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A biomechanical study of anterior thoracolumbar screw fixation.

机译:胸腰椎前路螺钉固定的生物力学研究。

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摘要

STUDY DESIGN: The pullout strength of unicortical and bicortical screws in thoracic and lumbar vertebral bodies was measured as a function of bone mineral density. OBJECTIVES: To determine the influence of bone mineral density and screw insertion technique on the stability of anterior thoracolumbar spine screw fixation. SUMMARY OF BACKGROUND DATA: No previous study has addressed the specific technique of screw insertion or stability of screw fixation in the anterior spine. METHODS: Fifty-one human thoracic vertebral bodies were tested in pullout with 6.55-mm cancellous screws inserted using unicortical and bicortical techniques. RESULTS: Pullout force increased exponentially with increasing bone mineral density for unicortical and bicortical screws. Bicortical screws were significantly stronger in resisting pullout than unicortical screws. CONCLUSION: Advancing an anterior vertebral body screw to engage the second cortex increases resistance to pullout by 25-44%, depending on vertebral bone mineral density. The difference in resistance between unicortical and bicortical techniques was smaller in specimens with low mineral densities.
机译:研究设计:测量胸椎和腰椎椎体中单皮质和双皮质螺钉的抗拔强度与骨矿物质密度的关系。目的:确定骨矿物质密度和螺钉插入技术对胸腰椎前路螺钉固定稳定性的影响。背景资料摘要:以前的研究尚未探讨螺钉插入的具体技术或前棘中螺钉固定的稳定性。方法:采用单皮质和双皮质技术,用插入的6.55毫米松质螺钉对51个人类胸椎椎体进行拉拔测试。结果:单皮质和双皮质螺钉的拔出力随骨矿物质密度的增加呈指数增加。双皮质螺钉在抵抗拔出方面比单皮质螺钉强得多。结论:根据椎骨矿物质密度的不同,推进前椎体螺钉与第二皮质的接合可使抗拔出力提高25-44%。在低矿物质密度的标本中,单皮质和双皮质技术之间的电阻差异较小。

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