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首页> 外文期刊>Journal of Biomechanics >The equivalence of multi-axis spine systems: Recommended stiffness limits using a standardized testing protocol
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The equivalence of multi-axis spine systems: Recommended stiffness limits using a standardized testing protocol

机译:多轴脊柱系统的等价性:使用标准化测试协议的推荐刚度限制

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摘要

The complexity of multi-axis spine testing often makes it challenging to compare results from different studies. The aim of this work was to develop and implement a standardized testing protocol across three six-axis spine systems, compare them, and provide stiffness and phase angle limits against which other test systems can be compared. Standardized synthetic lumbar specimens (n = 5), comprising three springs embedded in polymer at each end, were tested on each system using pure moments in flexion-extension, lateral bending, and axial rotation. Tests were performed using sine and triangle waves with an amplitude of 8 Nm, a frequency of 0.1 Hz, and with axial preloads of 0 and 500 N. The stiffness, phase angle, and R-2 value of the moment against rotation in the principal axis were calculated at the center of each specimen. The tracking error was adopted as a measure of each test system to minimize non principal loads, defined as the root mean squared difference between actual and target loads. All three test systems demonstrated similar stiffnesses, with small (14%) but significant differences in 4 of 12 tests. More variability was observed in the phase angle between the principal axis moment and rotation, with significant differences in 10 of 12 tests. Stiffness and phase angle limits were calculated based on the 95% confidence intervals from all three systems. These recommendations can be used with the standard specimen and testing protocol by other research institutions to ensure equivalence of different spine systems, increasing the ability to compare in vitro spine studies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多轴脊柱测试的复杂性往往使其具有挑战性,以比较不同研究的结果。这项工作的目的是在三个六轴脊柱系统中开发和实施标准化的测试协议,比较它们,并提供可以比较其他测试系统的刚度和相位角限制。包括在每个端部嵌入聚合物中的三个弹簧的标准化合成腰(n = 5)在每个系统上使用柔性的瞬间在弯曲延伸,横向弯曲和轴向旋转中进行测试。使用具有8nm的幅度的正弦波和三角形波进行测试,频率为0.1Hz,轴向预载荷为0和500 n。刚度,相位角和矩阵中的刚度,相位角和r-2值抵抗校长中的旋转轴在每个样本的中心计算。采用跟踪误差作为每个测试系统的量度,以最小化非主负载,定义为实际和目标负载之间的根均平方差。所有三种测试系统都显示出类似的刚度,小(& 14%),但12个测试中的4个差异显着差异。在主轴运动矩和旋转之间的相位角观察到更多可变性,其中12个测试中的10个具有显着差异。基于来自所有三种系统的95%置信区间计算刚度和相位角限制。这些建议可以通过其他研究机构与标准试样和测试协议一起使用,以确保不同脊柱系统的等价,增加在体外脊柱研究中比较的能力。 (c)2017 Elsevier Ltd.保留所有权利。

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