首页> 外文会议>46th annual rocky mountain bioengineering symposium amp; 46th international ISA biomedical sciences instrumentation symposium 2009 >DEVELOPMENT OF A LUMBOSACRAL SPINE FINITE ELEMENT MODEL USING INTACT AND SURGICALLY ALTERED SPINES
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DEVELOPMENT OF A LUMBOSACRAL SPINE FINITE ELEMENT MODEL USING INTACT AND SURGICALLY ALTERED SPINES

机译:利用完整的外科手术脊椎开发腰椎脊柱有限元模型

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摘要

A previously developed three-dimensional lumbosacral spine finite element (FE) model was extended and validated using both in vitro intact and surgically altered data. Four cadaveric lumbosacral spine segments (L3-Sacrum) were tested under flexion-extension up to 8.0 Nm. Moment rotation responses were obtained using a motion analysis system. A L3-S1 FE model was developed by adding L3 vertebra, L3-L4 interverterbral disc, and corresponding ligaments into the previous L4-S1 FE model. The predicted moment rotation responses in flexion from both intact and surgically altered models were in good agreement with in vitro data whereas minor difference was found in the extension response. This work serves as a pilot study to use the current FE model to fully match more in vitro data including lateral bending, axial rotation, and compression-flexion.
机译:先前开发的三维腰s部脊柱有限元(FE)模型得到了扩展,并使用了体外完整数据和手术改变后的数据进行了验证。在高达8.0 Nm的屈伸下测试了四个尸体腰s部脊柱节段(L3-Sacrum)。使用运动分析系统获得力矩旋转响应。通过将L3椎骨,L3-L4椎间盘和相应的韧带添加到以前的L4-S1 FE模型中来开发L3-S1 FE模型。来自完整模型和手术改变模型的弯曲中预期的力矩旋转响应与体外数据高度吻合,而伸展响应中发现较小的差异。这项工作是一项试点研究,目的是使用当前的有限元模型完全匹配更多的体外数据,包括横向弯曲,轴向旋转和压缩屈曲。

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