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Design, construction, characterization, and application of a hyperspectral microarray scanner

机译:高光谱微阵列扫描仪的设计,构建,表征和应用

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摘要

We describe the design, construction, and operation of a hyperspectral microarray scanner for functional genomic research. The hyperspectral instrument operates with spatial resolutions ranging from 3 to 30 μm and records the emission spectrum between 490 and 900 nm with a spectral resolution of 3 nm for each pixel of the microarray. This spectral information, when coupled with multivariate data analysis techniques, allows for identification and elimination of unwanted artifacts and greatly improves the accuracy ofmicroarray experiments. Microarray results presented in this study clearly demonstrate the separation of fluorescent label emission from the spectrally overlapping emission due to the underlying glass substrate. We also demonstrate separation of the emission due to green fluorescent protein expressed by yeast cells from the spectrally overlapping autofluorescence of the yeast cells and the growth media.
机译:我们描述了用于功能基因组研究的高光谱微阵列扫描仪的设计,构建和操作。高光谱仪器以3至30μm的空间分辨率进行操作,并记录490至900 nm之间的发射光谱,并且每个微阵列像素的光谱分辨率为3 nm。当结合多变量数据分析技术时,这种光谱信息可以识别和消除不需要的伪影,并大大提高了微阵列实验的准确性。这项研究中提出的微阵列结果清楚地表明,由于下面的玻璃基板,荧光标记发射与光谱重叠发射分离。我们还证明了由于酵母细胞表达的绿色荧光蛋白的发射与酵母细胞和生长培养基的光谱重叠自发荧光的分离。

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