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显微镜科学与教学知识中心

显微镜科学与教学知识中心

显微镜科学与教学知识中心

徕卡显微系统的知识库提供有关显微镜学科的科学研究和教学材料。内容旨在对显微镜初学者、有经验的显微镜操作实践者和使用显微镜的科学家在他们的日常工作和实验有所帮助。这里有探索交互式教程和应用笔记,你可以找到你需要的显微镜的基础知识以及前沿技术——快来加入徕卡显微知识社区,分享您的专业知识!

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…
Spontaneous colon adenoma

癌症活体显微镜检查

请加入我们的特邀演讲嘉宾 Jacco van Rheenen 教授的网络研讨会,他将展示他在驱动癌症起始和进展的细胞的身份、行为和命运方面的研究成果。

深组织成像的多光子显微镜原理

当成像厚样本时,荧光显微镜达到了其极限。可见光在生物组织中会被强烈散射,因此荧光成像的深度通常限制在大约100微米。

DIVE Multiphoton Microscope Image Gallery

Today’s life science research focusses on complex biological processes, such as the causes of cancer and other human diseases. A deep look into tissues and living specimens is vital to understanding…

什么传感器最适合共聚焦成像?

混合光电探测器(HyD)是最好的!为什么会这样,这篇简短的文章中有解释。
Multiphoton microscopy of an unstained mouse skin section acquired using the 4Tune detector.

Mission Impossible Accomplished: Tunable Colors for Non-descanning Detection

Leica Microsystems’ 4Tune detector, the key component of the SP8 DIVE Deep In Vivo Explorer, provides spectrally tunable image recording with non-descanning detection. An innovative solution for…
„Confetti-Mouse“, taken with the 4Tune spectral detector of Leica’s Deep in-vivo Explorer SP8 DIVE.

Laser Beam Shaping for Multicolor Multiphoton Microscopy

Multiphoton Microscopy is one of the current hot topics in life science research. The new Leica TCS SP8 DIVE from Leica Microsystems presents a series of beneficial new innovations, including a freely…

BABB Clearing and Imaging for High Resolution Confocal Microscopy

Multipohoton microscopy experiment using Leica TCS SP8 MP and Leica 20x/0.95 NA BABB immersion objective. Understanding kidney microanatomy is key to detecting and identifying early events in kidney…
[Translate to chinese:] CARS image of cellulose fibers. The fibers are visualized through the C–H vibrations of the polyglucan chains in cellulose.

CARS 相干反斯托克斯拉曼散射显微镜: 分子特征振动对比成像

相干反斯托克斯拉曼散射(CARS)显微技术是一种根据分子振动特征生成图像的技术。这种成像方法不需要标记,但可以从一系列重要的生物分子化合物中获得特定的分子信息。
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