Sadeghi Hamid, Espino Daniel M, Shepherd Duncan E T
School of Mechanical Engineering, University of Birmingham, Birmingham, UK.
School of Mechanical Engineering, University of Birmingham, Birmingham, UK
Proc Inst Mech Eng H. 2015 Feb;229(2):115-23. doi: 10.1177/0954411915570372.
The aim of this study was to determine the variation in viscoelastic properties of femoral head bovine articular cartilage, on-bone, over five orders of magnitude of loading frequency. These frequencies ranged from below, up to and above healthy gait-relevant frequencies, using<1, 1-5 and 10 Hz, respectively. Dynamic mechanical analysis was used to measure storage and loss stiffness. A maximum compressive force of 36 N was applied through a chamfered-end, 5.2-mm-diameter, indenter. This induced a maximum nominal stress of 1.7 MPa. The ratio of storage to loss stiffness increased from near parity (2.5) at low frequencies to 11.4 at 10 Hz. This was the result of a significant logarithmic increase (p < 0.05) in storage stiffness with frequency, from 367 N/mm (0.001 Hz) up to 1460 N/mm (10 Hz). In contrast, the loss stiffness remained approximately constant. In conclusion, viscoelastic properties of articular cartilage measured at frequencies below those of gait activities are poor predictors of its relevant dynamic mechanical behaviour.
本研究的目的是确定在五个数量级的加载频率范围内,股骨头牛关节软骨在骨上的粘弹性特性变化。这些频率分别低于、达到和高于与健康步态相关的频率,分别使用<1、1 - 5和10 Hz。采用动态力学分析来测量储能刚度和损耗刚度。通过一个倒角端、直径5.2毫米的压头施加36 N的最大压缩力。这产生了1.7 MPa的最大名义应力。储能刚度与损耗刚度之比从低频时接近相等(2.5)增加到10 Hz时的11.4。这是储能刚度随频率显著对数增加(p < 0.05)的结果,从367 N/mm(0.001 Hz)增加到1460 N/mm(10 Hz)。相比之下,损耗刚度保持大致恒定。总之,在低于步态活动频率下测量的关节软骨粘弹性特性对其相关动态力学行为的预测能力较差。