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Validation efforts and flexibilities of an eight-year-old human juvenile lumbar spine using a three‐dimensional finite element model

机译:使用三维有限元模型验证八岁的人类青少年腰椎的验证工作和灵活性

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摘要

The objective of this study was to develop a finite element model of the lumbar spinal column of an eight-year-old human spine and compare flexibilities under pure moments, adult, and pediatric loading with different material models. The geometry was extracted from computed tomography scans. The model included the cortical and cancellous bones, growth plates, ligaments, and discs. Adult, adolescent, and pediatric material models were used. Flexion (8 Nm), extension (6 Nm), lateral bending (6 Nm), and axial rotation (4 Nm) moments representing adult loads were applied to the three material models. Pediatric loading (0.5 Nm) was applied under these loadings to the eight-year-old spine using adult and pediatric material models. Flexibilities depended on spinal level, loading mode, and material model. Outputs incorporating the pediatric material model responded with increased flexibilities compared to the adult and adolescent material models, with one exception. This was true for the adult and pediatric loading conditions. While the sagittal and coronal bending responses were not considerably different between the adult and pediatric loadings, axial rotation responses were greater under the adult loading. This model may be used to determine intrinsic responses, such as stresses and strains, for improved characterizations of the juvenile spine behavior.
机译:这项研究的目的是建立一个八岁的人脊柱腰椎脊柱的有限元模型,并比较不同材料模型在纯力矩,成年和小儿负荷下的灵活性。从计算机断层扫描中提取几何形状。该模型包括皮质和松质骨,生长板,韧带和椎间盘。使用成人,青少年和儿童材料模型。将表示成人载荷的屈曲力(8 Nm),延伸力(6 Nm),侧向弯曲力(6 Nm)和轴向旋转力(4 Nm)应用于三个材料模型。使用成人和儿童材料模型,将儿童负荷(0.5 Nm)施加到八岁的脊柱上。灵活性取决于脊椎水平,负荷模式和材料模型。与成人和青少年材料模型相比,合并了儿童材料模型的输出具有更高的灵活性,但有一个例外。对于成人和儿童的负荷情况,这是正确的。虽然成人和儿童负荷之间的矢状和冠状弯曲反应没有显着差异,但成人负荷下轴向旋转反应较大。该模型可用于确定内在响应,例如应力和应变,以改善对青少年脊柱行为的表征。

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