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Pedicle Screw Fixation Study in Immature Porcine Spines to Improve Pullout Resistance during Animal Testing

机译:在未成熟的猪脊柱中进行椎弓根螺钉固定研究以提高动物试验过程中的抗拔出性

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摘要

The porcine model is frequently used during development and validation of new spinal devices, because of its likeness to the human spine. These spinal devices are frequently composed of pedicle screws with a reputation for stable fixation but which can suffer pullouts during preclinical implantation on young animals, leading to high morbidity. With a view to identifying the best choices to optimize pedicle screw fixation in the porcine model, this study evaluates ex vivo the impact of weight (age) of the animal, the level of the vertebrae (lumbar or thoracic) and the type of screw anchorage (mono- or bi-cortical) on pedicle screw pullouts. Among the 80 pig vertebrae (90- and 140-day-old) tested in this study, the average screw pullout forces ranged between 419.9N and 1341.2N. In addition, statistical differences were found between test groups, pointing out the influence of the three parameters stated above. We found that the the more caudally the screws are positioned (lumbar level), the greater their pullout resistance is, moreover, screw stability increases with the age, and finally, the screws implanted with a mono-cortical anchorage sustained lower pullout forces than those implanted with a bi-cortical anchorage. We conclude that the best anchorage can be obtained with older animals, using a lumbar fixation and long screws traversing the vertebra and inducing bi-cortical anchorage. In very young animals, pedicle screw fixations need to be bi-cortical and more numerous to prevent pullout.
机译:由于猪模型与人的脊椎相似,因此经常在新脊柱装置的开发和验证过程中使用。这些脊柱装置通常由椎弓根螺钉组成,以稳定固定而著称,但在小动物的临床前植入过程中可能会拔出,导致高发病率。为了确定在猪模型中优化椎弓根螺钉固定的最佳选择,本研究评估了离体动物体重(年龄),椎骨水平(腰椎或胸廓)和螺钉锚固类型的影响。椎弓根螺钉拉出时(单皮层或双皮层)。在这项研究中测试的80头猪椎骨(90天和140天大)中,平均螺钉拔出力在419.9N和1341.2N之间。另外,在测试组之间发现统计差异,指出了上述三个参数的影响。我们发现,螺钉放置的位置越靠后(腰椎水平),其抗拔力就越大,此外,螺钉的稳定性会随着年龄的增长而增加,最后,植入单皮质锚固的螺钉所承受的拔出力要比那些低。植入双皮质固定物。我们得出的结论是,使用腰部固定和长螺钉横穿椎骨并诱导双皮质固定,可以用较大的动物获得最佳的固定。在年幼的动物中,椎弓根螺钉固定需要是双皮质的,并且需要更多,以防止拔出。

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