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斑马鱼研究
为了在筛选、分拣、操作和成像过程中获取高质量结果,您需要观察细节和结构,从而为您的下一步研究做出正确的决策。
徕卡体视显微镜和透射光底座以出众的光学器件和优良的分辨率而闻名,是全世界研究学者的首选。
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如何优化多标成像技术推动3D空间组学发展
本次网络研讨会上,徕卡显微系统的Julia Roberti博士与Luis Alvarez博士将介绍STELLARIS共聚焦平台的全新功能SpectraPlex,该技术可实现超多标三维空间成像。该技术旨在通过实现超多标成像且无需频繁人工干预,从而简化和增强空间生物学应用。
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The Guide to Augmented Reality in Microsurgery
In an era of technological advancement, Augmented Reality (AR) is rapidly transforming the medical field. In surgical microscopy, AR can display fluorescence signals as digital overlays in real-time…
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Improving Zebrafish-Embryo Screening with Fast, High-Contrast Imaging
Discover from this article how screening of transgenic zebrafish embryos is boosted with high-speed, high-contrast imaging using the DM6 B microscope, ensuring accurate targeting for developmental…
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Transforming Research with Spatial Proteomics Workflows
Spatial Proteomics, Nature Methods 2024 Method of the Year, is driving research advancements in cancer, immunology, and beyond. By combining positional data with high throughput imaging of proteins in…
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超薄切片树脂内荧光技术方案
电子显微镜,包括透射电子显微镜 (TEM) 和扫描电子显微镜 (SEM),被广泛应用于获取生物样本或非生物材料的精细结构信息。超薄切片技术是制备厚度小于100纳米的超薄切片的首选方法,适用于透射电镜/扫描电镜分析。样品制备过程中,微小样本块被包埋于环氧或丙烯酸树脂中,去除多余树脂后,使用玻璃刀或金刚石刀将标本切成超薄切片 (50 nm - 100 nm)。
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Coherent Raman Scattering Microscopy Publication List
CRS (Coherent Raman Scattering) microscopy is an umbrella term for label-free methods that image biological structures by exploiting the characteristic, intrinsic vibrational contrast of their…