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Quantitative comparison of the OCT imaging depth at 1300 nm and 1600 nm

机译:OCT成像深度在1300 nm和1600 nm处的定量比较

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摘要

One of the present challenges in optical coherence tomography (OCT) is the visualization of deeper structural morphology in biological tissues. Owing to a reduced scattering, a larger imaging depth can be achieved by using longer wavelengths. In this work, we analyze the OCT imaging depth at wavelengths around 1300 nm and 1600 nm by comparing the scattering coefficient and OCT imaging depth for a range of Intralipid concentrations at constant water content. We observe an enhanced OCT imaging depth for 1600 nm compared to 1300 nm for Intralipid concentrations larger than 4 vol.%. For higher Intralipid concentrations, the imaging depth enhancement reaches 30%. The ratio of scattering coefficients at the two wavelengths is constant over a large range of scattering coefficients and corresponds to a scattering power of 2.8 ± 0.1. Based on our results we expect for biological tissues an increase of the OCT imaging depth at 1600 nm compared to 1300 nm for samples with high scattering power and low water content.
机译:光学相干断层扫描(OCT)的当前挑战之一是可视化生物组织中更深的结构形态。由于减少的散射,可以通过使用更长的波长来实现更大的成像深度。在这项工作中,我们通过比较恒定水含量下一系列脂质内浓度的散射系数和OCT成像深度,来分析波长在1300 nm和1600 nm附近的OCT成像深度。我们观察到1600 nm的增强的OCT成像深度,而脂内浓度大于4 vol。%的则为1300 nm。对于更高的脂质内浓度,成像深度增强达到30%。在两个波长处的散射系数之比在较大的散射系数范围内是恒定的,并且对应于2.8±0.1的散射功率。根据我们的结果,我们期望生物组织在1600 nm处的OCT成像深度会增加,而对于高散射力和低水分含量的样品,则是1300 nm。

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