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High-spatial-resolution deep tissue imaging with spectral-domain optical coherence microscopy in the 1700-nm spectral band

机译:在1700 nm光谱带中使用光谱域光学相干显微镜进行高空间分辨率的深部组织成像

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摘要

We present three-dimensional (3-D) high-resolution spectral-domain optical coherence microscopy (SD-OCM) by using a supercontinuum (SC) fiber laser source with 300-nm spectral bandwidth (full-width at half-maximum) in the 1700-nm spectral band. By using low-coherence interferometry with SC light and a confocal detection scheme, we realized lateral and axial resolutions of 3.4 and in tissue ( ), respectively. This is, to the best of our knowledge, the highest 3-D spatial resolution reported among those of Fourier-domain optical coherence imaging techniques in the 1700-nm spectral band. In our SD-OCM, to enhance the imaging depth, a full-range method was implemented, which suppressed the formation of a coherent ghost image and allowed us to set the zero-delay position inside the samples. We demonstrated the 3-D high-resolution imaging capability of 1700-nm SD-OCM through the measurement of an interference signal from a mirror surface and imaging of a single 200-nm polystyrene bead and a pig thyroid gland. Deep tissue imaging at a depth of up to 1.8 mm was also demonstrated. This is the first demonstration of 3-D high-resolution SD-OCM in the 1700-nm spectral band.
机译:我们通过使用具有300nm光谱带宽(半高全宽)的超连续谱(SC)光纤激光源,提供三维(3-D)高分辨率光谱域光学相干显微镜(SD-OCM)。 1700纳米光谱带。通过使用SC光的低相干干涉法和共聚焦检测方案,我们分别实现了3.4和组织()的横向和轴向分辨率。据我们所知,这是1700 nm光谱带中傅立叶域光学相干成像技术中报告的最高3-D空间分辨率。在我们的SD-OCM中,为了增强成像深度,实施了一种全范围方法,该方法抑制了相干幻影的形成,并允许我们在样本内部设置零延迟位置。我们通过测量来自镜面的干扰信号以及单个200 nm聚苯乙烯珠和一个猪甲状腺的成像,展示了1700 nm SD-OCM的3D高分辨率成像能力。还证实了深度可达1.8毫米的深层组织成像。这是在1700 nm光谱带中的3D高分辨率SD-OCM的首次演示。

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