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Stabilization of the lumbar spine by spinal muscle forces producing compressive follower loads: 3-dimensional computational study

机译:脊髓肌力稳定脊柱脊柱产生压缩从动荷载量:三维计算研究

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Axial compressive loads whose direction changes along the spinal curvature (so called compressive follower loads (CFLs)) was postulated as a normal physiological load in the lumbar spine in the literature. Computational analyses were conducted in this study using finite element and optimization models of the spinal system incorporating 244 fascicles of back muscles. It was feasible to find optimum solutions for spinal muscle forces generating CFLs in the lumbar spine in 3-D postures of neutral standing, flexion 40 degrees, extension 10 degrees, axial rotation 10 degrees, or lateral bending 30 degrees. FE analyses demonstrated that the lumbar spine can be in a stable condition not under all CFL generating muscle forces but under those producing CFLs along a curve parallel to the spinal curvature located in the vicinity of the base spinal curve constructed by connecting the geometrical centers of the vertebral bodies. It was also possible to estimate the stable range of the relative location of such CFL curve to the base spinal curve. These results suggest that the lumbar spine in various 3-D postures can be stabilized by spinal muscles that generate CFLs in the spine, which at least in part supports the hypothesis of CFLs as a physiological load in the lumbar spine. (c) 2018 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:3004-3012, 2018.
机译:轴向压缩载荷,其方向沿脊柱曲率变化(因此称为压缩从动载荷载荷(CFL)被假定为文献中腰椎的正常生理载荷。在本研究中进行了计算分析,采用了包含244个背部肌肉的脊柱系统的有限元和优化模型。在中性站立,屈曲40度,延伸10度,轴向旋转10度或横向弯曲30度的3-D姿势中,为腰椎生成腰椎脊柱中CFL的最佳解决方案是可行的。 Fe分析证明腰椎可以处于稳定的条件下,而不是在所有CFL产生肌肉力下,而是在通过连接到基于基部脊柱附近的脊柱曲率的曲线上产生CFL的那些,通过连接地几何中心椎体。还可以估计这种CFL曲线的相对位置的稳定范围到基础脊柱曲线。这些结果表明,各种3-D姿势中的腰椎可以通过在脊柱中产生CFL的脊髓肌稳定,至少部分地支持CFL的假设作为腰椎的生理载荷。 (c)2018年骨科研究会。由Wiley期刊出版,Inc.J Orthop Res 36:3004-3012,2018。

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