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模拟及尸体犬颈椎柱单皮质螺钉/聚甲基丙烯酸甲酯固定后椎间盘间隔器对刚度的影响

Effect of an intervertebral disk spacer on stiffness after monocortical screw/polymethylmethacrylate fixation in simulated and cadaveric canine cervical vertebral columns.

作者信息

Hettlich Bianca F, Allen Matthew J, Glucksman Gabriela S, Fosgate Geoffrey T, Litsky Alan S

机构信息

Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Ohio State University, Columbus, Ohio.

出版信息

Vet Surg. 2014 Nov;43(8):988-94. doi: 10.1111/j.1532-950X.2014.12165.x. Epub 2014 Feb 11.

Abstract

OBJECTIVE

To determine the biomechanical effect of an intervertebral spacer on construct stiffness in a PVC model and cadaveric canine cervical vertebral columns stabilized with monocortical screws/polymethylmethacrylate (PMMA).

STUDY DESIGN

Biomechanical study.

SAMPLE POPULATION

PVC pipe; cadaveric canine vertebral columns.

METHODS

PVC model-PVC pipe was used to create a gap model mimicking vertebral endplate orientation and disk space width of large-breed canine cervical vertebrae; 6 models had a 4-mm gap with no spacer (PVC group 1); 6 had a PVC pipe ring spacer filling the gap (PCV group 2). Animals-large breed cadaveric canine cervical vertebral columns (C2-C7) from skeletally mature dogs without (cadaveric group 1, n = 6, historical data) and with an intervertebral disk spacer (cadaveric group 2, n = 6) were used. All PVC models and cadaver specimens were instrumented with monocortical titanium screws/PMMA. Stiffness of the 2 PVC groups was compared in extension, flexion, and lateral bending using non-destructive 4-point bend testing. Stiffness testing in all 3 directions was performed of the unaltered C4-C5 vertebral motion unit in cadaveric spines and repeated after placement of an intervertebral cortical allograft ring and instrumentation. Data were compared using a linear mixed model approach that also incorporated data from previously tested spines with the same screw/PMMA construct but without disk spacer (cadaveric group 1).

RESULTS

Addition of a spacer increased construct stiffness in both the PVC model (P < .001) and cadaveric vertebral columns (P < .001) compared to fixation without a spacer.

CONCLUSIONS

Addition of an intervertebral spacer significantly increased construct stiffness of monocortical screw/PMMA fixation.

摘要

目的

确定椎间融合器对聚氯乙烯(PVC)模型以及采用单皮质螺钉/聚甲基丙烯酸甲酯(PMMA)固定的犬尸体颈椎柱结构刚度的生物力学影响。

研究设计

生物力学研究。

样本

PVC管;犬尸体颈椎柱。

方法

PVC模型——使用PVC管创建一个间隙模型,模拟大型犬颈椎的椎体终板方向和椎间盘间隙宽度;6个模型有4毫米间隙且无融合器(PVC组1);6个模型有一个PVC管环形融合器填充间隙(PCV组2)。动物——使用来自骨骼成熟犬的大型犬尸体颈椎柱(C2 - C7),一组无椎间盘融合器(尸体组1,n = 6,历史数据),另一组有椎间盘融合器(尸体组2,n = 6)。所有PVC模型和尸体标本均用单皮质钛螺钉/PMMA固定。使用无损四点弯曲试验比较两组PVC模型在伸展、屈曲和侧弯时的刚度。对尸体脊柱中未改变的C4 - C5椎体运动单元在三个方向上进行刚度测试,并在植入椎间皮质同种异体骨环和固定装置后重复测试。使用线性混合模型方法比较数据,该方法还纳入了先前测试的具有相同螺钉/PMMA固定但无椎间盘融合器的脊柱数据(尸体组1)。

结果

与无融合器固定相比,添加融合器可增加PVC模型(P <.001)和尸体颈椎柱(P <.001)的结构刚度。

结论

添加椎间融合器可显著增加单皮质螺钉/PMMA固定的结构刚度。

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