A Novel Laser-Based Method for Studying Optic Nerve Regeneration
Optic nerve regeneration is a major challenge in neurobiology due to the limited self-repair capacity of the mammalian central nervous system (CNS) and the inconsistency of traditional injury models.…
How to Image Axon Regeneration in Deep Muscle Tissue
This study highlights Dr. Aaron Lee’s research on mapping nerve regeneration in muscle grafts post-amputation. Limb loss often leads to reduced quality of life, not only from tissue loss but also due…
A Guide to Using Microscopy for Drosophila (Fruit Fly) Research
The fruit fly, typically Drosophila melanogaster, has been used as a model organism for over a century. One reason is that many disease-related genes are shared between Drosophila and humans. It is…
神经科学研究指南
神经科学通常需要研究具有挑战性的样本,以便更好地了解神经系统和疾病。徕卡显微镜可帮助神经科学家深入了解神经元的功能。
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。
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…
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…
揭开类器官模型在生物医学研究中的秘密
准备深入了解类器官和3D培养物的世界,它们是促进我们了解人类健康的重要工具。浏览这些复杂的结构并获取清晰的图像进行分析是一项挑战。在本次活动中,来自牛津大学和伦敦大学学院的研究人员将与我们一起展示Thunder Imager Cell转盘共聚焦系统 如何提供更有说服力的高质量数据,以便深入了解各种模型。
Mica: 助力伦敦帝国学院开展跨学科科研研究
这篇访谈重点介绍了伦敦帝国学院的 Mica 所产生的变革性影响。科学家们解释了Mica如何改变了游戏规则,扩大了研究的可能性,促进了跨学科合作。他们解释了使用 Mica 进行详细的活细胞成像如何提供更有意义的信息,使科学家始终站在研究的最前沿。研究小组预计,Mica将继续开辟新的研究途径,包括研究微流体技术和其他先进应用。