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椎间盘纤维环分层:使用牛尾模型研究分离速率的影响。

Delamination of the Annulus Fibrosus of the Intervertebral Disc: Using a Bovine Tail Model to Examine Effect of Separation Rate.

作者信息

Briar K Josh, McMorran John G, Gregory Diane E

机构信息

Department of Kinesiology and Physical Education, Wilfrid Laurier University, Waterloo, ON, Canada.

Department of Health Sciences, Wilfrid Laurier University, Waterloo, ON, Canada.

出版信息

Front Bioeng Biotechnol. 2022 Jun 28;10:883268. doi: 10.3389/fbioe.2022.883268. eCollection 2022.

Abstract

The intervertebral disc (IVD) is a complex structure, and recent evidence suggests that separations or delamination between layers of the annulus may contribute to degeneration development, a common cause of low back pain The purpose of the present experiment was to quantify the mechanical response of the layer-adjoining interlamellar matrix at different rates of separation. Understanding the rate-dependency of the interlamellar matrix, or the adhesion between adjacent layers of the disc, is important as the spine experiences various loading velocities during activities of daily living. Twelve discs were dissected from four bovine tails (three extracts per tail). Two multi-layered annulus samples were collected from each IVD (total = 24, mean bond width = 3.82 ± 0.96 mm) and randomly assigned to a 180° peel test at one of three delamination rates; 0.05 mm/s, 0.5 mm/s, or 5 mm/s. Annulus extracts were found to have similar maximal adhesion strengths ( = 0.39) and stiffness ( = 0.97) across all rate conditions. However, a significant difference in lamellar adhesion strength variability was observed between the 5 mm/s condition (0.96 N/mm ± 0.31) when compared to the 0.5 mm/s (0.50 N/mm ± 0.19) and 0.05 mm/s (0.37 N/mm ± 0.13) conditions ( < 0.05). Increased variability may be indicative of non-uniform strength due to inconsistent adhesion throughout the interlamellar matrix, which is exacerbated by increased rates of loading. The observed non-uniform strength could possibly lead to a scenario more favourable to the development of microtrauma, and eventual delamination.

摘要

椎间盘(IVD)是一种复杂的结构,最近有证据表明,纤维环各层之间的分离或分层可能会导致退变发展,这是腰痛的常见原因。本实验的目的是量化层邻间层基质在不同分离速率下的力学响应。了解间层基质的速率依赖性,即椎间盘相邻层之间的粘附力,很重要,因为脊柱在日常生活活动中会经历各种加载速度。从四条牛尾巴上解剖出12个椎间盘(每条尾巴取三个样本)。从每个IVD中收集两个多层纤维环样本(共24个,平均粘结宽度 = 3.82 ± 0.96毫米),并随机分配到三种分层速率之一进行180°剥离试验;0.05毫米/秒、0.5毫米/秒或5毫米/秒。在所有速率条件下,纤维环提取物的最大粘附强度( = 0.39)和刚度( = 0.97)相似。然而,与0.5毫米/秒(0.50牛/毫米 ± 0.19)和0.05毫米/秒(0.37牛/毫米 ± 0.13)条件相比,5毫米/秒条件下(0.96牛/毫米 ± 0.31)的层间粘附强度变异性存在显著差异( < 0.05)。变异性增加可能表明由于整个间层基质中粘附不一致导致强度不均匀,而加载速率增加会加剧这种情况。观察到的强度不均匀可能会导致更有利于微创伤发展和最终分层的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/284f/9273995/62fee9237752/fbioe-10-883268-g001.jpg

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