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A model-based approach for estimation of changes in lumbar segmental kinematics associated with alterations in trunk muscle forces

机译:一种基于模型的方法,用于估算与躯干肌肉变化相关的腰部节段性运动学的变化

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摘要

The kinematics information from imaging, if combined with optimization-based biomechanical models, may provide a unique platform for personalized assessment of trunk muscle forces (TMFs). Such a method, however, is feasible only if differences in lumbar spine kinematics due to differences in TMFs can be captured by the current imaging techniques. A finite element model of the spine within an optimization procedure was used to estimate segmental kinematics of lumbar spine associated with five different sets of TMFs. Each set of TMFs was associated with a hypothetical trunk neuromuscular strategy that optimized one aspect of lower back biomechanics. For each set of TMFs, the segmental kinematics of lumbar spine was estimated for a single static trunk flexed posture involving, respectively, 40 degrees and 10 degrees of thoracic and pelvic rotations. Minimum changes in the angular and translational deformations of a motion segment with alterations in TMFs ranged from 0 degrees to 0.7 degrees and 0 mm to 0.04 mm, respectively. Maximum changes in the angular and translational deformations of a motion segment with alterations in TMFs ranged from 2.4 degrees to 7.6 degrees and 0.11 mm to 0.39 mm, respectively. The differences in kinematics of lumbar segments between each combination of two sets of TMFs in 97% of cases for angular deformation and 55% of cases for translational deformation were within the reported accuracy of current imaging techniques. Therefore, it might be possible to use image-based kinematics of lumbar segments along with computational modeling for personalized assessment of TMFs. (C) 2017 Elsevier Ltd. All rights reserved.
机译:来自成像的运动学信息,如果与基于优化的生物力学模型相结合,可以为主肌势(TMF)的个性化评估提供独特的平台。然而,这种方法仅是可行的,只有在由于当前的成像技术可以捕获由于TMFS的差异导致的腰椎运动学的差异。优化过程中脊柱内的有限元模型用于估算与五种不同TMFS相关的腰椎的节段性运动学。每组TMFS与假设的后备主神经肌肉策略有关,优化了下背生物力学的一个方面。对于每组TMFS,估算腰椎的节段性运动学,估计涉及40度,10度胸腔和盆腔旋转的单个静态脊柱弯曲姿势。运动段的角度和平移变形的最小变化,TMF中的改变范围为0度至0.7度,分别为0mm至0.04mm。 TMF中的动作段的角度和平移变形的最大变化分别从2.4度到7.6度和0.11mm至0.39mm的变化。在97%的角度变形病例中每种TMF的每组TMF的每组间患者与平移变形的55%的案例之间的差异在报告的当前成像技术的准确性范围内。因此,可能可以使用基于图像的腰部运动学以及用于个性化TMFS的个性化评估的计算建模。 (c)2017 Elsevier Ltd.保留所有权利。

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