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一种新型可注射水凝胶髓核替代物在恢复周期性疲劳猪椎间盘力学性能中的应用。

The use of a novel injectable hydrogel nucleus pulposus replacement in restoring the mechanical properties of cyclically fatigued porcine intervertebral discs.

作者信息

Balkovec Christian, Vernengo Jennifer, McGill Stuart M

机构信息

University of Waterloo, Waterloo, Ontario, Canada.

出版信息

J Biomech Eng. 2013 Jun;135(6):61004-5. doi: 10.1115/1.4024285.

Abstract

Repeated flexion and extension of an intervertebral disc has been shown to affect the angular stiffness of spinal motion segments and is a barometer of the mechanical integrity of the disc. A degenerated disc that loses height causes higher levels of stress on the annulus and facet joints which may increase its level of degeneration; restoring disc height may therefore help to slow this degenerative cascade. Previous research has indicated that nucleus implants have the potential to improve the mechanical characteristics of a disc and an implant that is custom-fit to the intervertebral disc yields the best results with respect to decreasing annular degeneration. Two groups of porcine spinal motion segments were exposed to repeated flexion and extension. One group was then injected with a novel hydrogel while the other group was used as a control. Both groups were then exposed to another round of cyclic flexion and extension to examine the effect that the hydrogel had on restoring the original mechanics to the motion segments. Angular stiffness was restored to the group which received the hydrogel injection in addition to a significant improvement in specimen height. No significant changes were seen in the group which did not receive an injection. It would appear that use of the novel injectable hydrogel is able to restore angular stiffness to cyclically fatigued spinal motion segments. It is also important to note that continued repetition of the event causing specimen fatigue after performing hydrogel injection will result in an eventual return to the same fatigued state.

摘要

已证实,椎间盘反复屈伸会影响脊柱运动节段的角刚度,是椎间盘机械完整性的晴雨表。椎间盘退变导致高度降低,会使纤维环和小关节承受更高水平的应力,这可能会加剧其退变程度;因此,恢复椎间盘高度可能有助于减缓这种退变级联反应。先前的研究表明,髓核植入物有潜力改善椎间盘的力学特性,且定制适配椎间盘的植入物在减少纤维环退变方面效果最佳。两组猪脊柱运动节段接受反复屈伸。一组随后注射一种新型水凝胶,另一组作为对照。然后两组均接受另一轮周期性屈伸,以研究水凝胶对恢复运动节段原始力学性能的影响。接受水凝胶注射的组恢复了角刚度,标本高度也有显著改善。未接受注射的组未见明显变化。看来,使用这种新型可注射水凝胶能够恢复周期性疲劳的脊柱运动节段的角刚度。还需注意的是,在进行水凝胶注射后,持续重复导致标本疲劳的事件最终会使其回到相同的疲劳状态。

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