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Confocal laser scanning microscopy: using cuticular autofluorescence for high resolution morphological imaging in small crustaceans

机译:共聚焦激光扫描显微镜:使用表皮自体荧光在小型甲壳动物中进行高分辨率形态成像

摘要

The utility of cuticular autofluorescence for the visualization of copepod morphology by means of confocal laser scanning microscopy (CLSM) was examined. Resulting maximum intensity projections give very accurate information on morphology and show even diminutive structures such as small setae in detail. Furthermore, CLSM enables recognition of internal structures and differences in material composition. Optical sections in all layers and along all axes of the specimens can be obtained by CLSM. The facile and rapid preparation method bears no risk of artefacts or damage occurring to the preparations and the visualized specimens can be used for later analyses allowing for the investigation of irreplaceable type specimens or parts of them. These features make CLSM a very effective tool for both taxonomical and ecological studies in small crustaceans; however, the maximum thickness of the specimens is limited to a few hundred micrometers. Three-dimensional models based on CLSM image stacks allow observation of the preparations from all angles and can permit, improve and speed up studies on functional morphology. The visualization method described has a strong potential to become a future standard technique in aquatic biology due to its advantages over conventional light microscopy and scanning electron microscopy.
机译:研究了通过共聚焦激光扫描显微镜(CLSM)观察表皮自发荧光用于co足类形态的实用性。最终得到的最大强度投影可以提供非常准确的形态信息,甚至可以显示细小的结构,例如小刚毛。此外,CLSM能够识别内部结构和材料成分的差异。样品的所有层和沿所有轴的光学截面可以通过CLSM获得。简便,快速的制备方法不存在人工制品或制备物损坏的风险,可视化的标本可用于以后的分析,从而可以研究不可替代的标本或其中的一部分。这些特性使CLSM成为用于小型甲壳类动物分类学和生态学研究的非常有效的工具。但是,样品的最大厚度限制在几百微米。基于CLSM图像堆栈的三维模型可以从各个角度观察制剂,并且可以允许,改善和加速功能形态学的研究。所描述的可视化方法具有优于常规光学显微镜和扫描电子显微镜的潜力,具有成为水生生物学未来标准技术的巨大潜力。

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    Michels Jan;

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  • 年度 2007
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