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Design Consideration for ACL Implants based on Mechanical Loading

机译:基于机械载荷的ACL植入物的设计考虑

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This study aims to understand and estimate the forces while the anterior cruciate ligament (ACL) is subjected to loading during stair negotiation. 9 healthy subjects were recruited and asked to negotiate stairs while their motion was captured. An OpenSim model was developed to estimate the ACL length from kinematic data. The forces were estimated using a force/displacement relationship. The peak ACL force was 0.416±0.089 N/BW and was recorded at full extension of the knee while the participants were descending stairs. The forces experienced by the right and left ACL of women were highly significant compared to ACL forces in men and the ACL forces in old people were significantly higher than in younger people. These forces will be used as boundary conditions in a novel finite element model (FEM) to estimate tensile and shear stress levels in the ACL to gain design information to create a tissue engineered ACL implant. The CIRP-Biomanufacturing conference promotes the exchange of knowledge on biodesign and biofabrication in order to develop novel medical devices for improving quality of life. This work is relevant to the conference since it contributes to a better understanding of the mechanical behavior of ACL throughout its range of motion and it is the starting point for the design and manufacture of new ACL implants.
机译:这项研究旨在了解和估计在楼梯协商过程中前交叉韧带(ACL)承受载荷时的作用力。招募了9名健康受试者,并要求他们在捕获运动时协商楼梯。开发了OpenSim模型以从运动学数据估计ACL长度。使用力/位移关系估计力。 ACL峰值力量为0.416±0.089 N / BW,在参与者下楼梯时记录在膝盖完全伸展时。与男性的ACL部队相比,女性左右ACL所经历的部队非常重要,老年人的ACL部队明显高于年轻人。这些力将在新型有限元模型(FEM)中用作边界条件,以估计ACL中的拉伸应力和剪切应力水平,以获得设计信息以创建组织工程化的ACL植入物。 CIRP-生物制造会议促进了关于生物设计和生物制造的知识交流,以开发新颖的医疗设备来改善生活质量。这项工作与会议有关,因为它有助于更​​好地了解ACL在其整个运动范围内的机械性能,并且它是设计和制造新ACL植入物的起点。

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