首页> 外文期刊>Journal of Biomechanics >LIMITATIONS OF THE STANDARD LINEAR SOLID MODEL OF INTERVERTEBRAL DISCS SUBJECT TO PROLONGED LOADING AND LOW-FREQUENCY VIBRATION IN AXIAL COMPRESSION
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LIMITATIONS OF THE STANDARD LINEAR SOLID MODEL OF INTERVERTEBRAL DISCS SUBJECT TO PROLONGED LOADING AND LOW-FREQUENCY VIBRATION IN AXIAL COMPRESSION

机译:椎间盘的标准线性固体模型在轴向压缩中承受长时间载荷和低频振动的局限性

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The purpose of this study was to answer the following questions: (1) Can the standard linear solid model for viscoelastic material simulate the influence of disc level and degeneration on the ability of a disc to withstand prolonged loading and low-frequency vibration? (2) How well does the SLS model explain the relationship between the ability of a disc to resist prolonged loading and its ability to resist dynamic loads and dissipate energy when subjected to low-frequency vibration? Responses of human thoracic and lumbar discs were measured in axial compression under a constant load, and for cyclic deformations at three frequencies. Parameters of the SLS model for each disc were determined by a least-squares fit to the experimental creep response. The model was subsequently used to predict the disc's response to cyclic deformations. The SLS model was able to qualitatively simulate the effects of disc level and degeneration on the ability of an intervertebral disc to resist both prolonged loading and low-frequency vibration. However, the model underestimated the stress relaxation, dynamic modulus and hysteresis of thoracic and lumbar discs subjected to low-frequency vibration. The SLS model was unable to explain the relationship between the ability of a disc to resist prolonged loading and its ability to resist dynamic loads and dissipate energy when subjected to low-frequency vibration. Although in the lumbar discs the steady-state predictions of the SLS model were significantly correlated to the experimental response, the strength of model predictions decreased with increasing frequency, particularly for hysteresis. [References: 23]
机译:这项研究的目的是回答以下问题:(1)粘弹性材料的标准线性实体模型是否可以模拟圆盘水平和退化对圆盘承受长期载荷和低频振动的能力的影响? (2)SLS模型如何很好地解释碟片在承受低频振动时抵抗长时间载荷的能力与抵抗动态载荷和耗散能量的能力之间的关系?在恒定载荷下,在轴向压缩下测量人的胸椎和腰间盘的响应,并在三个频率下测量其周期性变形。通过与实验蠕变响应的最小二乘拟合确定每个圆盘的SLS模型的参数。该模型随后用于预测圆盘对周期性变形的响应。 SLS模型能够定性地模拟椎间盘水平和退化对椎间盘抵抗长时间负荷和低频振动的能力的影响。但是,该模型低估了受到低频振动的胸椎和腰椎间盘的应力松弛,动态模量和滞后。 SLS模型无法解释光盘承受长时间振动的能力与承受低频振动时承受动态载荷和耗散能量的能力之间的关系。尽管在腰椎间盘中,SLS模型的稳态预测与实验响应显着相关,但是模型预测的强度会随着频率的增加而降低,特别是对于滞后而言。 [参考:23]

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