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基于结构光照明和傅里叶变换干涉测量的深度分辨高光谱成像光谱仪。

Depth resolved hyperspectral imaging spectrometer based on structured light illumination and Fourier transform interferometry.

作者信息

Choi Heejin, Wadduwage Dushan, Matsudaira Paul T, So Peter T C

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

BioSym, Singapore-MIT Alliance for Research and Technology, Singapore 138602, Singapore ; Department of Biological Sciences, National University of Singapore, Singapore 138602, Singapore.

出版信息

Biomed Opt Express. 2014 Sep 9;5(10):3494-507. doi: 10.1364/BOE.5.003494. eCollection 2014 Oct 1.

Abstract

A depth resolved hyperspectral imaging spectrometer can provide depth resolved imaging both in the spatial and the spectral domain. Images acquired through a standard imaging Fourier transform spectrometer do not have the depth-resolution. By post processing the spectral cubes (x, y, λ) obtained through a Sagnac interferometer under uniform illumination and structured illumination, spectrally resolved images with depth resolution can be recovered using structured light illumination algorithms such as the HiLo method. The proposed scheme is validated with in vitro specimens including fluorescent solution and fluorescent beads with known spectra. The system is further demonstrated in quantifying spectra from 3D resolved features in biological specimens. The system has demonstrated depth resolution of 1.8 μm and spectral resolution of 7 nm respectively.

摘要

深度分辨高光谱成像光谱仪可以在空间和光谱域提供深度分辨成像。通过标准成像傅里叶变换光谱仪获取的图像不具备深度分辨率。通过对在均匀照明和结构化照明下通过萨格纳克干涉仪获得的光谱立方体(x,y,λ)进行后处理,可以使用诸如HiLo方法等结构化光照明算法恢复具有深度分辨率的光谱分辨图像。所提出的方案通过包括具有已知光谱的荧光溶液和荧光珠在内的体外标本进行了验证。该系统进一步展示了对生物标本中三维分辨特征的光谱定量能力。该系统分别展示了1.8μm的深度分辨率和7nm的光谱分辨率。

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Depth-resolved cellular microrheology using HiLo microscopy.使用高低显微镜的深度分辨细胞微流变学。
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Compressive fluorescence microscopy for biological and hyperspectral imaging.压缩荧光显微镜用于生物和高光谱成像。
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Noise in Fourier self-deconvolution.傅里叶自去卷积中的噪声。
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