体外生物力学试验中影响椎间盘内压力测量的因素。

Scoliosis Pub Date : 2015-02-11 eCollection Date: 2015-01-01 DOI:10.1186/1748-7161-10-S2-S1
Jaëlle Tremblay, Vladimir Brailovski, Jean-Marc Mac-Thiong, Yvan Petit
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引用次数: 7

摘要

目的:评价体外生物力学试验中椎间盘内压力测量的可靠性。特别是,将通过考虑标本和冻结/解冻循环的影响来评估重复测量的测量变异性。方法:选取8根猪棘的36个功能单位(S1: T7-T8, S2: T9-T10, S3: T12-T11, S4: T14-T13, S5: L1-L2和S6: L3-L4)。测量椎间盘的额角和矢状面尺寸。这些测量有助于定位改良导管放置的椎间盘中心。然后将光纤压力传感器(测量范围:-0.1至17 bar) (360HP, SAMBA Sensors,瑞典)插入导管。将标本分为3组:1)新鲜(F), 2)经过一次冻融循环(C1)和3)经过两次冻融循环(C2)。这些组分为两组,取决于试样是否承受400 N轴向载荷。每种情况下进行10次测量(插入传感器一分钟,然后取出)。统计分析使用方差分析评估猪标本和椎体水平的影响。用方差分析评价重复测量的效果。采用U Mann-Whitney检验分析冻融循环的差异(P≤0.05)。结果:无轴向负荷时,F组椎间盘内压力为365 mbar, C1组为473 mbar, C2组为391 mbar。在400N轴向载荷下,F组椎间盘内压力为10610 mbar, C1组为10132 mbar, C2组为12074 mbar。结论:冻融循环可以影响椎间盘内压力测量,且具有显著的标本间差异。在体外生物力学测试中,可以推荐使用相同的标本作为其自身的对照。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Factors affecting intradiscal pressure measurement during in vitro biomechanical tests.

Objectives: To assess the reliability of intradiscal pressure measurement during in vitro biomechanical testing. In particular, the variability of measurements will be assessed for repeated measures by considering the effect of specimens and of freezing/thawing cycles.

Methods: Thirty-six functional units from 8 porcine spines (S1: T7-T8, S2: T9-T10, S3: T12-T11, S4: T14-T13, S5: L1-L2 and S6: L3-L4) have been used. The intervertebral discs were measured to obtain the frontal and sagittal dimensions. These measurements helped locate the center of the disc where a modified catheter was positioned. A fiber optic pressure sensor (measuring range: -0.1 to 17 bar) (360HP, SAMBA Sensors, Sweden) was then inserted into the catheter. The specimens were divided into 3 groups: 1) fresh (F), 2) after one freeze/thaw cycle (C1) and 3) after 2 freeze/thaw cycles (C2). These groups were divided in two, depending on whether specimens were subjected to 400 N axial loading or not. Ten measurements (insertion of the sensor for a period of one minute, then removal) were taken for each case. Statistical analyses evaluated the influence of porcine specimen and the vertebral level using a MANOVA. The effect of repeated measurements was evaluated with ANOVA. The difference between freeze/thaw cycles were analysed with U Mann-Whitney test (P≤0.05).

Results: Without axial loading, the F group showed 365 mbar intradiscal pressure, 473 mbar for the C1 group, and 391 mbar for the C2 group. With 400N axial load, the F group showed intradiscal pressure of 10610 mbar, the C1 group 10132 mbar, the C2 group 12074 mbar. The statistical analysis shows a significant influence of the porcine specimen (p<0.001), with or without axial loading and of the vertebral level with (p=0.048) and without load (p<0.001). The results were also significantly different between the freeze/thaw cycles, with (p<0.001) and without load (p=0.033). Repeated measurement (without load p = 0.82 and with p = 0.56) did not show significant influence.

Conclusions: The results tend to support that freezing/thawing cycles can affect intradiscal pressure measurement with significant inter-specimen variability. The use of the same specimen as its own control during in vitro biomechanical testing could be recommended.

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