Finite element study of lumbar section before and after disc arthroplasty with disc implant (SB Charite III) in comparison to PEEK twin peaks lumbar cage

N. Soltani, N. Jamshidi, H. Katouzian
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Abstract

Nowadays, primary disc degeneration and herniation are treated with total disc replacement. Arthroplasty of degenerated intervertebral disc is alternative to arthrodesis. A successful total disc arthroplasty requires estimating biomechanical behaviors of lumbar section after disc replacement. To achieve an acceptable range of motion for lumbar section, optimum design of intervertebral disc had to be considered. 3D model of an L3-L4 section, based on CT images, was developed using MIMICS software, then the model analyzed by ABAQUS software. In order to show effectiveness of SB ChariteIII behavior, other two model's considering disc fusion and lumbar with intact disc were created. Two disc implants were modelled and assembled with the vertebral segment to simulate disc arthroplasty. Another model with an intact disc was also analyzed for comparison. In this study, design of SB Charitelll with polyethylene core has been used and mechanical behavior of a lumbar vertebral was analyzed. Effects of clinically approved disc implant investigated in comparison to the Intervertébral cage one.
与PEEK双峰腰椎笼相比,椎间盘置换术(SB Charite III)前后腰椎截面的有限元研究
目前,原发性椎间盘退变和突出症可采用全椎间盘置换术治疗。退行性椎间盘成形术可替代关节融合术。一个成功的全椎间盘置换术需要评估椎间盘置换术后腰椎的生物力学行为。为了达到腰椎可接受的活动范围,必须考虑椎间盘的最佳设计。基于CT图像,利用MIMICS软件建立L3-L4段的三维模型,并用ABAQUS软件对模型进行分析。为了显示SB ChariteIII行为的有效性,我们制作了考虑椎间盘融合和椎间盘完整腰椎的另外两个模型。模拟两个椎间盘植入物,并与椎段组装以模拟椎间盘置换术。另一种椎间盘完整的模型也进行了比较分析。在本研究中,采用了SB charitell的聚乙烯芯设计,并对腰椎的力学行为进行了分析。临床批准的椎间盘植入物与椎间关节固定器的效果比较。
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