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Anisotropic ion diffusivity in intervertebral disc: an electrical conductivity approach.

机译:椎间盘中的各向异性离子扩散率:一种电导率方法。

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STUDY DESIGN: Investigation of the transport behavior of ions in intervertebral disc using an electrical conductivity method. OBJECTIVES: To determine the electrical conductivity and ion diffusivity of nucleus pulposus and anulus fibrosus in 3 major directions (axial, circumferential, and radial). SUMMARY OF BACKGROUND DATA: Knowledge of diffusivity of small molecules is important for understanding nutrition supply in intervertebral disc and disc degeneration. However, little is known on the anisotropic behaviors of ion diffusivity and of electrical conductivity in intervertebral disc. METHODS: Electrical conductivity measurement was performed on 24 axial, circumferential, and radial anulus fibrosus specimens and 24 axial nucleus pulposus specimens from bovine coccygeal discs. The diffusivity of Na and Cl were estimated by the analysis of conductivity data. RESULTS: The electrical conductivity (mean +/- standard deviation; n = 24) of the bovine anulus fibrosus was 4.70 +/- 1.08 mS/cm in the axial, 2.86+/- 0.83 mS/cm in the radial, and 4.38 +/- 1.25 mS/cm in the circumferential direction. For nucleus pulposus, the electrical conductivity (mean +/- standard deviation; n = 24) was 8.95 +/- 0.89 mS/cm. The mean value for nucleus pulposus was significantly higher than that of anulus fibrosus (t test, P < 0.05). For anulus fibrosus, the conductivity in the radial direction was significantly lower than in axial or circumferential directions. Similar trends were found for both Na and Cl diffusivities. Both electrical conductivity and ion diffusivity were highly sensitive to water content. CONCLUSIONS: Electrical conductivity and ion diffusivity of anulus fibrosus are anisotropic.
机译:研究设计:使用电导率方法研究离子在椎间盘中的传输行为。目的:确定髓核和纤维环在三个主要方向(轴向,圆周和径向)的电导率和离子扩散率。背景数据摘要:了解小分子的扩散性对于理解椎间盘和椎间盘退变中的营养供应很重要。但是,对于椎间盘中离子扩散率和电导率的各向异性行为知之甚少。方法:对来自牛尾骨盘的24个轴向,周向和径向纤维环标本和24个轴向髓核标本进行了电导率测量。 Na和Cl的扩散率通过电导率数据分析来估算。结果:牛肛门纤维的电导率(平均值+/-标准偏差; n = 24)在轴向上为4.70 +/- 1.08 mS / cm,在径向上为2.86 +/- 0.83 mS / cm,并且为4.38 +在圆周方向上为1.25 mS / cm。对于髓核,电导率(平均值+/-标准偏差; n = 24)为8.95 +/- 0.89 mS / cm。髓核的平均值显着高于纤维环(t检验,P <0.05)。对于纤维环,径向的电导率明显低于轴向或周向的电导率。 Na和Cl的扩散率都发现了相似的趋势。电导率和离子扩散率均对水含量高度敏感。结论:纤维环的电导率和离子扩散率是各向异性的。

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