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Biomechanical analysis of expansion screws and cortical screws used for ventral plate fixation on the cervical spine.

机译:用于腹侧板固定在颈椎上的膨胀螺钉和皮质螺钉的生物力学分析。

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摘要

Compared to bicortical screws, the surgical risk of injuring intraspinal structures can be minimized with the use of monocortical screws. However, this reduction should not be achieved at the expense of the stability of the fixation. With monocortical stabilization, the expansion screws have the potential of absorbing high loads. Therefore, they are expected to be a suitable alternative to bicortical screws for revision surgeries and in osteoporotic bone. The purpose of this in vitro study was to investigate the stiffness of the two screw-plate systems used for ventral stabilization of the cervical spine, by focusing on the suitability of expansion screws as tools for revision treatments. The study was conducted in ten functional units of human cervical spines. The device sample stiffness was determined for four conditions using a turning moment of 2.25 N m each around one of the three principle axes. The conditions were native, destabilized, primarily stabilized with one of the screw-plate systems, followed by secondary stabilization using the expansion screw implant. The stabilized samples achieved a comparable, in most cases higher stiffness than the native samples. The samples undergoing secondary stabilization using expansion screws tend to display greater stiffness for all three axes compared to the primarily stabilized samples. The achieved tightening moment of the screws was higher than the one achieved with primary fixation. Both plates revealed similar primary stability. Revision surgeries with secondary instrumentation achieve a high stiffness of the screwed up segments. Monocortical expansion screws combined with a trapezoidal plate allow ventral stabilization of the cervical spine that is comparable to the plate fixation using bicortical screws.
机译:与双皮质螺钉相比,单皮质螺钉的使用可以最大程度地减少椎间结构受伤的手术风险。但是,这种减少不应以固定的稳定性为代价。通过单皮质稳定,膨胀螺钉具有吸收高载荷的潜力。因此,它们有望成为翻修手术和骨质疏松性骨中双皮质螺钉的合适替代品。这项体外研究的目的是通过重点研究膨胀螺钉作为翻修治疗工具的适用性,来研究用于颈椎腹侧稳定的两个螺钉板系统的刚度。该研究是在人类颈椎的十个功能单元中进行的。在四个条件下使用围绕三个主轴之一的转弯力矩为2.25 N m的设备确定设备样品的刚度。条件是自然的,不稳定的,主要使用其中一种螺钉板系统进行稳定,然后使用膨胀螺钉植入物进行二次稳定。在大多数情况下,稳定化的样品都具有与天然样品相当的刚度。与最初稳定的样品相比,使用膨胀螺丝进行二次稳定的样品倾向于在所有三个轴上显示出更高的刚度。所获得的螺钉拧紧力矩高于初次固定时的拧紧力矩。两种板均显示出相似的基本稳定性。带有辅助仪器的翻修手术可实现拧紧段的高刚度。单皮质膨胀螺钉与梯形板相结合,可以使颈椎腹侧稳定,这与使用双皮质螺钉固定板相当。

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