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首页> 外文期刊>Acta biomaterialia >The pressure-induced deformation response of the human lamina cribrosa: Analysis of regional variations
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The pressure-induced deformation response of the human lamina cribrosa: Analysis of regional variations

机译:人椎板克里泽的压力诱导变形响应:区域变异分析

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摘要

The objective of this study was to measure the pressure-induced deformation response of the human lamina cribrosa (LC) and analyze for variations with age and anatomical region. The posterior scleral cup of 8 eyes from 6 human donors was mounted onto a custom inflation chamber. A laser-scanning microscope was used for second harmonic generation (SHG) imaging of the collagen structure in the posterior volume of the LC at pressures from 5 mmHg to 45 mmHg. The SHG volumes were analyzed by the Fast-Fourier Iterative Digital Volume Correlation (DVC) algorithm for the three dimensional (3D) displacement field. The components of the Green-Lagrange strain tensor and the in-plane principal and maximum shear strains were evaluated from the DVC displacement field for the central and peripheral regions of the LC and the nasal, temporal, inferior, and superior quadrants surrounding the central retinal artery and vein. Among the major findings were that older age was associated with lower strains, the maximum shear strain was larger in the peripheral than central region, and the maximum principal strain was lower in the nasal quadrant. The elliptical shape of the LC was also predictive of the biaxial strain ratio. Age-related and structure-related variations in the pressure-induced strains of the LC may contribute to the susceptibility and severity of optic nerve damage in glaucoma, and regional variations may explain the progression of axonal damage and tissue remodeling observed in the LC in glaucoma.
机译:本研究的目的是测量人椎板(LC)的压力诱导的变形响应,并分析与年龄和解剖区域的变化。从6个人供体的8只眼睛的后巩膜杯安装在定制充气室上。激光扫描显微镜用于胶原结构的第二次谐波产生(SHG)成像在LC的后部,在5mmHg至45mmHg的压力下。通过基于三维(3D)位移场的快速傅里叶迭代数字体积相关(DVC)算法来分析SHG卷。从LC的中央和周边区域的DVC位移场和中央视网膜周围的鼻腔,时间,劣等和高象限的DVC位移场评估了绿色拉拉格朗菌株张量和面内主剪切菌株的组件。动脉和静脉。在主要研究结果中,年龄较大的年龄与较低菌株相关,在外周的外周中的最大剪切菌株较大,并且在鼻象限中的最大主要菌株较低。 LC的椭圆形状也预测了双轴应变比。 LC的压力诱导菌株的年龄相关和结构相关变化可能有助于青光眼中视神经损伤的敏感性和严重程度,区域变异可以解释青光眼LC中观察到的轴突损伤和组织重塑的进展。

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