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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Design, validation, and utilization of an articular cartilage impact instrument
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Design, validation, and utilization of an articular cartilage impact instrument

机译:设计,验证和利用关节软骨撞击器械

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摘要

This paper describes the development and use of an instrument mechanically to impact bovine articular cartilage and record the event using a piezoelectric accelerometer, as well as to carry out post-impact characterization of the tissue. Two levels of impact (low: 6 cm drop height, 18.4 N tup; high: 10 cm drop height, 27.8 N tup) were chosen such that the former did not show gross damage upon inspection, while the latter showed substantial gross damage. Peak stress, time to peak stress, and impact duration were taken from data recorded by the instrument. Three cartilage biomechanical properties (aggregate modulus, Poisson's ratio, and permeability) were acquired by creep indentation, and tissue morphology rated on a standardized scale was also determined. When subjected to the high level of impact, articular cartilage showed statistically significant (p < 0.05) differences in all three impact metrics and morphology. This high level of impact also resulted in a 37 per cent decrease in the aggregate modulus of the tissue. Lower drop heights resulted in more consistent impact curves, demonstrated less standard deviation, and did not change the biomechanical properties of the tissues. With the instrument and techniques described in this study, articular cartilage can be subjected to specific levels of impact in order to study injury biomechanics of the tissue at specific levels of mechanical damage.
机译:本文介绍了机械冲击牛关节软骨并使用压电加速度计记录事件并进行组织撞击后表征的仪器的开发和使用。选择两个级别的冲击(低:跌落高度6厘米,高18.4 N tup;高:跌落高度10厘米,27.8 N tup),这样前者在检查时不会显示出严重损坏,而后者则显示出严重的损坏。峰值应力,达到峰值应力的时间和冲击持续时间取自仪器记录的数据。通过蠕变压痕获得了三个软骨的生物力学特性(总模量,泊松比和渗透性),并且还确定了以标准化规模评定的组织形态。当受到高水平的冲击时,关节软骨在所有三个影响指标和形态上均显示出统计学上的显着差异(p <0.05)。这种高水平的冲击还导致组织的总模量降低了37%。较低的跌落高度会产生更一致的冲击曲线,表现出较小的标准偏差,并且不会改变组织的生物力学特性。使用本研究中描述的仪器和技术,可使关节软骨受到特定程度的撞击,以便研究特定程度的机械损伤下组织的损伤生物力学。

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