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数字微镜器件作为用于荧光寿命和高光谱成像的空间照明器。

Digital micromirror device as a spatial illuminator for fluorescence lifetime and hyperspectral imaging.

作者信息

Bednarkiewicz Artur, Bouhifd Mounir, Whelan Maurice P

机构信息

Nanotechnology and Molecular Imaging Unit, Institute for Health and Consumer Protection, European Commission Joint Research Centre, Via E. Fermi 1, 21020 Ispra, Varese, Italy.

出版信息

Appl Opt. 2008 Mar 20;47(9):1193-9. doi: 10.1364/ao.47.001193.

Abstract

Time-domain fluorescence lifetime imaging (FLIM) and hyper-spectral imaging (HSI) are two advanced microscopy techniques widely used in biological studies. Typically both FLIM and HSI are performed with either a whole-field or raster-scanning approach, which often prove to be technically complex and expensive, requiring the user to accept a compromise among precision, speed, and spatial resolution. We propose the use of a digital micromirror device (DMD) as a spatial illuminator for time-domain FLIM and HSI with a laser diode excitation source. The rather unique features of the DMD allow both random and parallel access to regions of interest (ROIs) on the sample, in a very rapid and repeatable fashion. As a consequence both spectral and lifetime images can be acquired with a precision normally associated with single-point systems but with a high degree of flexibility in their spatial construction. In addition, the DMD system offers a very efficient way of implementing a global analysis approach for FLIM, where average fluorescence decay parameters are first acquired for a ROI and then used as initial estimates in determining their spatial distribution within the ROI. Experimental results obtained on phantoms employing fluorescent dyes clearly show how the DMD method supports both spectral and temporal separation for target identification in HSI and FLIM, respectively.

摘要

时域荧光寿命成像(FLIM)和高光谱成像(HSI)是生物学研究中广泛使用的两种先进显微镜技术。通常,FLIM和HSI都是采用全场或光栅扫描方法进行的,这往往在技术上很复杂且成本高昂,要求用户在精度、速度和空间分辨率之间做出妥协。我们建议使用数字微镜器件(DMD)作为时域FLIM和HSI的空间照明器,并配备激光二极管激发源。DMD相当独特的特性允许以非常快速且可重复的方式对样品上的感兴趣区域(ROI)进行随机和平行访问。因此,光谱图像和寿命图像都可以以通常与单点系统相关的精度进行采集,但在其空间构建方面具有高度的灵活性。此外,DMD系统为实施FLIM的全局分析方法提供了一种非常有效的方式,即首先为一个ROI获取平均荧光衰减参数,然后将其用作确定这些参数在ROI内空间分布的初始估计值。使用荧光染料的模型实验结果清楚地表明了DMD方法如何分别支持HSI和FLIM中用于目标识别的光谱和时间分离。

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