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Designing the Future with Novel and Scalable Stem Cell Culture
Visionary biotech start-up Uncommon Bio is tackling one of the world’s biggest health challenges: food sustainability. In this webinar, Stem Cell Scientist Samuel East shows how they make stem cell…
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From Bench to Beam: A Complete Correlative Cryo Light Microscopy Workflow
In the webinar entitled "A Multimodal Vitreous Crusade, a Cryo Correlative Workflow from Bench to Beam" a team of experts discusses the exciting world of correlative workflows for structural biology…
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How to Study Gene Regulatory Networks in Embryonic Development
Join Dr. Andrea Boni by attending this on-demand webinar to explore how light-sheet microscopy revolutionizes developmental biology. This advanced imaging technique allows for high-speed, volumetric…
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![[Translate to chinese:] GLP-1 and PYY localized to distinct secretory pools in L-cells. [Translate to chinese:] GLP-1 and PYY localized to distinct secretory pools in L-cells.](/fileadmin/_processed_/0/2/csm_L-cells_366ce08e69.jpg)
前沿成像技术用于 GPCR 信号传导
通过这个按需网络研讨会,提升您的药理研究,了解 GPCR 信号传导,并探索旨在理解 GPCR 信号如何转化为细胞和生理反应的尖端成像技术。发现领先的研究,扩展我们对这些关键通路的认识,以寻找新的药物发现途径。
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Revealing Neuronal Migration’s Molecular Secrets
Different approaches can be used to investigate neuronal migration to their niche in the developing brain. In this webinar, experts from The University of Oxford present the microscopy tools and…
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您的 3D 类器官成像和分析工作流程效率如何?
类器官模型已经改变了生命科学研究,但优化图像分析协议仍然是一个关键挑战。本次网络研讨会探讨了类器官研究的简化工作流程,首先是实时的三维细胞培养检查,接下来是高速、高分辨率的三维成像,生成清晰的图像和更纯净的数据,以便对生长速率、细胞迁移和三维细胞相互作用等参数进行准确地人工智能分割和量化,从而实现更深入的洞察。
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![UC Enuity [Translate to chinese:] UC Enuity](/fileadmin/_processed_/e/9/csm_UC_Enuity_Detail_Header_411ca2e94e.jpg)
通过自动切片改善您的超薄切片工作流程
在不断发展的电镜样品制备领域,保持领先地位至关重要。这个网络研讨会提供了关于超薄切片最新进展的重要见解,这些进展可以显著增强您实验室的能力。
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![[Translate to chinese:] The role of extracellular signalling mechanisms in the correct development of the human brain [Translate to chinese:] The role of extracellular signalling mechanisms in the correct development of the human brain](/fileadmin/_processed_/a/e/csm_The_role_of_extracellular_signalling_mechanisms_in_the_correct_development_of_the_human_brain_6b9e3b80f0.jpg)
在神经发育过程中,细胞是如何相互交流的?
细胞间通信是大脑发育过程中一个必不可少的过程,它受到多种因素的影响,包括细胞的形态、粘附分子、局部细胞外基质和分泌囊泡。在本次网络研讨会上,您将了解到对这些机制更深入的理解是如何推动对神经发育障碍的理解的。
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![[Translate to chinese:] Multicolor fixed STED image. Inner ear section, mouse, TauSTED Xtend 589 on AF488 and TauSTED Xtend 775 on AF633-Phalloidin. [Translate to chinese:] Multicolor fixed STED image. Inner ear section, mouse, TauSTED Xtend 589 on AF488 and TauSTED Xtend 775 on AF633-Phalloidin. Sample courtesy of Dennis Derstrof, Klinik für Hals-, Nasen und Ohrenheilkunde, Universität Marburg & Prof. Dr. Dominik Oliver aus dem Institut für Physiologie und Pathophysiologie, Abteilung für Neurophysiologie, Universität Marburg.](/fileadmin/_processed_/c/a/csm_Inner_ear_section_mouse_multicolor_fixed_TauSTED_Xtend_09ebb898fd.jpg)
细胞活成像的纳米级扩展
新的STED显微技术方法——TauSTED Xtend,使得在纳米级别下对活体完整样本进行扩展多色成像成为可能。通过结合空间和寿命信息,TauSTED Xtend提供了额外一层信息,允许在极低的光剂量下分辨小细节并在整体结构中解析它们。