兔脊柱节段压缩的生物力学研究
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国家自然科学基金项目(11472185,11772214)


Biomechanical Study on Segmental Compression of Rabbit Spine
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    摘要:

    目的 通过进行动物脊柱的轴向压缩实验,探究脊柱损伤的病理机制,为脊柱损伤的治疗、预防和研究提供参考。方法 通过轴向压缩实验对兔脊柱节段进行生物力学研究,同时利用数字图像相关(digital image correlation, DIC)技术记录压缩过程并进行应变分析。结果 沿脊柱从上向下,节段的极限载荷和承载能力均不断增加;相对应的单椎体的平均极限载荷明显大于节段;椎间盘在水平和竖直方向的应变明显大于上下椎体。结论 在脊柱承受压应力的过程中,应重点考虑椎间盘的承载能力,脊柱节段的损伤主要表现为椎间盘异常。研究结果有助于脊柱压缩性骨折的预防和治疗,以及相关治疗器械和辅助器械的设计。

    Abstract:

    Objective To investigate the pathological mechanism of spinal injury by axial compression experiment on animal spine, so as to provide references for the treatment, prevention and research of spinal injury. Methods The biomechanical study of rabbit spine segments was performed by axial segment compression experiment. The compression process was recorded and strain analysis was performed by digital image correlation (DIC) technology. Results From the top to the bottom of the spine, the ultimate load and bearing capacity of the segment increased continuously; the average limit load of the corresponding single vertebral body was significantly larger than the segment; the strain of the intervertebral disc in the horizontal and vertical directions was significantly larger than that of the upper and lower vertebral bodies. Conclusions In the process of spine compression, the bearing capacity of the intervertebral disc should be taken into account and the injury of spinal segments is mainly manifested as abnormality of the intervertebral disc. The research findings contribute to the prevention and treatment of spinal compression fractures, as well as the design of related therapeutic instruments and assistive devices.

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张玉文,郭媛,张绪树,韩世冰,陈维毅.兔脊柱节段压缩的生物力学研究[J].医用生物力学,2020,35(3):325-330

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  • 收稿日期:2019-01-21
  • 最后修改日期:2019-03-15
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  • 在线发布日期: 2020-06-24
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