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首页> 外文期刊>Applied and Environmental Microbiology >Measurement of marine picoplankton cell size by using a cooled, charge-coupled device camera with image-analyzed fluorescence microscopy.
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Measurement of marine picoplankton cell size by using a cooled, charge-coupled device camera with image-analyzed fluorescence microscopy.

机译:通过使用带有图像分析荧光显微镜的冷却,电荷耦合设备照相机,测量海洋微微浮游细胞的大小。

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Accurate measurement of the biomass and size distribution of picoplankton cells (0.2 to 2.0 microns) is paramount in characterizing their contribution to the oceanic food web and global biogeochemical cycling. Image-analyzed fluorescence microscopy, usually based on video camera technology, allows detailed measurements of individual cells to be taken. The application of an imaging system employing a cooled, slow-scan charge-coupled device (CCD) camera to automated counting and sizing of individual picoplankton cells from natural marine samples is described. A slow-scan CCD-based camera was compared to a video camera and was superior for detecting and sizing very small, dim particles such as fluorochrome-stained bacteria. Several edge detection methods for accurately measuring picoplankton cells were evaluated. Standard fluorescent microspheres and a Sargasso Sea surface water picoplankton population were used in the evaluation. Global thresholding was inappropriate for these samples. Methods used previously in image analysis of nanoplankton cells (2 to 20 microns) also did not work well with the smaller picoplankton cells. A method combining an edge detector and an adaptive edge strength operator worked best for rapidly generating accurate cell sizes. A complete sample analysis of more than 1,000 cells averages about 50 min and yields size, shape, and fluorescence data for each cell. With this system, the entire size range of picoplankton can be counted and measured.
机译:精确测量微微浮游细胞(0.2至2.0微米)的生物量和大小分布对于表征它们对海洋食物网和全球生物地球化学循环的贡献至关重要。图像分析荧光显微镜通常基于摄像机技术,可以对单个细胞进行详细测量。描述了使用冷却的慢速扫描电荷耦合器件(CCD)相机的成像系统对自然海洋样本中单个浮游细胞的自动计数和大小确定的应用。将基于CCD的慢速扫描照相机与摄像机进行了比较,它在检测和分选非常细小的暗颗粒(例如荧光染料染色细菌)方面具有优势。评估了几种用于精确测量浮游细胞的边缘检测方法。在评估中使用了标准的荧光微球和Sargasso海表水的微微浮游生物种群。全局阈值不适用于这些样本。以前用于纳米浮游细胞(2至20微米)的图像分析的方法也不适用于较小的微型浮游细胞。结合了边缘检测器和自适应边缘强度算符的方法最适合快速生成准确的像元大小。对1000多个细胞的完整样品分析平均大约需要50分钟,并得出每个细胞的大小,形状和荧光数据。使用该系统,可以计算和测量微微浮游生物的整个大小范围。

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