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使用对比增强型μCT对大鼠椎间盘生物力学特性进行无损间接评估。

Nondestructive, indirect assessment of the biomechanical properties of the rat intervertebral disc using contrast-enhanced μCT.

作者信息

Newton Michael D, Hartner Samantha E, Gawronski Karissa, Davenport Erik J, Timmons Shannon C, Baker Kevin C, Maerz Tristan

机构信息

Orthopaedic Research Laboratory, Beaumont Health, Royal Oak, Michigan.

Department of Natural Sciences, Lawrence Technological University, Southfield, Michigan.

出版信息

J Orthop Res. 2018 Jul;36(7):2030-2038. doi: 10.1002/jor.23850. Epub 2018 Feb 7.

Abstract

Mechanical characterization of the intervertebral disc involves labor-intensive and destructive experimental methodology. Contrast-enhanced micro-computed tomography is a nondestructive imaging modality for high-resolution visualization and glycosaminoglycan quantification of cartilaginous tissues. The purpose of this study was to determine whether anionic and cationic contrast-enhanced micro-computed tomography of the intervertebral disc can be used to indirectly assess disc mechanical properties in an ex vivo model of disc degeneration. L3/L4 motion segments were dissected from female Lewis rats. To deplete glycosaminoglycan, samples were treated with 0 U/ml (Control) or 5 U/ml papain. Contrast-enhanced micro-computed tomography was performed following incubation in 40% Hexabrix (anionic) or 30 mg I/ml CA (cationic) for 24 h (n = 10/contrast agent/digestion group). Motion segments underwent cyclic mechanical testing to determine compressive and tensile modulus, stiffness, and hysteresis. Glycosaminoglycan content was determined using the dimethylmethylene blue assay. Correlations between glycosaminoglycan content, contrast-enhanced micro-computed tomography attenuation, and mechanical properties were assessed via the Pearson correlation. The predictive accuracy of attenuation on compressive properties was assessed via repeated random sub-sampling cross validation. Papain digestion produced significant decreases in glycosaminoglycan content and corresponding differences in attenuation and mechanical properties. Attenuation correlated significantly to glycosaminoglycan content and to all compressive mechanical properties using both Hexabrix and CA . Predictive linear regression models demonstrated a predictive accuracy of attenuation on compressive modulus and stiffness of 79.8-86.0%. Contrast-enhanced micro-computed tomography was highly predictive of compressive mechanical properties in an ex vivo simulation of disc degeneration and may represent an effective modality for indirectly assessing disc compressive properties. © 2018 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:2030-2038, 2018.

摘要

椎间盘的力学特性研究涉及劳动强度大且具有破坏性的实验方法。对比增强微型计算机断层扫描是一种用于软骨组织高分辨率可视化和糖胺聚糖定量的非破坏性成像方式。本研究的目的是确定椎间盘的阴离子和阳离子对比增强微型计算机断层扫描是否可用于在椎间盘退变的体外模型中间接评估椎间盘的力学性能。从雌性Lewis大鼠身上解剖出L3/L4运动节段。为了消耗糖胺聚糖,样本用0 U/ml(对照)或5 U/ml木瓜蛋白酶处理。在40%泛影葡胺(阴离子)或30 mg I/ml碘克沙醇(阳离子)中孵育24小时后进行对比增强微型计算机断层扫描(每组造影剂/消化组n = 10)。对运动节段进行循环力学测试以确定压缩和拉伸模量、刚度和滞后现象。使用二甲基亚甲蓝法测定糖胺聚糖含量。通过Pearson相关性评估糖胺聚糖含量、对比增强微型计算机断层扫描衰减和力学性能之间的相关性。通过重复随机子采样交叉验证评估衰减对压缩性能的预测准确性。木瓜蛋白酶消化导致糖胺聚糖含量显著降低以及衰减和力学性能的相应差异。使用泛影葡胺和碘克沙醇时,衰减与糖胺聚糖含量以及所有压缩力学性能均显著相关。预测线性回归模型显示衰减对压缩模量和刚度的预测准确性为79.8 - 86.0%。在椎间盘退变的体外模拟中,对比增强微型计算机断层扫描对压缩力学性能具有高度预测性,可能是间接评估椎间盘压缩性能的有效方式。© 2018骨科研究协会。由Wiley Periodicals, Inc.出版。《矫形外科研究杂志》36:2030 - 2038, 2018。

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