基于超声共振谱的坐骨神经离断术后兔皮质骨细观力学特性测量
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1.北京航空航天大学生物与医学工程学院;2.北京友谊医院放射科

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R 318. 0l???

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MEASUREMENT OF MESO-MECHANICAL PROPERTIES OF RABBIT CORTICAL BONE AFTER SCIATIC NEURECTOMY BASED ON RESONANT ULTRASOUND SPECTROSCOPY
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1.School of Biological Science and Medical Engineering, Beihang University;2.Department of Radiology, Beijing Friendship Hospital

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    摘要:

    目的 结合动物造模和超声共振谱测量技术,探索了坐骨神经离断对皮质骨细观力学特性的影响。方法 共5只新西兰大白兔进行单侧坐骨神经离断手术,并于术后第4周分别获取了术侧和正常侧胫骨皮质骨样本;在横观各向同性条件下,采用非规则超声共振谱技术获取骨样本的多个弹性常数(C11、C12、C13、C33和C44)、工程力学参数和各向异性比,并采用配对t检验方法评估两侧皮质骨力学特性的差异。结果 与正常侧相比较,术侧皮质骨组织在不同方向上的弹性常数(C11、C12、C13和C33)均呈下降趋势,下降幅度为8.49%~32.23%,轴向杨氏模量(E3)和泊松比(v31)分别减小5.85%和24.07%,但各向异性性质无明显变化。结论 采用坐骨神经离断方式进行皮质骨废用造模方法可行,该方法可以显著改变皮质骨的细观力学特性,弹性常数可以更全面的反映皮质骨力学性质的变化。

    Abstract:

    Objective The effect of sciatic neurectomy (SN) on the meso-mechanical properties of cortical bone was explored by combining animal modeling and resonant ultrasound spectroscopy. Methods A total of five New Zealand White rabbits underwent unilateral SN and cortical bone specimens were obtained from the tibias on the operated and normal sides at 4 weeks post-SN; multiple elastic constants (C11, C12, C13, C33, and C44), engineering mechanical parameters, and anisotropy ratios of the bone specimens were acquired using irregular resonant ultrasound spectroscopy under assumptions of transverse anisotropy and the paired t-test was used to assess the differences in the mechanical properties of cortical bone between the two sides. Results Compared with the normal side, the elastic constants in different directions (C11, C12, C13, and C33) of the cortical bone on the operated side showed a decreasing trend, ranging from 8.49% to 32.23%; The axial Young's modulus (E3) and Poisson's ratio (v31) were reduced by 5.85% and 24.07%, respectively, but there was no significant change in the anisotropic properties. Conclusion The method of cortical bone disuse modeling through SN is feasible, which can significantly change the meso-mechanical properties of cortical bone, and the elastic constants can more comprehensively reflect the changes in the mechanical properties of cortical bone.

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  • 收稿日期:2024-11-29
  • 最后修改日期:2025-01-09
  • 录用日期:2025-01-13
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