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Depth-resolved image mapping spectrometer (IMS) with structured illumination

机译:具有结构照明的深度分辨图像映射光谱仪(IMS)

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摘要

We present a depth-resolved Image Mapping Spectrometer (IMS) which is capable of acquiring 4D (x, y, z, λ) datacubes. Optical sectioning is implemented by structured illumination. The device’s spectral imaging performance is demonstrated in a multispectral microsphere and mouse kidney tissue fluorescence imaging experiment. We also compare quantitatively the depth-resolved IMS with a hyperspectral confocal microscope (HCM) in a standard fluorescent bead imaging experiment. The comparison results show that despite the use of a light source with four orders of magnitude lower intensity in the IMS than that in the HCM, the image signal-to-noise ratio acquired by the IMS is 2.6 times higher than that achieved by the equivalent confocal approach.
机译:我们提出了一种深度解析图像映射光谱仪(IMS),它能够获取4D(x,y,z,λ)数据立方体。光学切片通过结构化照明实现。该设备的光谱成像性能在多光谱微球体和小鼠肾脏组织荧光成像实验中得到了证明。在标准荧光珠成像实验中,我们还用高光谱共聚焦显微镜(HCM)定量比较了深度分辨IMS。比较结果表明,尽管在IMS中使用的光源强度比在HCM中降低了四个数量级的光源,但IMS所获得的图像信噪比却是等效光源的2.6倍。共聚焦方法。

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