Dynamic lumbar pedicle screw-rod stabilization: in vitro biomechanical comparison with standard rigid pedicle screw-rod stabilization Laboratory investigation

被引:35
作者
Bozkus, Hakan [2 ]
Senoglu, Mehmet [1 ]
Baek, Seungwon [1 ]
Sawa, Anna G. U. [1 ]
Ozer, Ali Fahir [2 ]
Sonntag, Volker K. H. [1 ]
Crawford, Neil R. [1 ]
机构
[1] Barrow Neurol Inst, Spinal Biomech Res Lab, Phoenix, AZ 85013 USA
[2] VKV Amer Hastanesi, Dept Neurosurg, Istanbul, Turkey
关键词
biomechanical study; dynamic stabilization; lumbar spine; rigid stabilization; FIXATION DEVICE; NEUTRAL ZONE; SPINE; FUSION; SEGMENTS; SYSTEM;
D O I
10.3171/2009.9.SPINE0951
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Object. It is unclear how the biomechanics of dynamic posterior lumbar stabilization systems and traditional rigid pedicle screw-rod systems differ. This study examined the biomechanical response of a hinged-dynamic pedicle screw compared with a standard rigid screw used in a I-level pedicle screw-rod construct. Methods. Unembalmed human cadaveric U-S I segments were tested intact, after L4-5 discectomy, after rigid pedicle screw-rod fixation, and after dynamic pedicle screw-rod fixation. Specimens were loaded using pure moments to induce flexion, extension, lateral bending, and axial rotation while recording motion optoelectronically. Specimens were then loaded in physiological flex ion-extension while applying 400 N of compression. Moment and force across instrumentation were recorded from pairs of strain gauges mounted on the interconnecting rods. Results. The hinged-dynamic screws allowed an average of 160% greater range of motion during flexion, extension, lateral bending, and axial rotation than standard rigid screws (p < 0.03) but 30% less motion than normal. When using standard screws, bending moments and axial loads on the rods were greater than the bending moments and axial loads on the rods when using dynamic screws during most loading modes (p < 0.05). The axis of rotation shifted significantly posteriorly more than 10 mm from its normal position with both devices. Conclusions. In a I-level pedicle screw-rod construct, hinged-dynamic screws allowed a quantity of motion that was substantially closer to normal motion than that allowed by rigid pedicle screws. Both systems altered kinematics similarly. Less load was borne by the hinged screw construct, indicating that the hinged-dynamic screws allow less stress shielding than standard rigid screws. (DOI: 10.3171/2009.9.SPINE0951)
引用
收藏
页码:183 / 189
页数:7
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