Jurvelin J S, Buschmann M D, Hunziker E B
Department of Applied Physics, University of Kuopio, Kuopio, Finland.
Proc Inst Mech Eng H. 2003;217(3):215-9. doi: 10.1243/095441103765212712.
Articular cartilage exhibits anisotropic mechanical properties when subjected to tension. However, mechanical anisotropy of mature cartilage in compression is poorly known. In this study, both confined and unconfined compression tests of cylindrical cartilage discs, taken from the adult human patello-femoral groove and cut either perpendicular (normal disc) or parallel (tangential disc) to the articular surface, were utilized to determine possible anisotropy in Young's modulus, E, aggregate modulus, Ha, Poisson's ratio, v and hydraulic permeability, k, of articular cartilage. The results indicated that Ha was significantly higher in the direction parallel to the articular surface as compared with the direction perpendicular to the surface (Ha = 1.237 +/- 0.486 MPa versus Ha = 0.845 +/- 0.383 MPa, p = 0.017, n = 10). The values of Poisson's ratio were similar, 0.158 +/- 0.148 for normal discs compared with 0.180 +/- 0.046 for tangential discs. Analysis using the linear biphasic model revealed that the decrease of permeability during the offset compression of 0-20 per cent was higher (p = 0.015, n = 10) in normal (from 25.5 x 10(-15) to 1.8 x 10(-15) m4/N s) than in tangential (from 12.3 x 10(-15) to 1.3 x 10(-15) m4/N s) discs. Based on the results, it is concluded that the mechanical characteristics of adult femoral groove articular cartilage are anisotropic also during compression. Anisotropy during compression may be essential for normal cartilage function. This property has to be considered when developing advanced theoretical models for cartilage biomechanics.
关节软骨在承受张力时表现出各向异性的力学性能。然而,成熟软骨在压缩时的力学各向异性却鲜为人知。在本研究中,采用取自成人髌股关节沟的圆柱形软骨盘进行受限和非受限压缩试验,软骨盘分别垂直(正常盘)或平行(切线盘)于关节表面切割,以确定关节软骨在杨氏模量E、总模量Ha、泊松比ν和水力渗透率k方面可能存在的各向异性。结果表明,与垂直于关节表面的方向相比,平行于关节表面方向的Ha显著更高(Ha = 1.237 ± 0.486 MPa,而Ha = 0.845 ± 0.383 MPa,p = 0.017,n = 10)。泊松比的值相似,正常盘为0.158 ± 0.148,切线盘为0.180 ± 0.046。使用线性双相模型进行分析表明,在0 - 20%的偏置压缩过程中,正常盘(从25.5×10⁻¹⁵降至1.8×10⁻¹⁵ m⁴/N s)的渗透率下降幅度高于切线盘(从12.3×10⁻¹⁵降至1.3×10⁻¹⁵ m⁴/N s)(p = 0.015,n = 10)。基于这些结果,可以得出结论,成人股骨沟关节软骨在压缩过程中的力学特性也是各向异性的。压缩过程中的各向异性对于正常软骨功能可能至关重要。在开发软骨生物力学的先进理论模型时必须考虑这一特性。