首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Fast 3D in vivo swept-source optical coherence tomography using a two-axis MEMS scanning micromirror
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Fast 3D in vivo swept-source optical coherence tomography using a two-axis MEMS scanning micromirror

机译:使用两轴MEMS扫描微镜的快速3D体内扫频源光学相干断层扫描

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摘要

We report on a fibre-based forward-imaging swept-source optical coherence tomography system using a high-reflectivity two-axis microelectromechanical scanning mirror for high-speed 3D in vivo visualization of cellular-scale architecture of biological specimens. The scanning micromirrors, based on electrostatic staggered vertical comb drive actuators, can provide +/- 9 degrees of optical deflection on both rotation axes and uniform reflectivity of greater than 90% over the range of imaging wavelengths (1260-1360 nm), allowing for imaging turbid samples with good signal-to-noise ratio. The wavelength-swept laser, scanning over 100 nm spectrum at 20 kHz rate, enables fast image acquisition at 10.2 million voxels s(-1) (for 3D imaging) or 40 frames s-1 (for 2D imaging with 500 transverse pixels per image) with 8.6 mu m axial resolution. Lateral resolution of 12.5 mu m over 3 mm field of view in each lateral direction is obtained using ZEMAX optical simulations for the lateral beam scanning system across the scanning angle range of the 500 mu m x 700 mu m micromirror. We successfully acquired en face and tomographic images of rigid structures (scanning micromirror), in vitro biological samples (onion peels and pickle slices) and in vivo images of human epidermis over 2 x 1 x 4 mm(3) imaging volume in real time at faster-than-video 2D frame rates. The results indicate that our system framework may be suitable for image-guided minimally invasive examination of various diseased tissues.
机译:我们报告了基于光纤的前向成像扫频源光学相干断层扫描系统,该系统使用高反射率两轴微机电扫描镜对生物样本的细胞规模建筑进行高速3D体内可视化。基于静电交错式垂直梳状驱动致动器的扫描微镜可在两个旋转轴上提供+/- 9度的光学偏转,并且在成像波长(1260-1360 nm)范围内的均匀反射率大于90%,从而实现了对具有良好信噪比的混浊样品进行成像。波长扫描激光器以20 kHz的速率扫描100 nm光谱,可实现1020万体素s(-1)(用于3D成像)或40帧s-1(用于2个成像,每个图像具有500个横向像素)的快速图像采集),轴向分辨率为8.6微米。使用ZEMAX光学模拟在500微米x 700微米微镜的扫描角度范围内对横向光束扫描系统进行测量,可在每个横向3mm视野上获得12.5微米的横向分辨率。我们成功地以2 x 1 x 4 mm(3)的成像体积实时获取了刚性结构(扫描微镜),体外生物样品(洋葱皮和泡菜切片)的人脸和断层图像,以及人类表皮的体内图像,并实时进行了2 x 1 x 4 mm(3)的成像。快于视频的2D帧速率。结果表明,我们的系统框架可能适用于各种疾病组织的图像引导微创检查。

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