Medizinische Fachgebiete

Medizinische Fachgebiete

Medizinische Fachgebiete

Entdecken Sie eine umfassende Sammlung wissenschaftlicher und klinischer Ressourcen, die speziell für Ärzte im Gesundheitswesen entwickelt wurden, darunter Berichte von Kollegen, klinische Fallstudien und Symposien. Speziell für Neurochirurgen, Augenärzte, plastische und rekonstruktive Chirurgen, HNO-Ärzte und Zahnärzte. Diese Sammlung präsentiert die neuesten Fortschritte in der chirurgischen Mikroskopie. Entdecken Sie, wie modernste chirurgische Technologien wie AR-Fluoreszenz, 3D-Visualisierung und intraoperative OCT-Bildgebung eine sichere Entscheidungsfindung und Präzision bei komplexen Eingriffen ermöglichen.
Aivia_Neuroscience-VBE comparison mouse-1_traced_ROI

Accelerating Neuron Image Analysis with Automation

The ability to examine complex neural processes relies on the accurate reconstruction of neuronal networks at scale. Most data extraction methods in neuroscience research are time-consuming and…
Separation of cells based on their tracking status: A colourised binary mask of a time-lapse microscopy field of view of medium confluency with individual cells highlighted as survivors if they can be tracked since the initial movie frame (cyan), incomers if they migrated into the field of view throughout the movie (yellow) or mistracks if an error occurred in the automated trajectory reconstruction (red).

Tracking Single Cells Using Deep Learning

AI-based solutions continue to gain ground in the field of microscopy. From automated object classification to virtual staining, machine and deep learning technologies are powering scientific…
Analysis of anatomy and axon orientation of an adult mouse brain tissue with QLIPP.

Learning the Cellular Architecture from its Optical Properties

In the last 3 years, microscopists have started to use "AI based" solutions for a wide range of applications, including image acquisition optimization (smart microscopy), object classification, image…
Dynamic Signal Enhancement powered by Aivia:  Truly simultaneous multicolor imaging of live cells (U2OS) in 3D

Artificial Intelligence and Confocal Microscopy – What You Need to Know

This list of frequently asked questions provides “hands-on” answers and is a supplement to the introductory article about Dynamic Signal Enhancement powered by Aivia "How Artificial Intelligence…
Dynamic Signal Enhancement powered by Aivia: Truly simultaneous multicolor imaging of live cells (U2OS) in 3D

How Artificial Intelligence Enhances Confocal Imaging

In this article, we show how artificial intelligence (AI) can enhance your imaging experiments. Namely, how Dynamic Signal Enhancement powered by Aivia improves image quality while capturing the…

Designing your Research Study with Multiplexed IF Imaging

Multiplexed tissue analysis is a powerful technique that allows comparisons of cell-type locations and cell-type interactions within a single fixed tissue sample. It is common for researchers to ask…

Formulated Product Characterization with SRS Microscopy

Creams, pastes, gels, emulsions, and tablets are ubiquitous across a wide range of manufacturing sectors from pharmaceuticals and consumer health products to agrochemicals and paint. To improve…

High-resolution 3D Imaging to Investigate Tissue Ageing

Award-winning researcher Dr. Anjali Kusumbe demonstrates age-related changes in vascular microenvironments through single-cell resolution 3D imaging of young and aged organs.

How to Successfully Perform Live-Cell CLEM

The Leica Nano workflow provides a streamlined live-cell CLEM solution for getting insight bout structural changes of cellular components over time. Besides the technical handling described in the…
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