[轴向载荷作用下L1椎体的应变分布及椎体与后部构件之间的载荷传递行为]。

Nihon Seikeigeka Gakkai zasshi Pub Date : 1995-11-01
N Ishikawa
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引用次数: 0

摘要

本研究研究了L1椎体在垂直轴向载荷下的应力分布。从经过防腐处理的人尸体上获得5个正常脊柱单元(T12-L2),测量L1椎体的表面应变。事先使用脆性涂层进行应力筛选,然后在L1椎体侧半表面精心选择14个位置安装玫瑰花形应变片。垂直轴向载荷被施加到1471 N,在2度屈曲,在中立位置,在完整脊柱的2度延伸,并在中立面脊柱。用应变片测量各部位的应变,然后计算拉伸、压缩和剪切应变值。脆性外壳的裂纹表明应变集中在椎弓根基部和上椎体边缘。应变片数据分析显示,在完整椎体的三个位置,上椎体边缘处的应变量大于下椎体边缘处的应变量,差异有统计学意义。这些张力导致椎体上部边缘爆裂。对于后椎体,在平行于椎板的方向上,椎板的内表面仅受拉应变,而椎板的外表面主应变为压应变。这些应变导致后椎体变形,导致椎弓根间距离变宽和椎板内表面骨折。结果表明,第一腰椎易受Denis B型爆裂性骨折的机械损伤。此外,本研究还证明了蒂是负荷传递的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Strain distribution in the L1 vertebra under axial load and load transmitting behavior between the vertebral body and posterior elements].

This study investigated the stress distribution in the L1 vertebra under a vertical axial load. Five normal spinal units (T12-L2) were obtained from embalmed human cadavers, to measure the surface strain in the L1 vertebra. Stress screening using a brittle-coat was prepared beforehand, then fourteen sites on the lateral half of the surface on the L1 vertebra were carefully chosen to install rosette strain gauges. A vertical axial load was applied up to 1471 N in two degrees of flexion, in the neutral position, and in two degrees of extension of the intact spine, and in the neutral facetectomized spine. The strain at each site was measured with strain gauges, then the tensile, compressive and shear strain values were calculated. Cracks in the brittle-coat showed the strain concentration in the base of the pedicles and rims on the superior vertebral body. Analysis of the data by strain gauge showed that the amount of strain at the rims on the superior vertebral body was greater than that at the inferior rims in the three positions of the intact spines, with a statistical significance. These strains led to a burst in the superior vertebral body rims. As for the posterior elements, the inner surface of the laminas received a tensile strain only, while the principal strain on the outer surface of the laminas was a compressive strain, in the directions parallel to the laminas. These strains led to a transformation in the posterior elements, leading to widening in the interpedicular distance and a fracture in the inner surface of the lamina. These results showed the first lumbar vertebra was easily mechanically injured by a Denis type B burst fracture. Also this study demonstrated that the pedicles were the pathway for load transmission.

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