Schultz R A, Nielsen T, Zavaleta J R, Ruch R, Wyatt R, Garner H R
McDermott Center for Human Growth and Development, The University of Texas Southwestern Medical Center, Dallas, Texas 75235-8591, USA.
Cytometry. 2001 Apr 1;43(4):239-47. doi: 10.1002/1097-0320(20010401)43:4<239::aid-cyto1056>3.0.co;2-z.
The usefulness of the light microscope has been dramatically enhanced by recent developments in hardware and software. However, current technologies lack the ability to capture and analyze a high-resolution image representing a broad diversity of spectral signatures in a single-pass view. We show that hyperspectral imaging offers such a technology. METHODS AND RESULTS We developed a prototype hyperspectral imaging microscope capable of collecting the complete emission spectrum from a microscope slide. A standard epifluorescence microscope was optically coupled to an imaging spectrograph, with output recorded by a CCD camera. Software was developed for image acquisition and computer display of resultant X--Y images with spectral information. Individual images were captured representing Y-wavelength planes, with the stage successively moved in the X direction, allowing an image cube to be constructed from the compilation of generated scan files. This prototype instrument was tested with samples relevant to cytogenetic, histologic, cell fusion, microarray scanning, and materials science applications.
Hyperspectral imaging microscopy permits the capture and identification of different spectral signatures present in an optical field during a single-pass evaluation, including molecules with overlapping but distinct emission spectra. This instrument can reduce dependence on custom optical filters and, in future imaging applications, should facilitate the use of new fluorophores or the simultaneous use of similar fluorophores.
硬件和软件的最新发展极大地提高了光学显微镜的效用。然而,当前技术缺乏在单次观察中捕获和分析代表广泛光谱特征多样性的高分辨率图像的能力。我们证明了高光谱成像提供了这样一种技术。
我们开发了一种能够从显微镜载玻片收集完整发射光谱的高光谱成像显微镜原型。一台标准的落射荧光显微镜与一台成像光谱仪进行光学耦合,其输出由电荷耦合器件相机记录。开发了用于图像采集和计算机显示带有光谱信息的所得X - Y图像的软件。通过依次在X方向移动载物台,捕获代表Y波长平面的单个图像,从而能够从生成的扫描文件汇编中构建一个图像立方体。使用与细胞遗传学、组织学、细胞融合、微阵列扫描和材料科学应用相关的样本对该原型仪器进行了测试。
高光谱成像显微镜允许在单次评估过程中捕获和识别存在于光场中的不同光谱特征,包括具有重叠但不同发射光谱的分子。该仪器可以减少对定制光学滤光片的依赖,并且在未来的成像应用中,应该有助于新型荧光团的使用或相似荧光团的同时使用。