首页> 外文期刊>Annals of anatomy =: Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft >Modern laser scanning microscopy in biology, biotechnology and medicine.
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Modern laser scanning microscopy in biology, biotechnology and medicine.

机译:生物学,生物技术和医学领域的现代激光扫描显微镜。

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Laser microscopic techniques currently used in morphology and cell biology represent highly sensitive tools for detecting biomolecules within their natural environment. Use of the fluorescence-, reflectance- and transmission modes of confocal laser scanning microscopes (CLSM) equipped with He-Ne- and Ar+-ion lasers for CeIV and DAB based detection of endogenous or immunobound enzymatic activities in tissue sections (vibratome, cryostat, paraffin and semithin plastic sections) opens a wide range of interesting new possibilities in cellular and molecular biology. Increased resolution power, blur-free confocal imaging, higher sensitivity, optical sectioning capability and 3D-image analysis provide a large quantity of valuable information about biological objects specimens. The new infrared multiphoton laser scanning microscopy (NIR-LSM) is increasingly becoming the optical tool of choice for (a) fluorescence imaging of cellular and subcellular components with high spatial and temporal resolution, (b) fluorescence resonance energy transfer between physiologically relevant molecular species involving protein-protein interactions, (c) nanoprocessing within living cells and tissues, with varied applications in (d) photochemistry and (e) medical diagnostics as well. Both, CLSM and NIR-LSM as modern microscopical strategies are indispensable in basic research and will prove to be invaluable for clinical diagnostic studies and therapy in the near future.
机译:当前在形态学和细胞生物学中使用的激光显微技术代表了用于检测自然环境中生物分子的高度灵敏的工具。配备He-Ne-和Ar +离子激光的共聚焦激光扫描显微镜(CLSM)的荧光,反射和透射模式用于基于CeIV和DAB的组织切片中内源性或免疫结合酶活性的检测(振动刀,低温恒温器,石蜡和半薄塑料切片)为细胞和分子生物学开辟了许多有趣的新可能性。提高分辨率的能力,无模糊共焦成像,更高的灵敏度,光学切片能力和3D图像分析为生物物体标本提供了大量有价值的信息。新的红外多光子激光扫描显微镜(NIR-LSM)越来越成为(a)具有高时空分辨率的细胞和亚细胞成分的荧光成像,(b)生理相关分子之间的荧光共振能量转移的光学工具的选择涉及蛋白质-蛋白质相互作用,(c)活细胞和组织内的纳米加工,在(d)光化学和(e)医学诊断中也有多种应用。 CLSM和NIR-LSM作为现代微观策略在基础研究中都是必不可少的,并且在不久的将来将被证明对于临床诊断研究和治疗具有不可估量的价值。

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