首页> 外文期刊>International journal for numerical methods in biomedical engineering >Finite element analysis of a ball‐and‐socket artificial disc design to suppress excessive loading on facet joints: A comparative study with ProDisc
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Finite element analysis of a ball‐and‐socket artificial disc design to suppress excessive loading on facet joints: A comparative study with ProDisc

机译:球形人工圆盘设计的有限元分析,抑制面关节过度载荷:Prodisc的比较研究

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摘要

Facet arthrosis at surgical level was identified as major complication after total disc replacement (TDR). One of the reasons for facet arthrosis after TDR has been speculated to be the hypermobility of artificial discs. Accordingly, the artificial disc that can constrain the hypermobility of ball-and-socket type artificial discs and reduce loading on facet joints is demanded. The proposed artificial disc, which is named as NewPro, was constructed based on the FDA-approved ProDisc but contained an interlocking system consisting of additional bars and grooves to control the range of motion (ROM) of lumbar spine in all anatomical planes. The three-dimensional finite element model of L1 to L5 was developed first, and the biomechanical effects were compared between ProDisc and NewPro. The ROM and facet contact force of NewPro were significantly decreased by 42.7% and 14% in bending and by 45.6% and 34.4% in torsion, respectively, compared with the values of ProDisc, thanks to the interlocking system. In addition, the ROM and facet contact force could be selectively constrained by modifying the location of the bars. The proposed artificial disc with the interlocking system was able to constrain the intersegmental rotation effectively and reduce excessive loading on facet joints, although wear and strength tests would be needed prior to clinical applications.
机译:外科水平的小关节关节被鉴定为总盘替换后的主要并发症(TDR)。在TDR后,突出关节关节的原因之一被推测是人造盘的高产性。因此,需要限制球形型人造盘的高能力的人造盘并减少在小关节上的负载。基于FDA批准的Prodisc构建了所提出的人造光盘,该人工光盘被设计为NewPro,但包含由附加条和凹槽组成的互锁系统,以控制腰椎的运动范围(ROM)在所有解剖面上。首先开发L1至L5的三维有限元模型,并在Prodisc和NewPro之间进行生物力学效果。与互锁系统相比,纽约植物的ROM和突出率显着降低了42.7%和14%,扭转45.6%和34.4%。另外,通过修改条形的位置,可以选择性地约束ROM和方框接触力。具有互锁系统的所提出的人造盘能够有效地限制主体旋转,并减少在临床应用之前需要磨损和强度测试的面关节的过度负载。

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