首页> 外文会议>5th Kuala Lumpur international conference on biomedical engineering 2011 >Influence of Cancellous Bone Existence in Human Lumbar Spine: A Finite Element Analysis
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Influence of Cancellous Bone Existence in Human Lumbar Spine: A Finite Element Analysis

机译:腰椎松质骨存在的影响:有限元分析

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The aim of this study was developed an accurate computational Unite element model (FEM) to simulate biomechanical response of human lumbar spine under physiological functions. In reality, anatomical intricate structure of the spine and also complex deformation in the different defection situation, severe application of finite element analyses. During computational study complexity of finite element model intensify acquire precision results and frequently leads to analyses failure. In this study the importance of cancellous bone contribution during finite element analyses of lumbar spine has been evaluated. A finite element model of lumbar (L2-L3) was generated from Computer Tomography images. Complete disectomy simulated, single cage inserted and posterior instrumentation was added in order to providing sufficient stability. Stress distribution pattern on two different models of vertebral body was included cancellous bone and cortical shell, for the first model, or totally cortical bone ,for the second model, were discussed under various loading situations. The FEM developed in this study demonstrated analogus model with the natural spine anatomy make differences between results, and accurate result will obtain when FEM was exactly similar as natural model. Therefore cancellous bone existence seems necessary in finite element analyses of spine.
机译:这项研究的目的是开发一种精确的计算单元元模型(FEM),以模拟人体腰椎在生理功能下的生物力学响应。实际上,脊柱的解剖学复杂结构以及在不同缺陷情况下的复杂变形,在有限元分析中的应用也很严格。在计算研究中,有限元模型的复杂性加剧了获得精确结果的可能性,并经常导致分析失败。在这项研究中,已经评估了腰椎有限元分析中松质骨贡献的重要性。从计算机断层扫描图像生成腰部(L2-L3)的有限元模型。为了提供足够的稳定性,模拟了完全切除术,插入了单个笼子,并添加了后置器械。在两种不同的椎体模型中,应力分布模式包括松质骨和皮质壳,对于第一种模型,或全皮质骨,对于第二种模型,讨论了在各种载荷情况下的应力分布模式。本研究开发的有限元模型证明了类比模型与自然脊柱的解剖结构在结果之间存在差异,当有限元模型与自然模型完全相似时,将获得准确的结果。因此,在脊柱的有限元分析中,松质骨的存在似乎是必要的。

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