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Evaluation of cervical laminectomy and laminoplasty. A longitudinal study in the goat model.

机译:宫颈椎板切除术和椎板成形术的评估。山羊模型的纵向研究。

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STUDY DESIGN: An evaluation of the longitudinal radiologic changes up to 6 months induced by multilevel laminectomy and laminoplasty and the biomechanical responses in the goat model, complemented by biomechanical studies of intact specimens. OBJECTIVES: To determine the long-term radiographic differences and biomechanical responses of laminectomy and laminoplasty in an in vivo animal model. SUMMARY OF BACKGROUND DATA: Previous clinical and laboratory studies have indicated that multilevel laminectomy can cause increased flexibility in the cervical spinal column. Although the potential for laminoplasty to resolve these changes has been suggested, other evaluations have not supported this contention. Clarification of this controversy with long-term in vivo studies has not been performed. METHODS: Ten adult goats were divided into two groups, one undergoing C3-C5 laminectomy and the other open-door laminoplasty. Lateral cervical spine radiographs were obtained at 4-week intervals for a 6-month period. After the goats were killed, biomechanical testing was performed using pure moment loading on the surgically treated specimens and on three intact (without surgery) cervical spinal columns. RESULTS: In the laminectomy preparations, the cervical curvature index was noted to decrease by 59% at 16 weeks (P < 0.028) and by 70% at 24 weeks (P < 0.002), whereas the decrease in laminoplasty was not significantly different. Biomechanical testing indicated a significantly increased sagittal-plane slack motion in the laminectomy group (55 degrees) compared with that in intact specimens (39 degrees), but no significant difference between the laminoplasty and intact groups with respect to this motion. Laminectomy was found to be significantly stiffer (36%) in flexion than in extension, whereas the contrary was true for laminoplasty (37%). CONCLUSIONS: Radiographic and biomechanical results in the goat model suggest that laminoplasty is superior to laminectomy in maintaining cervical alignment and preventing postoperative spinal deformities.
机译:研究设计:对山羊模型多级椎板切除术和椎板成形术诱发的长达6个月的纵向放射学变化以及山羊模型的生物力学反应进行评估,并辅以完整标本的生物力学研究。目的:确定体内动物模型中椎板切除术和椎板成形术的长期放射学差异和生物力学反应。背景技术摘要:先前的临床和实验室研究表明,多层椎板切除术可导致颈椎脊柱灵活性增加。尽管已经提出了椎板成形术解决这些变化的潜力,但其他评估并未支持这一论点。尚未通过长期的体内研究澄清这一争议。方法:将十只成年山羊分为两组,一组进行C3-C5椎板切除术,另一组进行开门椎板成形术。每隔4周间隔6个月获取一次颈椎外侧X线片。山羊被杀死后,使用纯力矩加载对经过手术处理的标本和三个完整(未经手术)的颈椎脊柱进行生物力学测试。结果:在椎板切除术制剂中,颈曲率指数在16周时下降59%(P <0.028),在24周时下降70%(P <0.002),而椎板成形术的下降没有显着差异。生物力学测试表明,与完整标本(39度)相比,椎板切除术组(55度)的矢状面松弛运动明显增加,但椎板成形术和完整组之间就该运动没有明显差异。发现椎板切除术的屈曲比伸直明显硬(36%),而椎板成形术则相反(37%)。结论:山羊模型的影像学和生物力学结果表明,椎板成形术在保持颈椎对齐和预防术后脊柱畸形方面优于椎板切除术。

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