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System-independent assessment of OCT axial resolution with a 'bar chart' phantom

机译:与“条形图”幻像的OCT轴向分辨率为单独的System-Resoust评估

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We present a optical phantom approach for the characterization of OCT axial resolution and contrast via multilayered "bar charts." We explored two methods to fabricate these phantoms: the first is based on monolayers of light-scattering microspheres with an intervening layer of transparent silicone, and the second involves alternating layers of scattering-enhanced silicone and transparent silicone. Varying the diameter of the microspheres and the thickness of the silicone layers permits different spatial frequencies to be realized in the axial dimension of the phantoms. Because the phantom's dimensions are accurately known independent of the OCT system, no information about the system's spatial calibration is required. We quantified the degree to which the bars in each phantom could be resolved with OCT, which provides insights into the axial contrast transfer function. Initial testing of these phantoms on time-resolved and Fourier-domain OCT platforms indicated that our approach can provide accurate, system-independent estimates of resolution.
机译:我们提出了OCT轴向分辨率,并通过多层对比的表征光学幻象办法“柱状图”。我们探索了两种方法来制造这些幻影:第一是基于与透明的有机硅的中间层的光散射性微球单层,并且所述第二涉及交替的散射增强的有机硅和透明的硅层。改变微球的直径和硅氧烷层的厚度允许在体模的轴向尺寸来实现不同的空间频率。因为幻象的尺寸是精确已知的独立的OCT系统的,不需要有关系统的空间校准信息。我们量化到每个幻影酒吧可以与华侨城,它提供了深入了解轴向对比度传递函数来解决的程度。在时间分辨和傅立叶域OCT平台,这些幽灵的初步测试表明,我们的方法可以提供高分辨率的准确,系统独立机构的估计。

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