Facchinello Yann, Brailovski Vladimir, Petit Yvan, Mac-Thiong Jean-Marc
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:6605-8. doi: 10.1109/EMBC.2014.6945142.
Rigid instrumentations have been widely used for spinal fusion but they come with complications, such as adjacent disc degeneration. Dynamic instrumentations have been tested but their efficiency (stabilization capability) and reliability (mechanical integrity of the implant) have yet to be proven. A monolithic Ti-Ni spinal rod with variable flexural stiffness is proposed to reduce the risks associated with spinal fusion while maintaining adequate stabilization. This publication presents a simplified numerical model capable of evaluating the eventual benefits of a Ti-Ni spinal rod with variable flexural stiffness.
A simplified instrumented spine segment model composed of six vertebrae and five discs has been developed. Two types of spinal rods were evaluated: Classic Ti instrumentation and Ti-Ni rods with variable stiffness. Both instrumentations were tested using two anchor configurations: pedicle screws only or a screws-cable combination.
The all-screws configuration does not allow much motion with either classic Ti or variable Ti-Ni rods. The combination of a Ti rod with screws-cable anchoring allows more motion and, therefore, lower adjacent disk pressure, but puts extremely high stresses on the rod and anchors. The combination of the variable Ti-Ni rod and screws-cable anchoring leads to a significant decrease in adjacent disk pressure, without increasing stresses and pullout forces in the spinal instrumentation.
刚性器械已广泛用于脊柱融合术,但会带来诸如相邻椎间盘退变等并发症。动态器械已进行了测试,但其效率(稳定能力)和可靠性(植入物的机械完整性)尚未得到证实。提出了一种具有可变弯曲刚度的整体式钛镍脊柱棒,以降低脊柱融合相关风险,同时保持足够的稳定性。本出版物展示了一个简化的数值模型,能够评估具有可变弯曲刚度的钛镍脊柱棒的最终益处。
已开发出一个由六个椎体和五个椎间盘组成的简化的带器械脊柱节段模型。评估了两种类型的脊柱棒:经典钛器械和可变刚度的钛镍棒。两种器械均使用两种锚固配置进行测试:仅使用椎弓根螺钉或螺钉 - 缆索组合。
全螺钉配置下,经典钛棒或可变钛镍棒都不会产生太多运动。钛棒与螺钉 - 缆索锚固的组合允许更多运动,因此相邻椎间盘压力更低,但会给棒和锚固带来极高应力。可变钛镍棒与螺钉 - 缆索锚固的组合可显著降低相邻椎间盘压力,而不会增加脊柱器械中的应力和拔出力。