首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Relationships between viscoelastic properties of lumbar intervertebral disc and degeneration grade assessed by MRI.
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Relationships between viscoelastic properties of lumbar intervertebral disc and degeneration grade assessed by MRI.

机译:腰椎间盘粘弹性与变性程度之间的关系。

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Biomechanical modelling of the spine is of high clinical significance, either for implant evaluation or for surgery planning. Nevertheless, assessment of patient specific material properties still remains an issue, especially the viscoelastic characteristics of lumbar intervertebral discs (IVD). MRI, a dedicated system for IVD examination, provides a signal that is correlated with the biochemical content of the disc. Since IVD composition and its mechanical properties are related, the objectives of this study were to investigate how MRI could inform about viscoelastic properties of lumbar discs, determined from creep experiments. For that purpose, an in vitro protocol was carried out regarding 14 human L1-L2 IVDs; each unfrozen specimen was imaged using MRI and biomechanically tested with 10 min creep under 400 N load. Three-parameter rheologic models were used to fit the experimental curves. Additionally, geometry was obtained and degeneration was assessed using both MRI grading and physical inspection (destructive analysis). Mean creep displacement was 0.19 mm after 10 min. MRI scaling categorized elastic modulus and viscosity of the IVDs in 2 clearly distinct groups without overlaps according to degeneration: mean values for elastic modulus were 12.9 MPa and 5.7 MPa, respectively for mildly and severely degenerated IVDs; mean values for viscosity were 5.7 GPa s and 2.2 GPa s, respectively for mildly and severely degenerated IVDs. Classification derived from physical inspection did not reveal a clear discrimination. MRI could hence provide a quantification of IVDs viscoelastic properties, leading to in vivo direct estimation of material characteristics necessary for patient specific modelling.
机译:脊柱的生物力学建模对于植入物评估或手术计划具有很高的临床意义。然而,评估患者特定的材料特性仍然是一个问题,尤其是腰椎间盘(IVD)的粘弹性特征。 MRI是用于IVD检查的专用系统,可提供与椎间盘生化成分相关的信号。由于IVD的成分及其力学性能是相关的,因此本研究的目的是研究MRI如何通过蠕变实验确定腰椎间盘的粘弹性。为此目的,针对14个人L1-L2 IVD进行了体外实验。使用MRI对每个未冻结的样品进行成像,并在400 N的载荷下进行10分钟蠕变的生物力学测试。使用三参数流变模型拟合实验曲线。此外,获得了几何形状,并使用MRI分级和物理检查(破坏性分析)评估了变性。 10分钟后,平均蠕变位移为0.19 mm。 MRI缩放将IVD的弹性模量和粘度按退化情况分类为2个明显不同的组,且没有重叠:轻度和严重退化的IVD的弹性模量平均值分别为12.9 MPa和5.7 MPa;对于轻度和严重变性的IVD,粘度的平均值分别为5.7 GPa s和2.2 GPa s。物理检查得出的分类没有显示明显的区别。因此,MRI可以对IVD的粘弹性进行量化,从而可以在体内直接估算出患者特定模型所需的材料特性。

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