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从颈椎椎体中取出局部自体移植物:生物力学后果。

Local autograft retrieval from a cervical vertebral body: biomechanical consequences.

机构信息

Wirbelsäulenchirurgie/Neurotraumatologie, SRH Klinikum Karlsbad-Langensteinbach, Karlsbad, Germany.

出版信息

J Neurosurg Spine. 2012 Apr;16(4):340-4. doi: 10.3171/2011.12.SPINE11677. Epub 2012 Jan 6.

Abstract

OBJECT

To avoid the cost of bone graft substitutes and the morbidity of iliac crest bone graft retrieval, locally harvested vertebral body bone has been used to fill interbody cages. When marginal hypertrophic osteophytes are used, there is little impact on the adjacent vertebrae, but when cancellous bone is removed from the central part of the vertebral body, it is not clear how significantly this procedure weakens the vertebra. The objective of this study was to investigate the immediate mechanical response of the cervical spine after removing bone from the central vertebral body.

METHODS

Fourteen cervical functional spinal units (FSUs) (mean age 73.3 years, range 63-90 years) were used. For each FSU, bone mineral density (BMD) was determined using lateral-view dual-energy x-ray absorptiometry studies. The FSUs were assigned to 1 of 2 groups (test group or control group) with an equal distribution of BMD. All specimens received a cage placed into the cleaned disc space. The specimens from the test group had a 5-mm-diameter bone plug removed from the vertebral bodies superior and inferior to the cage-fitted disc. The specimens were loaded in flexion-compression until failure via an eccentric compressive force at 0.25 mm/second.

RESULTS

The yield compression strength was 1149 ± 523 N for the test group and 1647 ± 962 N for the control group (p = 0.25). The ultimate compression strength was 1699 ± 498 N for the test group and 2450 N ± 835 N for the control group (p = 0.06). Force at 4 mm displacement was 1064 N for the test group and 1574 N for the control group (p = 0.15). Displacement at yield compression strength was 4.4 mm for the test group and 4.2 mm for the control group (p = 0.78). There was no significant intergroup difference for any of the studied parameters.

CONCLUSIONS

There does not appear to be a significant early biomechanical weakening of adjacent vertebrae caused by aforementioned technique of local bone harvest.

摘要

目的

为避免使用骨移植替代物的成本和髂嵴骨移植取出的发病率,已使用局部采集的椎体骨填充椎间笼。当使用边缘性肥大性骨赘时,对相邻椎体的影响较小,但从中枢椎体去除松质骨时,尚不清楚该手术会使椎体减弱多少。本研究的目的是研究从中枢椎体去除骨后颈椎的即刻力学反应。

方法

使用 14 个颈椎功能脊柱单位(FSU)(平均年龄 73.3 岁,范围 63-90 岁)。对于每个 FSU,使用侧位双能 X 射线吸收法研究确定骨矿物质密度(BMD)。FSU 分为两组(实验组或对照组),每组 BMD 分布均匀。所有标本均在清理后的椎间盘间隙中放置一个笼。实验组的标本从装有笼的椎间盘上下的椎体中取出 5mm 直径的骨塞。标本在偏心压缩力下以 0.25mm/秒的速度加载至屈服压缩直至失效。

结果

实验组的屈服压缩强度为 1149±523N,对照组为 1647±962N(p=0.25)。实验组的极限压缩强度为 1699±498N,对照组为 2450N±835N(p=0.06)。实验组在 4mm 位移处的力为 1064N,对照组为 1574N(p=0.15)。实验组屈服压缩强度的位移为 4.4mm,对照组为 4.2mm(p=0.78)。研究参数的组间差异无统计学意义。

结论

上述局部骨采集技术似乎不会导致相邻椎体出现明显的早期生物力学减弱。

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