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超分辨率显微镜图片库
由于光的衍射极限,传统共聚焦显微镜无法分辨约240纳米以下的结构。当需要提高分辨率以研究衍射极限尺度以下的结构和分子事件时,会使用超分辨率显微镜技术,如STED、PALM或STORM,或某些解卷积处理方法。
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多彩图库
荧光多色显微技术是多重成像技术的一个方面,可在同一实验中观察和分析同一样本中的多种元素--每种元素都标记有不同的荧光染料。这不仅能提高实验效率,还能获得更可靠、更有意义的结果,从而了解细胞和组织内的复杂过程。本图集展示了使用THUNDER和STELLARIS平台获得的标有多种荧光探针的样本图像。
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细胞生物学图片库
细胞生物学研究细胞的结构、功能和行为,包括细胞新陈代谢、细胞周期和细胞信号传导。荧光显微镜是细胞生物学家工具包中不可或缺的一部分。宽场显微镜和共聚焦显微镜被广泛用于观察细胞内复杂结构的细节。
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Kinetochore Assembly during Mitosis with TauSTED on 3D
Three-dimensional organization of the mitotic spindle together with the distribution of CENP-C and BUB1 based on TauSTED with multiple STED lines (592, 660 and 775 nm) can provide insights on…
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How to Quantify Changes in the Metabolic Status of Single Cells
Metabolic imaging based on fluorescence lifetime provides insights into the metabolic dynamics of cells, but its use has been limited as expertise in advanced microscopy techniques was needed.
Now,…
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Regulators of Actin Cytoskeletal Regulation and Cell Migration in Human NK Cells
Dr. Mace will describe new advances in our understanding of the regulation of human NK cell actin cytoskeletal remodeling in cell migration and immune synapse formation derived from confocal and…
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Benefits of TauContrast to Image Complex Samples
In this interview, Dr. Timo Zimmermann talks about his experience with the application of TauSense tools and their potential for the investigation of demanding samples such as thick samples or…
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How FLIM Microscopy Helps to Detect Microplastic Pollution
The use of autofluorescence in biological samples is a widely used method to gain detailed knowledge about systems or organisms. This property is not only found in biological systems, but also…