有椭圆形髓管的长犬骨。聚醚醚酮(PEEK)是兽医创伤学中用作金属替代品的材料。通过3d打印PEEK材料的泊松比和定制的假体体外力学测试进行评估。定制的内假体对半径为20公斤的狗有很好的效果。在准静态力学试验中,骨插入式内假体(纯压缩试验)的最大力达到1045.0±78.0 n。在疲劳试验中,样品达到50万次循环而没有损坏或损害其准静态结果。这些结果超过了狗的自然负重,即使是在奔跑的速度下。此外,还进行了不同粘接剂的扭矩测试,以获得与狗的自然运动相比较的参考数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biomechanical Tests on Long-Bone Elliptical Medullary-Canal Endoprostheses for Limb Salvage in Dogs.

Biomechanical Tests on Long-Bone Elliptical Medullary-Canal Endoprostheses for Limb Salvage in Dogs.

Biomechanical Tests on Long-Bone Elliptical Medullary-Canal Endoprostheses for Limb Salvage in Dogs.

Biomechanical Tests on Long-Bone Elliptical Medullary-Canal Endoprostheses for Limb Salvage in Dogs.

Exo-endoprosthesis is a limb salvage procedure poorly described for animals, as only expensive metal devices have been used so far. Currently, additive manufacturing (AM) can make this type of implant affordable by exploring a wide new range of materials. However, safety factors should be considered and could be related to kinetic and kinematic studies of canine natural gaits. The suitability of a novel inner part of an exo-endoprosthesis manufactured by fuse deposition modeling (FDM) was assessed for long canine bones with an elliptical medullary canal. Polyether ether ketone (PEEK) was the material used as an alternative to metal for veterinary traumatology. Poisson's ratio of 3D-printed PEEK material and ex vivo mechanical tests of the customized endoprosthesis were performed for the evaluation. The customized endoprostheses had promising outcomes for the radii of 20 kg dogs. Quasistatic mechanical tests of bone-inserted endoprostheses-pure compression tests-reached a maximum force of 1045.0 ± 78.0 N. In fatigue tests, the samples reached 500,000 cycles without failure or detriment to their quasistatic results. These outcomes surpass the natural weight-bearing of dogs, even during a galloping pace. Furthermore, torque tests with different adhesives were performed to obtain reference data for future assessments comparing with natural dog movements.

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