Lawless Bernard M, Barnes Spencer C, Espino Daniel M, Shepherd Duncan E T
Department of Mechanical Engineering, School of Engineering, University of Birmingham, United Kingdom.
Department of Mechanical Engineering, School of Engineering, University of Birmingham, United Kingdom.
J Mech Behav Biomed Mater. 2016 Jun;59:519-526. doi: 10.1016/j.jmbbm.2016.03.011. Epub 2016 Mar 18.
The purpose of this study was to quantify the frequency dependent viscoelastic properties of two types of spinal posterior dynamic stabilisation devices. In air at 37°C, the viscoelastic properties of six BDyn 1 level, six BDyn 2 level posterior dynamic stabilisation devices (S14 Implants, Pessac, France) and its elastomeric components (polycarbonate urethane and silicone) were measured using Dynamic Mechanical Analysis. The viscoelastic properties were measured over the frequency range 0.01-30Hz. The BDyn devices and its components were viscoelastic throughout the frequency range tested. The mean storage stiffness and mean loss stiffness of the BDyn 1 level device, BDyn 2 level device, silicone component and polycarbonate urethane component all presented a logarithmic relationship with respect to frequency. The storage stiffness of the BDyn 1 level device ranged from 95.56N/mm to 119.29N/mm, while the BDyn 2 level storage stiffness ranged from 39.41N/mm to 42.82N/mm. BDyn 1 level device and BDyn 2 level device loss stiffness ranged from 10.72N/mm to 23.42N/mm and 4.26N/mm to 9.57N/mm, respectively. No resonant frequencies were recorded for the devices or its components. The elastic property of BDyn 1 level device is influenced by the PCU and silicone components, in the physiological frequency range. The viscoelastic properties calculated in this study may be compared to spinal devices and spinal structures.
本研究的目的是量化两种类型的脊柱后路动态稳定装置的频率依赖性粘弹性特性。在37°C的空气中,使用动态力学分析测量了六个BDyn 1级、六个BDyn 2级后路动态稳定装置(S14植入物,法国佩萨克)及其弹性体组件(聚碳酸酯聚氨酯和硅酮)的粘弹性特性。在0.01 - 30Hz的频率范围内测量粘弹性特性。在测试的整个频率范围内,BDyn装置及其组件均表现出粘弹性。BDyn 1级装置、BDyn 2级装置、硅酮组件和聚碳酸酯聚氨酯组件的平均储能刚度和平均损耗刚度均与频率呈对数关系。BDyn 1级装置的储能刚度范围为95.56N/mm至119.29N/mm,而BDyn 2级装置的储能刚度范围为39.41N/mm至42.82N/mm。BDyn 1级装置和BDyn 2级装置的损耗刚度分别为10.72N/mm至23.42N/mm和4.26N/mm至9.57N/mm。未记录到装置或其组件的共振频率。在生理频率范围内,BDyn 1级装置的弹性性能受聚碳酸酯聚氨酯和硅酮组件的影响。本研究中计算出的粘弹性特性可与脊柱装置和脊柱结构进行比较。