THUNDER 成像系统为您提供先进的 3D 细胞培养实验解决方案,无论您是要研究干细胞、球状体还是类器官。 THUNDER 3D Live Cell 与 3D Cell Culture 成像系统可优化实验条件(例如更低的光强度和更短的曝光时间),从而满足您以接近细胞生理状态的实验条件研究细胞的要求。
In this webinar, Dr. Andreas Mund introduces Deep Visual Proteomics (DVP) – a cutting-edge platform that integrates AI-powered tissue modeling with spatially resolved, untargeted proteomics. He…
This eBook explores the integration of microscopy and AI technologies in 2D cell culture workflows. It highlights how traditional imaging methods—such as brightfield, phase contrast, and…
Long-term 3D imaging reveals how complex multicellular systems grow and develop and how cells move and interact over time, unlocking critical insights into development, disease, and regeneration.…
The article outlines a detailed workflow for studying biological tissues in three dimensions using volume-scanning electron microscopy (volume-SEM) combined with AI-assisted image analysis. The focus…
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…
This application note showcases how the Viventis Deep dual-view light sheet microscope was successfully used by researchers for exploring high-resolution, long-term imaging of 3D multicellular models…
Fyodor Urnov博士和Sadik Kassim博士最初是在ASGCT 2025会议上作这一按需演讲的,演讲的重点是遗传医学中的一个关键挑战:如何将CRISPR疗法从单一疾病解决方案扩展到平台方法,特别是针对罕见的儿科遗传疾病。Urnov 博士展示了由 Matthew Kan 博士领导的创新基因组研究所的工作,这是 IGI-Danaher Beacon for CRISPR Cures…