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Biomechanical Study of a Novel Expandable Non-Metallic and Radiolucent CF/PEEK Vertebral Body Replacement (VBR)

机译:新型可扩展非金属和不透射线的CF / PEEK椎体置换术(VBR)的生物力学研究

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摘要

Vertebral body replacement is well-established to stabilize vertebral injuries due to trauma or cancer. Spinal implants are mainly manufactured by metallic alloys; which leads to artifacts in radiological diagnostics; as well as in radiotherapy. The purpose of this study was to evaluate the biomechanical data of a novel carbon fiber reinforced polyetheretherketone (CF/PEEK) vertebral body replacement (VBR). Six thoracolumbar specimens were tested in a six degrees of freedom spine tester. In all tested specimens CF/PEEK pedicle screws were used. Two different rods (CF/PEEK versus titanium) with/without cross connectors and two different VBRs (CF/PEEK prototype versus titanium) were tested. In lateral bending and flexion/extension; range of motion (ROM) was significantly reduced in all instrumented states. In axial rotation; the CF/PEEK combination (rods and VBR) resulted in the highest ROM; whereas titanium rods with titanium VBR resulted in the lowest ROM. Two cross connectors reduced ROM in axial rotation for all instrumentations independently of VBR or rod material. All instrumented states in all planes of motion showed a significantly reduced ROM. No significant differences were detected between the VBR materials in all planes of motion. Less rigid CF/PEEK rods in combination with the CF/PEEK VBR without cross connectors showed the smallest reduction in ROM. Independently of VBR and rod material; two cross connectors significantly reduced ROM in axial rotation. Compared to titanium rods; the use of CF/PEEK rods results in higher ROM. The stiffness of rod material has more influence on the ROM than the stiffness of VBR material.
机译:椎体置换已经很成熟,可以稳定由于外伤或癌症引起的椎体损伤。脊柱植入物主要由金属合金制造。导致放射诊断中的伪影;以及放疗这项研究的目的是评估新型碳纤维增强聚醚醚酮(CF / PEEK)椎体置换(VBR)的生物力学数据。在六自由度脊柱测试仪中测试了六个胸腰椎标本。在所有测试样品中均使用CF / PEEK椎弓根螺钉。测试了带有/不带有交叉连接器的两个不同的杆(CF / PEEK与钛)和两个不同的VBR(CF / PEEK原型与钛)。在横向弯曲和弯曲/伸展;在所有仪器状态下,运动范围(ROM)均显着减小。轴向旋转CF / PEEK组合(棒和VBR)产生了最高的ROM;而钛棒和钛VBR的ROM最低。两个横向连接器可减少所有仪器的轴向旋转ROM,而与VBR或棒材无关。在所有运动平面上的所有仪器状态均显示ROM大大减少。在所有运动平面上的VBR材料之间均未检测到显着差异。刚性较低的CF / PEEK杆与不带交叉连接器的CF / PEEK VBR结合使用,显示出ROM的减少最小。独立于VBR和棒材;两个交叉连接器大大减少了ROM的轴向旋转。与钛棒相比; CF / PEEK棒的使用会导致更高的ROM。杆材料的刚度比VBR材料的刚度对ROM的影响更大。

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