首页> 外文会议>ASME international mechanical engineering congress and exposition >INVESTIGATION OF LUMBOSACRAL SPINE ANATOMICAL VARIATION EFFECT ON LOAD-PARTITIONING UNDER FOLLOWER LOAD USING GEOMETRICALLY PERSONALIZED FINITE ELEMENT MODEL
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INVESTIGATION OF LUMBOSACRAL SPINE ANATOMICAL VARIATION EFFECT ON LOAD-PARTITIONING UNDER FOLLOWER LOAD USING GEOMETRICALLY PERSONALIZED FINITE ELEMENT MODEL

机译:用几何个性化有限元模型研究腰AC脊椎解剖变化对后续载荷作用下的载荷分配的影响

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The spinal load sharing and mechanical stresses developed in the spine segments due to mechanical loads are dependent on the unique spinal anatomy (geometry and posture). Variation in spinal curvature alters the load sharing of the lumbar spine as well as the stiffness and stability of the passive tissues. In this paper, effects of lumbar spine curvature variation on spinal load sharing under compressive Follower Load (FL) are investigated numerically. 3D nonlinear Finite Element (FE) models of three ligamentous lumbosacral spines are developed based on personalized geometries; hypo-lordotic (Hypo-L), normal (Normal-L) and hyper-lordotic (Hyper-L) cases. Analysis of each model is performed under Follower Load and developed stress in the discs and forces in the collagen fibers are investigated. Stresses on the discs vary in magnitude and distribution depending on the degree of lordosis. A straight hypo-lordotic spine shows stresses more equally distributed among discs while a highly curved hyper-lordotic spine has stresses concentrated at lower discs. Stresses are uniformly distributed in each disc for Hypo-L case while they are concentrated posteriorly for Hyper-L case. Also, the maximum force in collagen fibers is developed in the Hyper-L case. These differences might be clinically significant related to back pain.
机译:由于机械载荷而在脊柱节段中产生的脊柱载荷分担和机械应力取决于独特的脊柱解剖结构(几何形状和姿势)。脊柱曲率的变化会改变腰椎的负荷分担以及被动组织的刚度和稳定性。本文通过数值研究腰椎曲率变化对压迫跟随力(FL)下脊柱负荷分担的影响。根据个性化的几何形状,开发了三个腰s腰椎棘的3D非线性有限元(FE)模型;亚低级(Hypo-L),正常(Normal-L)和高级(Hyper-L)病例。在追随者载荷下进行每个模型的分析,并研究椎间盘中产生的应力和胶原纤维中的力。椎间盘上的应力的大小和分布会根据脊柱前凸的程度而变化。笔直的低胸椎脊柱显示应力在椎间盘之间更均匀地分布,而高度弯曲的高胸椎脊柱的应力集中在较低的椎间盘上。对于Hypo-L病例,应力在每个椎间盘中均匀分布,而对于Hyper-L病例,应力集中在后部。同样,在Hyper-L情况下,会产生胶原纤维的最大作用力。这些差异在临床上可能与背痛有关。

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