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腰椎肌肉骨骼模型中的个体特异性对齐和质量分布

Subject-Specific Alignment and Mass Distribution in Musculoskeletal Models of the Lumbar Spine.

作者信息

Fasser Marie-Rosa, Jokeit Moritz, Kalthoff Mirjam, Gomez Romero David A, Trache Tudor, Snedeker Jess G, Farshad Mazda, Widmer Jonas

机构信息

Department of Orthopaedics, Balgrist University Hospital, Zurich, Switzerland.

Institute for Biomechanics, ETH Zurich, Zurich, Switzerland.

出版信息

Front Bioeng Biotechnol. 2021 Aug 31;9:721042. doi: 10.3389/fbioe.2021.721042. eCollection 2021.

Abstract

Musculoskeletal modeling is a well-established method in spine biomechanics and generally employed for investigations concerning both the healthy and the pathological spine. It commonly involves inverse kinematics and optimization of muscle activity and provides detailed insight into joint loading. The aim of the present work was to develop and validate a procedure for the automatized generation of semi-subject-specific multi-rigid body models with an articulated lumbar spine. Individualization of the models was achieved with a novel approach incorporating information from annotated EOS images. The size and alignment of bony structures, as well as specific body weight distribution along the spine segments, were accurately reproduced in the 3D models. To ensure the pipeline's robustness, models based on 145 EOS images of subjects with various weight distributions and spinopelvic parameters were generated. For validation, we performed kinematics-dependent and segment-dependent comparisons of the average joint loads obtained for our cohort with the outcome of various published and studies. Overall, our results agreed well with literature data. The here described method is a promising tool for studying a variety of clinical questions, ranging from the evaluation of the effects of alignment variation on joint loading to the assessment of possible pathomechanisms involved in adjacent segment disease.

摘要

肌肉骨骼建模是脊柱生物力学中一种成熟的方法,通常用于对健康脊柱和病理脊柱进行研究。它通常涉及逆运动学和肌肉活动优化,并能深入了解关节负荷情况。本研究的目的是开发并验证一种程序,用于自动生成具有铰接式腰椎的半个体化多刚体模型。通过一种结合注释的EOS图像信息的新方法实现了模型的个体化。在三维模型中准确再现了骨骼结构的大小和排列,以及沿脊柱节段的特定体重分布。为确保该流程的稳健性,基于145张具有不同体重分布和脊柱骨盆参数的受试者的EOS图像生成了模型。为进行验证,我们将我们队列获得的平均关节负荷与各种已发表研究的结果进行了运动学相关和节段相关的比较。总体而言,我们的结果与文献数据吻合良好。本文所述方法是研究各种临床问题的一个有前景的工具,这些问题涵盖从评估对线变化对关节负荷的影响到评估相邻节段疾病可能涉及的病理机制等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f929/8438119/63b4f0e2377a/fbioe-09-721042-g001.jpg

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