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Effects of compressive loading on biomechanical properties of disc and peripheral tissue in a rat tail model.

机译:在大鼠尾巴模型中压缩载荷对椎间盘和周围组织的生物力学特性的影响。

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摘要

Intervertebral disc degeneration induced by mechanical compression is an important issue in spinal disorder research. In this study, the biomechanical aspect of the rat tail model was investigated. An external loading device equipped with super-elastic TiNi springs was developed to apply a precise load to the rat tail. By using this device, rat tail discs were subjected to compressive stress of 0.5 or 1.0 MPa for 2 weeks. Discs in the sham group received an attachment of the device but no loading. After the experimental period, first the intact tail with peripheral tissues (PT) such as tendon and skin and then the retrieved disc without PT were subjected to a uniaxial tension-compression test; biomechanical characteristics such as range of motion (ROM), neutral zone (NZ), and hysteresis loss (HL) were evaluated. Furthermore, the load-bearing contribution of PT in the intact tail was estimated by comparing the load-displacement curves obtained by the mechanical tests performed with and without PT. The experimental findings revealed that the continuous compressive stress induced reduction in disc thickness. The intact tail demonstrated decreases in ROM and NZ as well as increases in HL. On the other hand, the retrieved disc demonstrated increases in ROM, NZ, and HL. Further, a significant increase in the load-bearing contribution of PT was indicated. These findings suggest that the load-bearing capacity of the disc was seriously deteriorated by the application of compressive stress of 0.5 or 1.0 MPa for 2 weeks.
机译:机械压迫引起的椎间盘退变是脊柱疾病研究中的重要问题。在这项研究中,研究了大鼠尾巴模型的生物力学方面。开发了配备超弹性TiNi弹簧的外部加载设备,以对鼠尾施加精确的载荷。通过使用该装置,大鼠尾椎间盘受到0.5或1.0 MPa的压缩应力2周。伪装组中的光盘已收到设备的附件,但未加载。实验期过后,首先对完整的尾巴及其周围组织(PT)进行腱和皮肤的治疗,然后对取回的无PT的椎间盘进行单轴拉伸压缩试验;评估了生物力学特征,例如运动范围(ROM),中性区(NZ)和磁滞损耗(HL)。此外,通过比较通过使用和不使用PT进行的机械测试获得的载荷-位移曲线,估算了完整尾巴中PT的载荷贡献。实验结果表明,连续的压应力导致盘厚度减小。完整的尾巴显示出ROM和NZ的减少以及HL的增加。另一方面,取回的光盘显示ROM,NZ和HL增加。此外,还表明了PT的承载作用显着增加。这些发现表明,通过施加0.5或1.0 MPa的压缩应力持续2周,圆盘的承重能力严重下降。

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