Yuan T-Y, Jackson A R, Huang C-Y, Gu W Y
Department of Biomedical Engineering, Tissue Biomechanics Laboratory, University of Miami, Coral Gables, FL 33146, USA.
J Biomech Eng. 2009 Jul;131(7):074503. doi: 10.1115/1.3127254.
The intervertebral disk (IVD) is the largest avascular structure in the human body. Transport of small molecules in IVD is mainly through diffusion from the endplates and the peripheral blood vessels surrounding IVD. Studies have investigated the structure, chemical components, and water content in IVD, but to our knowledge no study has investigated the effect of mechanical loading on oxygen transport in IVD. The objective of this study was to determine the strain-dependent behavior of oxygen diffusivity in IVD tissue. A one-dimensional steady-state diffusion experiment was designed and performed to determine the oxygen diffusivity in bovine annulus fibrosus (AF). The oxygen diffusivity was calculated using equation derived from Fick's law. A total of 20 AF specimens (d=6 mm, h approximately 0.5 mm) from bovine coccygeal IVD were used to determine oxygen diffusivity at three levels of compressive strain. The average oxygen diffusivity (mean+/-SD) of bovine AF in the axial direction was 1.43+/-0.242 x 10(-5) cm(2)/s (n=20) at 4.68+/-1.67% compressive strain level, 1.05+/-0.282 x 10(-5) cm(2)/s (n=20) at 14.2+/-1.50% strain level, and 7.71+/-1.63 x 10(-6) cm(2)/s (n=20) at 23.7+/-1.34% strain level. There was a significant decrease in oxygen diffusivity with increasing level of compressive strain (ANOVA, p<0.05). Oxygen diffusivity of bovine AF in the axial direction has been determined. The mechanical loading has a significant effect on oxygen transport in IVD tissues. This study is important in understanding nutritional transport in IVD tissues and related disk degeneration.
椎间盘(IVD)是人体最大的无血管结构。小分子在IVD中的运输主要通过从终板和IVD周围的外周血管扩散。已有研究对IVD的结构、化学成分和含水量进行了调查,但据我们所知,尚无研究调查机械负荷对IVD中氧运输的影响。本研究的目的是确定IVD组织中氧扩散率的应变依赖性行为。设计并进行了一维稳态扩散实验,以测定牛纤维环(AF)中的氧扩散率。使用从菲克定律推导的方程计算氧扩散率。总共使用了20个来自牛尾椎IVD的AF标本(直径 = 6 mm,高度约0.5 mm)来测定三种压缩应变水平下的氧扩散率。在4.68±1.67%的压缩应变水平下,牛AF在轴向的平均氧扩散率(平均值±标准差)为1.43±0.242×10⁻⁵ cm²/s(n = 20),在14.2±1.50%应变水平下为1.05±0.282×10⁻⁵ cm²/s(n = 20),在23.7±1.34%应变水平下为7.71±1.63×10⁻⁶ cm²/s(n = 20)。随着压缩应变水平的增加,氧扩散率显著降低(方差分析,p < 0.05)。已测定牛AF在轴向的氧扩散率。机械负荷对IVD组织中的氧运输有显著影响。本研究对于理解IVD组织中的营养物质运输及相关椎间盘退变具有重要意义。