用于标准化眼科成像系统的逼真多功能视网膜假体的设计与应用。

Hyun-Ji Lee, Tae Geol Lee, Il Doh, Sang-Won Lee
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引用次数: 0

摘要

视网膜成像对视网膜疾病的诊断和治疗至关重要。然而,缺乏标准化和真实的光学幻影限制了成像系统的校准和验证。在这里,我们基于超级幻影的概念开发了一个逼真的视网膜幻影,旨在复制人类视网膜的形态和功能特征。该幻影包括13层结构、模拟人类视网膜血管网络的微流控通道和复制视网膜自身荧光的荧光微珠。我们验证了轴向分辨率、深度范围和光学相干断层扫描(OCT)视场的测量。此外,我们证实了幻影在多种眼科成像方式中的应用,包括OCT、OCT血管造影、眼底自身荧光、荧光素血管造影和吲哚菁绿血管造影。成像系统将能够通过标准化成像系统和提高定性分析和定量参数的准确性,如视网膜厚度,加强视网膜疾病的诊断和治疗监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and application of a realistic and multifunctional retinal phantom for standardizing ophthalmic imaging systems.

Retinal imaging is essential for diagnosing and treating retinal diseases. However, the lack of standardized and realistic optical phantoms limits the calibration and validation of imaging systems. Here we developed a realistic retinal phantom based on the concept of a super phantom designed to replicate the morphological and functional characteristics of the human retina. The phantom comprises a 13-layered structure, microfluidic channels to emulate vascular networks in the human retina, and fluorescent microbeads to replicate retinal autofluorescence. We validated the measurement of axial resolution, depth range, and field-of-view of optical coherence tomography (OCT) using the phantom. In addition, we confirmed the utility of the phantom across multiple ophthalmic imaging modalities, including OCT, OCT angiography, fundus autofluorescence, fluorescein angiography, and indocyanine green angiography. Imaging systems will be able to enhance the diagnosis and therapeutic monitoring of retinal diseases by standardizing imaging systems with this phantom and improving both the qualitative analysis and the accuracy of quantitative parameters, such as retinal thickness.

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