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首页> 外文期刊>Investigative ophthalmology & visual science >Microstructural Crimp of the Lamina Cribrosa and Peripapillary Sclera Collagen Fibers
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Microstructural Crimp of the Lamina Cribrosa and Peripapillary Sclera Collagen Fibers

机译:层板和周乳突巩膜胶原纤维的微结构压接

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Purpose: Although collagen microstructural crimp is a major determinant of ocular biomechanics, no direct measurements of optic nerve head (ONH) crimp have been reported. Our goal was to characterize the crimp period of the lamina cribrosa (LC) and peripapillary sclera (PPS) at low and normal IOPs. Methods: ONHs from 11 sheep eyes were fixed at 10-, 5-, or 0-mm Hg IOP and crimp periods measured manually from coronal cryosections imaged with polarized light microscopy (PLM). Using linear mixed-effect models, we characterized the LC and PPS periods, and how they varied with distance from the scleral canal edge. Results: A total of 17,374 manual collagen crimp period measurements were obtained with high repeatability (1.9 ??m) and reproducibility (4.7 ??m). The periods were smaller (P 0.001) and less variable in the LC than in the PPS: average (SD) of 13.8 (3.1) ??m in the LC, and 31.0 (10.4) ??m in the PPS. LC crimp period did not vary with distance from the scleral canal wall (P 0.1). PPS period increased with the square root of the distance to the canal (P 0.0001). Conclusions: Small, uniform crimp periods within the sheep LC and immediately adjacent PPS may indicate that these tissues are setup to prevent large or heterogeneous deformations that insult the neural tissues within the canal. An increasing more variable period with distance from the canal provides a smooth transition of mechanical properties that minimizes stress and strain concentrations.
机译:目的:尽管胶原蛋白的微结构卷曲是眼睛生物力学的主要决定因素,但尚无直接测量视神经头(ONH)卷曲的报道。我们的目标是在低眼压和正常眼压下表征筛板(LC)和乳头周围巩膜(PPS)的压接期。方法:将11只羊眼的ONH固定在10、5或0毫米汞柱眼压下,并通过偏振光显微镜(PLM)成像的冠状冰冻切片手动测量卷曲期。使用线性混合效应模型,我们表征了LC和PPS周期,以及它们如何随着距巩膜边缘的距离而变化。结果:总共获得了17,374个手动胶原蛋白卷曲期测量值,并且具有较高的可重复性(1.9?m)和可重复性(4.7?m)。与PPS中相比,LC中的周期更短(P <0.001)并且变化较小:LC中的平均值(SD)为13.8(3.1)Ω·m,PPS中为31.0(10.4)Ω·m。 LC卷曲期不随距巩膜管壁的距离而变化(P> 0.1)。 PPS周期随距根管距离的平方根而增加(P <0.0001)。结论:绵羊LC和紧邻的PPS内的小而均匀的卷曲期可能表明,这些组织的设置是为了防止侵害管内神经组织的大的或不均匀的变形。随着距运河距离的增加,可变周期的增加提供了机械特性的平稳过渡,从而使应力和应变集中最小化。

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