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The Comprehensive Biomechanics and Load-Sharing of Semirigid PEEK and Semirigid Posterior Dynamic Stabilization Systems

机译:半刚性PEEK和半刚性后动态稳定系统的综合生物力学和分担载荷

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Alternatives to conventional rigid fusion have been proposed for several conditions related to degenerative disc disease when nonoperative treatment has failed. Semirigid fixation, in the form of dynamic stabilization or PEEK rods, is expected to provide compression under loading as well as an intermediate level of stabilization. This study systematically examines both the load-sharing characteristics and kinematics of these two devices compared to the standard of internal rigid fixators. Load-sharing was studied by using digital pressure films inserted between an artificially machined disc and two loading fixtures. Rigid rods, PEEK rods, and the dynamic stabilization system were inserted posteriorly for stabilization. The kinematics were quantified on ten, human, cadaver lumbosacral spines (L3-S1) which were tested under a pure bending moment, in flexion-extension, lateral bending, and axial rotation. The magnitude of load transmission through the anterior column was significantly greater with the dynamic device compared to PEEK rods and rigid rods. The contact pressures were distributed more uniformly, throughout the disc with the dynamic stabilization devices, and had smaller maximum point-loading (pressures) on any particular point within the disc. Kinematically, the motion was reduced by both semirigid devices similarly in all directions, with slight rigidity imparted by a lateral interbody device.
机译:当非手术治疗失败时,针对与变性椎间盘疾病相关的几种疾病,已提出了常规刚性融合的替代方法。以动态稳定或PEEK杆形式的半刚性固定有望在载荷作用下提供压缩作用,并具有中等程度的稳定作用。这项研究与内部刚性固定器的标准相比,系统地检查了这两种设备的负荷分担特性和运动学。通过使用插入在人工加工的圆盘和两个加载固定装置之间的数字压力膜来研究负载共享。刚性杆,PEEK杆和动态稳定系统向后插入以稳定。在十个人的尸体腰spin腰椎(L3-S1)上对运动学进行了量化,这些腰椎在纯弯矩,屈伸,横向弯曲和轴向旋转下进行了测试。与PEEK棒和刚性棒相比,使用动力装置通过前柱传递的载荷量要大得多。接触压力在带有动态稳定装置的整个圆盘上分布更均匀,并且在圆盘内任何特定点上的最大点负载(压力)都较小。运动学上,两个半刚性装置均在所有方向上均减小了运动,而侧向椎体间装置赋予了较小的刚度。

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