首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Degeneration Affects Three-Dimensional Strains in Human Menisci: In situ MRI Acquisition Combined With Image Registration
【24h】

Degeneration Affects Three-Dimensional Strains in Human Menisci: In situ MRI Acquisition Combined With Image Registration

机译:变性影响人体肿瘤中的三维菌株:原位MRI收购联合图像登记

获取原文
           

摘要

Degenerative changes of menisci contribute to the evolution of osteoarthritis in the knee joint, because they alter the load transmission to the adjacent articular cartilage. Identifying alterations in the strain response of meniscal tissue under compression that are associated with progressive degeneration may uncover links between biomechanical function and meniscal degeneration. Therefore, the goal of this study was to investigate how degeneration effects the three-dimensional (3D; axial, circumferential, radial) strain in different anatomical regions of human menisci (anterior and posterior root attachment; anterior and posterior horn; pars intermedia) under simulated compression. Magnetic resonance imaging (MRI) was performed to acquire image sequences of 12 mild and 12 severe degenerated knee joints under unloaded and loaded (25%, 50% and 100% body weight (BW)) conditions using a customized loading device. Medial and lateral menisci as well as their root attachments were manually segmented. Intensity-based rigid and non-rigid image registration were performed to obtain 3D deformation fields under the respective load levels. Finally, the 3D voxels were transformed into hexahedral finite-element models and direction-dependent local strain distributions were determined. The axial compressive strain in menisci and meniscal root attachments significantly increased on average from 3.1% in mild degenerated joints to 7.3% in severe degenerated knees at 100% BW (p ≤ 0.021). In severe degenerated knee joints, the menisci displayed a mean circumferential strain of 0.45% (mild: 0.35%) and a mean radial strain of 0.41% (mild: 0.37%) at a load level of 100% BW. No significant changes were observed in the circumferential or radial directions between mild and severe degenerated knee joints for all load levels (p 0.05). In conclusion, high-resolution MRI was successfully combined with image registration to investigate spatial strain distributions of the meniscus and its attachments in response to compression. The results of the current study highlight that the compressive integrity of the meniscus decreases with progressing tissue degeneration, whereas the tensile properties are maintained.
机译:Menisci的退行性变化有助于膝关节中骨关节炎的演变,因为它们改变了邻近关节软骨的负荷传递。在压缩下识别与进步变性相关的压缩下的混凝剂组织的应变响应的变化可能揭示生物力学功能和半月板变性之间的链接。因此,本研究的目的是调查退化的不同解剖区域在人肿瘤(前后根附近的不同解剖区域中的变性(轴向,周向,径向)菌株;前部和后角;介乎介质)模拟压缩。进行磁共振成像(MRI)以使用定制装载装置在卸载和装载和装载(25%,50%和100%体重(BW))条件下的12mLd和12个严重退化的膝关节的图像序列。手动细分内侧和侧腹部肿瘤以及其根附件。基于强度的刚性和非刚性图像配准,以获得各自的负载水平下的3D变形场。最后,将3D体素转化为六面体有限元模型,并确定方向依赖的局部应变分布。 Menisci和半月板根附着的轴向压缩菌株平均从温和退化的关节中的3.1%显着增加至100%BW的严重退化膝关节中的7.3%(P≤0.021)。在严重的退化膝关节中,MENISCI显示出0.45%(温和:0.35%)的平均周向菌株,其平均径向应变为0.41%(温和:0.37%),在100%BW的载荷水平下。在适用于所有载荷水平的温和和严重退化的膝关节之间的圆周或径向方向上没有观察到显着变化(P> 0.05)。总之,高分辨率MRI与图像登记成功结合,以研究弯月面的空间应变分布及其附件以响应压缩。目前研究的结果强调,弯月面的压缩完整性随着组织变性的进展降低而降低,而保持性质保持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号