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首页> 外文期刊>Spine >Finite element analysis of anterior lumbar interbody fusion: threaded cylindrical cage and pedicle screw fixation.
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Finite element analysis of anterior lumbar interbody fusion: threaded cylindrical cage and pedicle screw fixation.

机译:腰椎前路椎间融合器的有限元分析:螺纹圆柱笼和椎弓根螺钉固定。

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STUDY DESIGN: Pedicle screw fixation (PSF) has been used for the setting of a lumbar interbody fusion. OBJECTIVE: To investigate analytically the effects of additional PSF to the anterior lumbar interbody fusion (ALIF) with the cylindrical cages (Ray TFC) in the immediate postoperative state. SUMMARY OF BACKGROUND DATA: An addition of PSF to the stand-alone ALIF increases segmental stiffness. METHODS: A finite element model of ALIF (L4,-L5) was constructed. Finite element analyses were performed to investigate relative motion and bone stress at the bone-cage interface. The results were then compared with those of the stand-alone ALIF. Bone stress surrounding pedicle screws was also predicted. RESULTS: An addition of PSF to the stand-alone ALIF led to higher segmental stiffness, smaller relative motion, smaller bone deformation, and lower bone stress level at the cage-bone interface. The bone stress level at the interface reduced substantially during extension. The bone stress level at the bone-screw tip interface was much lower than that of the bone-cage interface. The articulating facet had no significant load-bearing capacity because of stiff PSF. Little gap opening at the bone-cage interface was found during a compressive preload over 400 N; an excessive extension without preload caused considerable gap opening. Slip less than 0.15 mm occurred during all the loading modes except axial rotation; an excessive axial rotation caused to slip over 0.15 mm. CONCLUSION: Geometric constraints caused by PSF will reduce substantially the bone stress level and the relative motion, and therefore be more likely to allow bone ingrowth at the bone-cage interface, compared with the stand-alone ALIF. The use of pedicle screw stabilization would have significant beneficial effects on the rate of interbody fusion, regardless of whether ALIF or PLIF was used.
机译:研究设计:椎弓根螺钉固定(PSF)已用于设置腰椎椎间融合器。目的:分析附加PSF对术后即刻状态的圆柱形笼(Ray TFC)对前腰椎椎间融合术(ALIF)的影响。背景数据摘要:将PSF添加到独立的ALIF中会增加节段的刚度。方法:建立了ALIF(L4,-L5)的有限元模型。进行了有限元分析,以研究骨-笼界面的相对运动和骨应力。然后将结果与独立ALIF的结果进行比较。还可以预测椎弓根螺钉周围的骨应力。结果:在独立的ALIF中增加PSF会导致较高的节段刚度,较小的相对运动,较小的骨变形以及较低的笼骨界面处的骨应力水平。在伸展过程中,界面处的骨应力水平大大降低。骨螺钉尖端界面处的骨应力水平远低于骨笼界面的骨应力水平。由于坚硬的PSF,铰接面没有明显的承重能力。在超过400 N的压缩预紧力下,在骨笼界面上几乎没有缝隙开口;没有预紧力的过度伸展会导致很大的间隙打开。在除轴向旋转以外的所有加载模式下,滑移均小于0.15毫米;轴向过度旋转导致滑行超过0.15毫米。结论:与独立的ALIF相比,由PSF引起的几何约束将显着降低骨骼的应力水平和相对运动,因此更可能允许骨骼在笼形界面处向内生长。无论使用ALIF还是PLIF,使用椎弓根螺钉稳定术都会对椎间融合的速度产生明显的有益影响。

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