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Cervical fusion cage computationally optimized with porous architected Titanium for minimized subsidence

机译:颈椎融合笼与多孔架构钛进行了计算地优化,以最小化沉降

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Anterior cervical discectomy with fusion is a common surgical treatment that can relieve patients suffering from cervical spondylosis. This surgery is most commonly performed with the use of a cervical cage. One serious complication of the fusion cages commercially available in the market is subsidence of the cage with loss of the normal alignment of the spine and recurrent pain. This work presents the proof-of-concept of a fusion cage made of a graded porous titanium with microarchitecture minimizing the risk of subsidence associated with fully-solid implants. The optimized properties of the porous implant are obtained through a scheme combining multiscale mechanics and density-based topology optimization. Asymptotic homogenization is used to capture the effective properties of the porous material, which uses a tetrahedron based cell as building block. The stress levels and normal strains obtained under various loading conditions on the C7 superior surface of the vertebrae are used as indicators of subsidence. The results suggest a reduced risk of subsidence for the optimized implant versus the fully-solid implant. Under the most severe condition of combined loading, a collective improvement of the average von Mises stress up to 14% can be observed on the posterior, left, and right lateral regions of the C7 superior surface. Similarly, for the average normal strain, the optimized cage exhibits a more favourable distribution with a top gain of 21.7% at given locations.
机译:融合的前宫颈椎间盘切除术是一种常见的手术治疗,可缓解患有颈椎病的患者。这种手术最常通过使用宫颈笼进行。市场上商业融合笼的一个严重并发症是笼子的沉降,失去脊柱正常对准和复发疼痛。这项工作介绍了由微型多孔钛制成的融合笼的概念验证,微型结构最小化与完全固体植入物相关的沉降风险。多孔植入物的优化性能通过组合多尺度力学和基于密度的拓扑优化的方案获得。渐近均质化用于捕获多孔材料的有效性质,其使用基于四面体基的电池作为构建块。在椎骨的C7优异表面上的各种负载条件下获得的应力水平和正常菌株用作沉降指标。结果表明,针对完全固体植入物的优化植入物的沉降风险降低。在最严重的载荷条件下,在C7优势表面的后部,左侧和右侧区域的后部,左侧和右侧区域上,可以观察到高达14%的平均von误声的集体改善。类似地,对于平均正常菌株,优化的笼具有更有利的分布,在给定位置具有21.7%的顶部增益。

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