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Phase-contrast Micro-computed Tomography Measurements of the Intraocular Pressure-induced Deformation of the Porcine Lamina Cribrosa

机译:眼内压力诱发的猪鳞片眼内变形的相衬显微计算机断层扫描测量

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摘要

The lamina cribrosa is a complex mesh-like tissue in the posterior eye. Its biomechanical environment is thought to play a major role in glaucoma, the second most common cause of blindness. Due to its small size and relative inaccessibility, high-resolution measurements of LC deformation, important in characterizing LC biomechanics, are challenging. Here we present a novel noninvasive imaging method, which enables measurement of the three-dimensional deformation of the LC caused by acute elevation of intraocular pressure. Posterior segments of porcine eyes were imaged using synchrotron radiation phase contrast micro-computed tomography (PC μCT) at IOPs between 6 and 37 mmHg. The complex trabecular architecture of the LC was reconstructed with an isotropic spatial resolution of 3.2 μm. Scans acquired at different IOPs were analyzed with digital volume correlation (DVC) to compute full-field deformation within the LC. IOP elevation caused substantial tensile, shearing and compressive deformation within the LC, with maximum tensile strains at 30 mmHg averaging 5.5%, and compressive strains reaching 20%. We conclude that PC μCT provides a robust method for imaging the LC, and when combined with DVC, allows for full-field 3D measurement of ex vivo LC biomechanics at high spatial resolution.
机译:筛板是后眼中复杂的网状组织。据认为,其生物力学环境在青光眼中起主要作用,青光眼是失明的第二大常见原因。由于其体积小且相对难以接近,因此对LC变形的高分辨率测量(对于表征LC生物力学至关重要)非常具有挑战性。在这里,我们提出了一种新颖的非侵入性成像方法,该方法能够测量由眼内压的急剧升高引起的LC三维变形。使用同步辐射相衬微计算机断层扫描(PCμCT)在6至37 mmHg的IOP下对猪眼的后段成像。 LC的复杂小梁体系结构的各向同性空间分辨率为3.2μm。使用数字体积相关性(DVC)分析在不同IOP处采集的扫描,以计算LC中的全场变形。 IOP升高导致LC内部出现明显的拉伸,剪切和压缩变形,在30 mmHg时的最大拉伸应变平均为5.5%,压缩应变达到20%。我们得出的结论是,PCμCT为LC成像提供了一种可靠的方法,当与DVC结合使用时,可以在高空间分辨率下对离体LC生物力学进行全场3D测量。

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