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首页> 外文期刊>BioMed research international >Construction and Biomechanical Properties of PolyAxial Self-Locking Anatomical Plate Based on the Geometry of Distal Tibia
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Construction and Biomechanical Properties of PolyAxial Self-Locking Anatomical Plate Based on the Geometry of Distal Tibia

机译:基于远端胫骨几何形状的多轴自锁解剖板的构建及其生物力学性能

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摘要

In order to provide scientific and empirical evidence for the clinical application of the polyaxial self-locking anatomical plate, 80 human tibias from healthy adults were scanned by spiral CT and their three-dimensional images were reconstructed using the surface shaded display (SSD) method. Firstly, based on the geometric data of distal tibia, a polyaxial self-locking anatomical plate for distal tibia was designed and constructed. Biomechanical tests were then performed by applying axial loading, 4-point bending, and axial torsion loading on the fracture fixation models of fresh cadaver tibias. Our results showed that variation in twisting angles of lateral tibia surface was found in various segments of the distal tibia. The polyaxial self-locking anatomical plate was constructed based on the geometry of the distal tibia. Compared to the conventional anatomical locking plate, the polyaxial self-locking anatomical plate of the distal tibia provides a better fit to the geometry of the distal tibia of the domestic population, and the insertion angle of locking screws can be regulated up to 30°. Collectively, this study assesses the geometry of the distal tibia and provides variable locking screw trajectory to improve screw-plate stability through the design of a polyaxial self-locking anatomical plate.
机译:为了为多轴自锁解剖板的临床应用提供科学和经验依据,通过螺旋CT扫描了80位健康成年人的胫骨,并使用表面阴影显示(SSD)方法重建了其三维图像。首先,基于胫骨远端的几何数据,设计并构建了胫骨远端多轴自锁解剖板。然后通过对新鲜尸体胫骨的骨折固定模型施加轴向载荷,四点弯曲和轴向扭转载荷来进行生物力学测试。我们的结果表明,在胫骨远端的各个节段中都发现了胫骨外侧表面扭曲角度的变化。基于胫骨远端的几何构造多轴自锁解剖板。与传统的解剖学锁定板相比,胫骨远端的多轴自锁解剖板提供了更好的适合家庭人口的胫骨远端的几何形状,并且锁定螺钉的插入角度可以调节到30°。这项研究共同评估了胫骨远端的几何形状,并通过设计多轴自锁解剖板提供了可变的锁固螺钉轨迹,以提高螺钉板的稳定性。

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