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首页> 外文期刊>Journal of biomedical optics >High-spatial-resolution deep tissue imaging with spectral-domain optical coherence microscopy in the 1700-nm spectral band
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High-spatial-resolution deep tissue imaging with spectral-domain optical coherence microscopy in the 1700-nm spectral band

机译:高空间分辨率的深层组织成像在1700-NM光谱带中具有光谱域光学相干显微镜显微镜显微镜

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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 3.8 μm in tissue (n = 1.38), 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:我们使用具有300nm光谱带宽(半最大宽度的全宽)的超连续(SC)光纤激光源,呈现三维(3-D)高分辨率光谱域光学相干显微镜(SD-OCM) 1700nm光谱带。通过使用SC光和共聚焦检测方案使用低相干干涉测定法,我们分别实现了3.4和3.8μm的横向和轴向分辨率分别在组织(n = 1.38)中。尽管我们所知,这是在1700-nm光谱带中的傅里叶域光学相干成像技术的最高三维空间分辨率。在我们的SD-OCM中,为了增强成像深度,实现了一种全范围方法,该方法抑制了相干鬼图像的形成,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和单个200nm聚苯乙烯珠和猪甲状腺的成像来证明了1700nm SD-OCM的3-D高分辨率成像能力。还证明了深度达1.8mm的深层组织成像。这是1700-NM光谱带中的3-D高分辨率SD-OCM的第一次演示。

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