Palissery V, Taylor M, Browne M
Bioengineering Sciences Research Group, School of Engineering Sciences, University of Southampton, Highfield, Southampton, SOI 7 1BJ, UK.
J Mater Sci Mater Med. 2004 Jan;15(1):61-7. doi: 10.1023/b:jmsm.0000010098.65572.3b.
Analog materials are used as a substitute to cancellous bone for in vitro biomechanical tests due to their uniformity, consistency in properties and availability. To date, only the static material properties of these materials have been assessed, although they are often used in fatigue tests. Cancellous bone exhibits complex material behavior when subjected to fatigue loads, including modulus degradation, accumulation of permanent strain and increasing hysteresis. Analog materials should exhibit similar fatigue behavior to cancellous bone if they are to be used in cyclic loading tests. In our study, a polymer foam (commercial name HEREX C70.55) has been studied for its static and fatigue behavior and compared with that of cancellous bone. In compression, the foam exhibited qualitatively similar mechanical behavior, but the degree of modulus degradation and accumulation of permanent strain was lower than expected for cancellous bone. In general, the tensile properties of the foam were greater than found in compression, the opposite to the mechanical behavior of cancellous bone. The methodology employed here could form the basis of selecting suitable analog materials for cancellous bone in the future.
由于其均匀性、性能一致性和可用性,模拟材料被用作松质骨的替代品用于体外生物力学测试。迄今为止,尽管这些材料经常用于疲劳测试,但仅对其静态材料性能进行了评估。松质骨在承受疲劳载荷时表现出复杂的材料行为,包括模量降解、永久应变积累和滞后增加。如果模拟材料要用于循环加载测试,它们应表现出与松质骨相似的疲劳行为。在我们的研究中,对一种聚合物泡沫(商品名HEREX C70.55)的静态和疲劳行为进行了研究,并与松质骨的行为进行了比较。在压缩过程中,泡沫表现出定性相似的力学行为,但模量降解程度和永久应变积累低于松质骨的预期。一般来说,泡沫的拉伸性能大于压缩时的性能,这与松质骨的力学行为相反。这里采用的方法可以为未来选择适合松质骨的模拟材料奠定基础。