静态加载和循环加载如何影响猪髋臼纤维肌的机械特性?

IF 1.7 4区 医学 Q4 BIOPHYSICS
Andra Neptune, John G McMorran, Diane E Gregory
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引用次数: 0

摘要

本研究旨在评估长期周期性负荷对脊柱组织级机械特性的影响,特别是对纤维环(AF)的影响:从猪颈椎 C3-C4 和 C5-C6 水平获得功能脊柱单元(FSU)。经过 15 分钟 300N 轴向压缩预加载后,FSU 被分成 3 组:循环加载组在 0.35MPa 和 0.95MPa 之间循环两小时(n=8);静态加载组在 0.65MPa 下压缩两小时(n=10);对照组仅接受 300N 预加载(n=11)。加载完成后,切除 AF 样品,进行小梁内拉伸测试和小梁间 180° 剥离测试。通过小梁内测试分析的变量包括:趾端区域的应力和应变、初始破坏(屈服点)时的应力和应变、杨氏模量、极限应力和极限应力时的应变。通过层间测试评估的变量包括层间粘附强度、粘附强度变异性和刚度:分析表明,不同条件下没有明显差异,但有一种趋势(P=0.059)表明,与静态和对照条件相比,周期性加载组织的粘附强度变异性增加:讨论:本研究的主要发现是,长时间的轴向加载不会影响猪腹腔纤维膜内或膜间的机械性能。周期性加载样本粘附强度变异性增加的趋势可能预示着分层的潜在倾向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How Static and Cyclic Loading Affect the Mechanical Properties of the Porcine Annulus Fibrosus.

This study sought to evaluate the effects of prolonged cyclic loading on the tissue-level mechanical properties of the spinal annulus fibrosus. Functional spinal units (FSUs) were obtained from porcine cervical spines at the C3-C4 and C5-C6 levels. Following a 15-min preload of 300 N of axial compression, the FSUs were split into three groups: the cyclic loading group cycled between 0.35 MPa and 0.95 MPa for 2 h (n = 8); the static loading group was compressed at 0.65 MPa for 2 h (n = 10); and a control group which only underwent the 300 N preload (n = 11). Following loading, samples of the annulus were excised to perform intralamellar tensile testing and interlamellar 180 deg peel tests. Variables analyzed from the intralamellar test were stress and strain at the end of the toe region, stress and strain at initial failure (yield point), Young's modulus, ultimate stress, and strain at ultimate stress. Variables evaluated from the interlamellar tests were lamellar adhesion strength, adhesion strength variability, and stiffness. The analysis showed no significant differences between conditions on any measured variable; however, there was a trend (p = 0.059) that cyclically loaded tissues had increased adhesion strength variability compared to the static and control conditions. The main finding of this study is that long-duration axial loading did not impact the intra- or interlamellar mechanical properties of the porcine annulus. A trend of increased adhesion strength variability in cyclically loaded samples could indicate a potential predisposition of the annulus to delamination.

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来源期刊
CiteScore
3.40
自引率
5.90%
发文量
169
审稿时长
4-8 weeks
期刊介绍: Artificial Organs and Prostheses; Bioinstrumentation and Measurements; Bioheat Transfer; Biomaterials; Biomechanics; Bioprocess Engineering; Cellular Mechanics; Design and Control of Biological Systems; Physiological Systems.
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