Acta Orthop Belg. 2022 Sep;88(3):433-440. doi: 10.52628/88.3.6855.
The pullout performance of various pedicle screws after artificial fusion process was investigated in this study. Normal, cannulated (cemented), novel expandable and normal (cemented) pedicle screws were tested. Polyurethane foams (Grade 10 and Grade 40) produced by casting method were used as test materials. The instrumentation of pedicle screws has been carried out with production of foams, simultaneously. For cemented pedicle screws, 3D models were prepared with respect to the anteriosuperior and oblique radiographs by using PMMA before casting procedure. Pullout tests were performed in an Instron 3369 testing device. Load versus displacement graph was recorded and the ultimate force was defined as the pullout strength sustained before failure of screw. As expected, the pullout strengths of pedicle screws in postfusion are higher than before fusion. Pullout strengths increased significantly by artificial fusion in Grade 10 foams compared to Grade 40 foams. Additionally, while the pullout strengths of normal, cannulated and novel expandable pedicle screws increased by artificial fusion, cemented normal pedicle screws had lower pullout values than before fusion in Grade 40 foams. When the cemented normal pedicle screws are excluded, other screws have almost similar pullout strength level. On the other hand, the pedicle screws have different increasing behaviour also, there is no correlation between each other. As a result, the novel expandable pedicle screws can be used instead of normal and cannulated ones due to their performances in non-cemented usage.
本研究调查了人工融合过程后各种椎弓根螺钉的拔出性能。测试了普通、空心(骨水泥)、新型可扩张和普通(骨水泥)椎弓根螺钉。采用浇注法制备的聚氨酯泡沫(等级 10 和等级 40)用作测试材料。同时,通过生产泡沫来进行椎弓根螺钉的器械操作。对于骨水泥固定的椎弓根螺钉,在浇注前,通过 PMMA 对前上斜位和斜位 X 光片进行了 3D 模型制作。在 Instron 3369 测试设备上进行了拔出试验。记录了负载与位移图,将极限力定义为螺钉失效前承受的拔出强度。正如预期的那样,融合后的椎弓根螺钉的拔出强度高于融合前。与等级 40 泡沫相比,人工融合使等级 10 泡沫中的椎弓根螺钉拔出强度显著增加。此外,在人工融合过程中,普通、空心和新型可扩张椎弓根螺钉的拔出强度增加,而在等级 40 泡沫中,骨水泥固定的普通椎弓根螺钉的拔出值低于融合前。当排除骨水泥固定的普通椎弓根螺钉后,其他螺钉的拔出强度水平几乎相同。另一方面,椎弓根螺钉的增强行为也不同,彼此之间没有相关性。因此,新型可扩张椎弓根螺钉由于其在非骨水泥使用中的性能,可以替代普通和空心椎弓根螺钉。