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摘要:
AIM To reduce post treatments of kyphoplasty,as a common treatment for osteoporotic vertebrae.METHODS This study suggests a new method for treating vertebrae by setting the hexagonal porous structure instead of the rigid bone cement mass in the kyphoplasty(KP).The KP procedure was performed on the fresh ovine vertebra of the level L1.Micro finite element modeling was performed based on micro computed tomography of ovine trabecular cube.The hexagonal porous structure was set on one cube instead of the bone cement mass.For the implant designing,two geometrical parameters were considered:Spacing diameter and thickness.RESULTS The results of micro finite element analyses indicated the improvement in the mechanical behavior of the vertebra treated by the hexagonal porous structures,as compared to those treated by vertebroplasty(VP)and KP under static loading.The improvement in the mechanical behavior of the vertebra,was observed as 54%decrease in the amount of maximum Von Misses stress(improvement of stress distribution),in trabecular cube with embedded hexagonal structure,as compared to VP and KP.This is comparable to the results of the experimental study already performed;it was shown that the improvement of mechanical behavior of the vertebra was observed as:83%increase in the range of displacements before getting to the ultimate strength(increasing the toughness)after setting hexagonal pearls inside vertebrae.Both the material and geometry of implant influenced the amount of Von Mises stress in the structure.CONCLUSION The new proposed method can be offered as a substitute for the KP.The implant geometry had a more obvious effect on the amount of Von Mises stress,as compared to the implant material.
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英文文摘
《中国电机工程学报》
英文摘要
期刊
编辑工作
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Mechanical deformation
Brittle fracture
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篇名 Biomechanical assessment of new surgical method instead of kyphoplasty to improve the mechanical behavior of the vertebra:Micro finite element study
来源期刊 世界骨科杂志 学科 医学
关键词 VERTEBROPLASTY KYPHOPLASTY MICRO finite element modeling Hexagonal porous structure Von MISES stress
年,卷(期) 2017,(11) 所属期刊栏目
研究方向 页码范围 829-835
页数 7页 分类号 R
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研究主题发展历程
节点文献
VERTEBROPLASTY
KYPHOPLASTY
MICRO
finite
element
modeling
Hexagonal
porous
structure
Von
MISES
stress
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研究去脉
引文网络交叉学科
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世界骨科杂志:英文版
月刊
2218-5836
北京市朝阳区东四环中路62号楼远洋国际中
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404
总下载数(次)
1
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0
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