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新型人体椎间盘应变模板,用于量化人群中的区域三维应变,并与有限元模型预测的内部应变进行比较。

Novel human intervertebral disc strain template to quantify regional three-dimensional strains in a population and compare to internal strains predicted by a finite element model.

作者信息

Showalter Brent L, DeLucca John F, Peloquin John M, Cortes Daniel H, Yoder Jonathon H, Jacobs Nathan T, Wright Alexander C, Gee James C, Vresilovic Edward J, Elliott Dawn M

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania, 19104.

Department of Biomedical Engineering, University of Delaware, Newark, Delaware, 19716.

出版信息

J Orthop Res. 2016 Jul;34(7):1264-73. doi: 10.1002/jor.23137. Epub 2016 Jan 8.

Abstract

Tissue strain is an important indicator of mechanical function, but is difficult to noninvasively measure in the intervertebral disc. The objective of this study was to generate a disc strain template, a 3D average of disc strain, of a group of human L4-L5 discs loaded in axial compression. To do so, magnetic resonance images of uncompressed discs were used to create an average disc shape. Next, the strain tensors were calculated pixel-wise by using a previously developed registration algorithm. Individual disc strain tensor components were then transformed to the template space and averaged to create the disc strain template. The strain template reduced individual variability while highlighting group trends. For example, higher axial and circumferential strains were present in the lateral and posterolateral regions of the disc, which may lead to annular tears. This quantification of group-level trends in local 3D strain is a significant step forward in the study of disc biomechanics. These trends were compared to a finite element model that had been previously validated against the disc-level mechanical response. Depending on the strain component, 81-99% of the regions within the finite element model had calculated strains within one standard deviation of the template strain results. The template creation technique provides a new measurement technique useful for a wide range of studies, including more complex loading conditions, the effect of disc pathologies and degeneration, damage mechanisms, and design and evaluation of treatments. © 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:1264-1273, 2016.

摘要

组织应变是机械功能的一个重要指标,但在椎间盘内难以进行无创测量。本研究的目的是生成一组在轴向压缩载荷下的人体L4 - L5椎间盘的椎间盘应变模板,即椎间盘应变的三维平均值。为此,利用未受压椎间盘的磁共振图像创建平均椎间盘形状。接下来,通过使用先前开发的配准算法逐像素计算应变张量。然后将各个椎间盘应变张量分量转换到模板空间并进行平均,以创建椎间盘应变模板。应变模板减少了个体差异,同时突出了群体趋势。例如,椎间盘的外侧和后外侧区域存在较高的轴向和周向应变,这可能导致纤维环撕裂。这种对局部三维应变中群体水平趋势的量化是椎间盘生物力学研究向前迈出的重要一步。将这些趋势与一个先前已针对椎间盘水平力学响应进行验证的有限元模型进行了比较。根据应变分量,有限元模型内81% - 99%的区域计算出的应变在模板应变结果的一个标准差范围内。模板创建技术提供了一种新的测量技术,可用于广泛的研究,包括更复杂的加载条件、椎间盘病变和退变的影响、损伤机制以及治疗方法的设计和评估。© 2015骨科研究协会。由威利期刊公司出版。《矫形外科学研究》34:1264 - 1273, 2016年。

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