A comparison of healthy human and swine articular cartilage dynamic indentation mechanics

被引:24
|
作者
Ronken, S. [1 ]
Arnold, M. P. [2 ]
Ardura Garcia, H. [3 ]
Jeger, A. [4 ]
Daniels, A. U. [1 ]
Wirz, D. [1 ,2 ]
机构
[1] Biozentrum Pharmazentrum, Lab Biomech & Biocalorimetry LOB2, CH-4056 Basel, Switzerland
[2] Kantonsspital Bruderholz, Bruderholz, Switzerland
[3] Univ Iberoamer, Dept Engn, Biomed Engn Sect, Mexico City, DF, Mexico
[4] Univ Basel Fac Med, Inst Sport & Sport Sci, Basel, Switzerland
关键词
Dynamic modulus; Energy dissipation; Human articular cartilage; Swine cartilage; Mechanical properties; BIOMECHANICAL PROPERTIES; UNCONFINED COMPRESSION; CONFINED COMPRESSION; OSTEOARTHRITIS; STIFFNESS; COLLAGEN; TRANSPLANTATION; THICKNESS; MODULUS; REPAIR;
D O I
10.1007/s10237-011-0338-7
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Articular cartilage is a multicomponent, poroviscoelastic tissue with nonlinear mechanical properties vital to its function. A consequent goal of repair or replacement of injured cartilage is to achieve mechanical properties in the repair tissue similar to healthy native cartilage. Since fresh healthy human articular cartilage (HC) is not readily available, we tested whether swine cartilage (SC) could serve as a suitable substitute for mechanical comparisons. To a first approximation, cartilage tissue and surgical substitutes can be evaluated mechanically as viscoelastic materials. Stiffness measurements (dynamic modulus, loss angle) are vital to function and are also a non-destructive means of evaluation. Since viscoelastic material stiffness is strongly strain rate dependent, stiffness was tested under different loading conditions related to function. Stiffness of healthy HC and SC specimens was determined and compared using two non-destructive, mm-scale indentation test modes: fast impact and slow sinusoidal deformation. Deformation resistance (dynamic modulus) and energy handling (loss angle) were determined. For equivalent anatomic locations, there was no difference in dynamic modulus. However, the HC loss angle was similar to 35% lower in fast impact and similar to 12% higher in slow sinusoidal mode. Differences seem attributable to age (young SC, older HC) but also to species anatomy and biology. Test mode-related differences in human-swine loss angle support use of multiple function-related test modes. Keeping loss angle differences in mind, swine specimens could serve as a standard of comparison for mechanical evaluation of e.g. engineered cartilage or synthetic repair materials.
引用
收藏
页码:631 / 639
页数:9
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