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采用偏振分辨二次谐波产生(P-SHG)显微镜研究了针穿刺对牛纤维环原纤维的微观机械损伤。

Micro-mechanical damage of needle puncture on bovine annulus fibrosus fibrils studied using polarization-resolved Second Harmonic Generation(P-SHG) microscopy.

机构信息

College of Engineering, Mathematics & Physical Sciences, Physics Building, Stocker Road, Exeter, EX4 4QL, UK.

College of Engineering, Mathematics & Physical Sciences, Physics Building, Stocker Road, Exeter, EX4 4QL, UK.

出版信息

J Mech Behav Biomed Mater. 2021 Jun;118:104458. doi: 10.1016/j.jmbbm.2021.104458. Epub 2021 Mar 16.

Abstract

Needle injection has been widely used in spinal therapeutic or diagnostic processes, such as discography. The use of needles has been suspected in causing mild disc degeneration which can lead to long-term back pain. However, the localised microscopic damage caused by needles has not been well studied. The local progressive damage on a microscopic level caused by needle punctures on the surface of bovine annulus fibrosus was investigated. Four different sizes of needle were used for the puncture and twenty-nine bovine intervertebral discs were studied. Polarization-resolved second harmonic generation and fluorescent microscopy were used to study the local microscopic structural changes in collagen and cell nuclei due to needle damage. Repeated 70 cyclic loadings at ±5% of axial strain were applied after the needle puncture in order to assess progressive damage caused by the needle. Puncture damage on annulus fibrosus were observed either collagen fibre bundles being pushed aside, being cut through or combination of both with part being lift or pushed in. The progressive damage was found less relevant to the needle size and more progressive damage was only observed using the larger needle. Two distinct populations of collagen, in which one was relatively more organised than the other population, were observed especially after the puncture from skewed distribution of polarization-SHG analysis. Cell shape was found rounder near the puncture site where collagen fibres were damaged.

摘要

针注射已广泛应用于脊柱治疗或诊断过程,如椎间盘造影术。人们怀疑针的使用会导致轻微的椎间盘退变,从而导致长期背痛。然而,针引起的局部微观损伤尚未得到很好的研究。研究了在牛纤维环表面进行针穿刺时造成的微观水平的局部渐进性损伤。使用了四种不同大小的针进行穿刺,研究了 29 个牛椎间盘。偏振分辨二次谐波产生和荧光显微镜用于研究由于针损伤导致的胶原蛋白和细胞核的局部微观结构变化。在针穿刺后,进行了±5%轴向应变的 70 次循环加载,以评估针引起的渐进性损伤。在纤维环上观察到的穿刺损伤是纤维束被推开、被切断或两者结合,部分纤维被抬起或推入。发现渐进性损伤与针的大小关系不大,只有使用较大的针才会观察到更明显的渐进性损伤。偏振二次谐波分析的偏析分布表明,在穿刺后观察到两种不同的胶原蛋白,其中一种比另一种组织更有规则。在胶原蛋白纤维受损的穿刺部位附近,发现细胞形状更圆。

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