...
首页> 外文期刊>Neurospine. >A Novel Blasted and Grooved Low Profile Pedicle Screw Able to Resist High Compression Bending Loads
【24h】

A Novel Blasted and Grooved Low Profile Pedicle Screw Able to Resist High Compression Bending Loads

机译:一种新颖的喷砂和开槽的薄型椎弓根椎弓根螺钉能够抵抗高压缩弯曲载荷

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Objective Polyaxial pedicle screws are a safe, useful adjunct to transpedicular fixation. However, the large screw head size can cause soft tissue irritation, high rod positioning, and facet joint injury. However, the mechanical resistance provided by small and low profile pedicle screws is very limited. We therefore developed a novel, low profile pedicle screw using grooving and blasting treatment that is able to resist a high compression bending load. Methods We evaluated the compression bending force to displacement and yield loads for seven different screw head types that differed with regard to their groove intervals and whether or not they had been blasted. Results The rank order of screw types that had the greatest compression bending force to displacement was as follows: (1) universal polyaxial, (2) low polyaxial with 0.1mm grooves and blasting, (3) low polyaxial with blasting, (4) low polyaxial with 0.15mm grooves and blasting, (5) low polyaxial with 0.05mm grooves and blasting, (6) low polyaxial with 0.05mm grooves, (7) and low polyaxial. Low polyaxial screws with 0.1mm grooves and blasting had the maximum yield load and highest compression bending force to displacement of all seven polyaxial screw head systems evaluated. Conclusion Blasting and grooving treatment of pedicle screw heads resulted in screw heads with a high yield load and compression bending force relative to displacement because of increased friction. Low polyaxial pedicle screws with 0.1 mm grooves treated by blasting have mechanical characteristics similar to those of universal polyaxial pedicle screws.
机译:目的多轴椎弓根螺钉是安全,有用的椎弓根固定辅助工具。但是,较大的螺钉头尺寸可能导致软组织刺激,高杆定位和小关节损伤。然而,由小的且低矮的椎弓根螺钉提供的机械阻力非常有限。因此,我们使用开槽和喷砂处理技术开发了一种新颖的薄型椎弓根螺钉,该螺钉能够抵抗较高的压缩弯曲载荷。方法我们评估了7种不同螺钉头类型的压缩弯曲力对位移和屈服载荷的影响,这些螺钉头的凹槽间隔以及是否经过喷砂处理有所不同。结果对位移产生最大压缩弯曲力的螺杆类型的等级顺序如下:(1)通用多轴,(2)带0.1mm凹槽和喷砂的低多轴,(3)带喷砂的低多轴,(4)低具有0.15mm凹槽和喷砂的多轴,(5)具有0.05mm凹槽和喷砂的低多轴,(6)具有0.05mm凹槽的低多轴,(7)和低多轴。在所有评估的所有七个多轴螺钉头系统中,具有0.1mm凹槽并进行喷砂处理的低多轴螺钉具有最大的屈服载荷和最大的压缩弯曲变形力。结论椎弓根螺钉头的爆破和开槽处理导致螺钉头具有较高的屈服载荷和相对于位移的压缩弯曲力,原因是摩擦力增大。经过喷砂处理的带有0.1 mm凹槽的低多轴椎弓根螺钉具有与通用多轴椎弓根螺钉相似的机械特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号