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Analysis of Morphological Changes of Lamina Cribrosa Under Acute Intraocular Pressure Change

机译:急性眼压变化下筛板的形态变化分析

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Glaucoma is the second leading cause of blindness worldwide. Despite active research efforts driven by the importance of diagnosis and treatment of the optic degenerative neuropathy, the relationship between structural and functional changes along the glaucomateous evolution are still not clearly understood. Dynamic changes of the lamina cribrosa (LC) in the presence of intraocular pressure (IOP) were suggested to play a significant role in optic nerve damage, which motivates the proposed research to explore the relationship of changes of the 3D structure of the LC collagen meshwork to clinical diagnosis. We introduce a framework to quantify 3D dynamic morphological changes of the LC under acute IOP changes in a series of swept-source optical coherence tomography (SS-OCT) scans taken under different pressure states. Analysis of SS-OCT images faces challenges due to low signal-to-noise ratio, anisotropic resolution, and observation variability caused by subject and ocular motions. We adapt unbiased diffeomorphic atlas building which serves multiple purposes critical for this analysis. Analysis of deformation fields yields desired global and local information on pressure-induced geometric changes. Deformation variability, estimated with repeated images of a healthy volunteer without IOP elevation, is found to be a magnitude smaller than pressure-induced changes and thus illustrates feasibility of the proposed framework. Results in a clinical study with healthy, glaucoma suspect, and glaucoma subjects demonstrate the potential of the proposed method for non-invasive in vivo analysis of LC dynamics, potentially leading to early prediction and diagnosis of glaucoma.
机译:青光眼是全球失明的第二大主要原因。尽管光学退行性神经病的诊断和治疗的重要性推动了积极的研究工作,但仍不清楚沿青光眼演变的结构和功能变化之间的关系。提示存在眼内压(IOP)的情况下筛板(LC)的动态变化在视神经损伤中起重要作用,这促使拟议的研究探索LC胶原网的3D结构变化之间的关系进行临床诊断。我们引入了一个框架,用于量化在不同压力状态下进行的一系列扫频光学相干断层扫描(SS-OCT)扫描中,在急性IOP变化下LC的3D动态形态变化。 SS-OCT图像的分析由于信噪比低,各向异性分辨率低以及由对象和眼动引起的观察变异性而面临挑战。我们采用无偏微分图集构建,该构建服务于此分析至关重要的多个目的。变形场的分析产生了所需的有关压力引起的几何变化的全局和局部信息。用健康志愿者在没有眼压升高的情况下重复拍摄的图像估计的变形变异性,其大小小于压力引起的变化,因此说明了所提出框架的可行性。在健康,青光眼可疑者和青光眼受试者的临床研究中,结果证明了拟议方法对LC动力学进行非侵入性体内分析的潜力,有可能导致对青光眼的早期预测和诊断。

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