Lotz J C, Hu S S, Chiu D F, Yu M, Colliou O, Poser R D
Department of Orthopaedic Surgery, University of California, San Francisco.
Spine (Phila Pa 1976). 1997 Dec 1;22(23):2716-23. doi: 10.1097/00007632-199712010-00003.
Biomechanical testing with human cadaveric lumbar vertebral bodies was used to determine the utility of an injectable carbonated apatite cancellous bone cement for improving the structural performance of pedicle screws subjected to axial pull-out or transverse cyclic loading.
To ascertain whether augmentation with a carbonated apatite cement can enhance pedicle screw fixation in the lumbar spine.
The beneficial effects of polymethylmethacrylate augmentation on pedicle screw pull-out strength have been demonstrated. Cancellous bone cement, however, may provide an attractive alternative in this application, as it is remodelable, biocompatible, and nonexothermic.
Forty-three cadaveric lumbar vertebral bodies were instrumented with pedicle screws. In 20 of these specimens, axial pull-out strength was compared between the control screws and those augmented with cancellous bone cement. In the remaining 23 specimens, the screws were loaded in the superior-inferior direction with a peak displacement of +/- 1 mm at a frequency of 3 Hz for 5000 cycles. Three parameters were calculated from the force-versus-time data: 1) the energy dissipated, 2) the peak force at the start of the test, and 3) the peak force at the end of 5000 cycles.
The pull-out strength of the augmented pedicles averaged 68% greater than that of the control side. In response to cyclic loading, all measures of bio-mechanical performance improved 30-63%.
The data suggest that augmentation with this carbonated apatite cancellous bone cement can enhance immediate screw fixation.
采用人体尸体腰椎椎体进行生物力学测试,以确定可注射碳酸磷灰石松质骨水泥在改善椎弓根螺钉承受轴向拔出或横向循环载荷时的结构性能方面的效用。
确定使用碳酸磷灰石骨水泥增强能否提高腰椎椎弓根螺钉的固定效果。
聚甲基丙烯酸甲酯增强对椎弓根螺钉拔出强度的有益作用已得到证实。然而,松质骨水泥在该应用中可能是一种有吸引力的替代物,因为它可重塑、具有生物相容性且无热效应。
对43个尸体腰椎椎体植入椎弓根螺钉。在其中20个标本中,比较了对照螺钉和用松质骨水泥增强的螺钉的轴向拔出强度。在其余23个标本中,螺钉在上下方向加载,峰值位移为±1毫米,频率为3赫兹,持续5000个循环。从力-时间数据中计算出三个参数:1)耗散能量,2)测试开始时的峰值力,3)5000个循环结束时的峰值力。
增强椎弓根的拔出强度平均比对照侧高68%。在循环载荷作用下,所有生物力学性能指标均提高了30%至63%。
数据表明,使用这种碳酸磷灰石松质骨水泥增强可提高螺钉的即时固定效果。