首页> 外文期刊>Neurosurgical focus >Analysis of load sharing on uncovertebral and facet joints at the C5-6 level with implantation of the Bryan, Prestige LP, or ProDisc-C cervical disc prosthesis: an in vivo image-based finite element study.
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Analysis of load sharing on uncovertebral and facet joints at the C5-6 level with implantation of the Bryan, Prestige LP, or ProDisc-C cervical disc prosthesis: an in vivo image-based finite element study.

机译:通过植入Bryan,Prestige LP或ProDisc-C颈椎间盘假体,对C5-6水平的椎侧和小平面关节的负载分担进行分析:一项基于体内图像的有限元研究。

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The goal of this study was to evaluate and compare load sharing of the facet and uncovertebral joints after total cervical disc arthroplasty using 3 different implant designs. Three-dimensional voxel finite element models were built for the C5-6 spine unit based on CT images acquired from a candidate patient for cervical disc arthroplasty. Models of facet and uncovertebral joints were added and artificial discs were placed in the intervertebral disc space. Finite element analyses were conducted under normal physiological loads for flexion, extension, and lateral bending to evaluate von Mises stresses and strain energy density (SED) levels at the joints. The Bryan disc imposed the greatest average stress and SED levels at facet and uncovertebral joints with flexion-extension and lateral bending, while the ProDisc-C and Prestige LP discs transferred less load due to their rigid cores. However, all artificial discs showed increased loads at the joints in lateral bending, which may be attributed to direct impinging contact force. In unconstrained/semiconstrained prostheses with different core rigidity, the shared loads at the joints differ, and greater flexibility may result in greater joint loads. With respect to the 3 artificial discs studied, load sharing of the Bryan disc was highest and was closest to normal load sharing with the facet and uncovertebral joints. The Prestige LP and ProDisc-C carried more load through their rigid core, resulting in decreased load transmission to the facet and uncovertebral joints.
机译:这项研究的目的是使用3种不同的植入物设计评估和比较全颈椎间盘置换术后小平面和椎侧关节的负荷分担。基于从候选颈椎间盘置换术患者获得的CT图像,为C5-6脊柱单元建立了三维体素有限元模型。添加了小平面和椎侧关节模型,并将人工椎间盘放置在椎间盘空间中。在正常的生理负荷下对屈曲,伸展和横向弯曲进行有限元分析,以评估关节处的冯·米塞斯应力和应变能密度(SED)水平。 Bryan椎间盘在屈伸和侧向弯曲的小关节和椎侧关节上施加了最大的平均应力和SED水平,而ProDisc-C和Prestige LP椎间盘由于其刚性核心而传递的载荷较小。但是,所有人造椎间盘在侧向弯曲时在关节处均显示出增加的载荷,这可能归因于直接冲击接触力。在具有不同核心刚度的无约束/半约束假体中,关节处的分担载荷不同,更大的柔韧性可能导致更大的关节载荷。对于所研究的3个人造椎间盘,布莱恩椎间盘的负荷分担最高,并且最接近于小关节和非椎骨关节的正常负荷分担。 Prestige LP和ProDisc-C通过其刚性芯承受更多的载荷,从而减少了传递到小关节和非椎骨关节的载荷。

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    《Neurosurgical focus》 |2010年第6期|共1页
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  • 正文语种 eng
  • 中图分类 外科学;
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