首页> 外文期刊>Journal of Neurosurgery. Spine. >In vitro biomechanical comparison of an anterior and anterolateral lumbar plate with posterior fixation following single-level anterior lumbar interbody fusion.
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In vitro biomechanical comparison of an anterior and anterolateral lumbar plate with posterior fixation following single-level anterior lumbar interbody fusion.

机译:单级前路腰椎椎间融合后前路和前外侧腰椎板后固定的体外生物力学比较。

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OBJECT: Anterior lumbar interbody fusion (ALIF) is often supplemented with instrumentation to increase stability in the spine. If anterior plate fixation provided the same stability as posterior pedicle screw fixation (PSF), then a second approach and its associated morbidity could be avoided. METHODS: Seven human cadaveric L4-5 spinal segments were tested under three conditions: ALIF with an anterior plate, ALIF with an anterolateral plate, and ALIF supplemented by PSF. Range of motion (ROM) was calculated for flexion/extension, lateral bending, and axial torsion and compared among the three configurations. RESULTS: There were no significant differences in ROM during flexion/extension, lateral bending, or axial torsion among any of the three instrumentation configurations. CONCLUSIONS: The addition of an anterior plate or posterior PS/rod instrumentation following ALIF provides substantially equivalent biomechanical stability. Additionally, the position of the plate system, either anterior or anterolateral, does not significantly affect the stability gained.
机译:目的:前路腰椎椎间融合术(ALIF)经常补充仪器以增加脊柱的稳定性。如果前板固定提供与后椎弓根螺钉固定(PSF)相同的稳定性,则可以避免第二种方法及其相关的发病率。方法:在以下三个条件下测试了七个人体尸体L4-5脊柱节段:带前板的ALIF,带前外侧板的ALIF和补充PSF的ALIF。计算屈伸/伸展,横向弯曲和轴向扭转的运动范围(ROM),并在三种配置之间进行比较。结果:三种仪器配置中的任何一种在屈曲/伸展,横向弯曲或轴向扭转过程中,ROM均无显着差异。结论:在ALIF后增加前板或后部PS /杆器械可提供基本等效的生物力学稳定性。此外,前或前外侧板系统的位置不会显着影响所获得的稳定性。

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