Science Lab

Science Lab

Science Lab

Willkommen auf dem Wissensportal von Leica Microsystems. Hier finden Sie wissenschaftliches Forschungs- und Lehrmaterial rund um das Thema Mikroskopie. Das Portal unterstützt Anfänger, erfahrene Praktiker und Wissenschaftler gleichermaßen bei ihrer täglichen Arbeit und ihren Experimenten. Erkunden Sie interaktive Tutorials und Anwendungshinweise, entdecken Sie die Grundlagen der Mikroskopie ebenso wie High-End-Technologien. Werden Sie Teil der Science Lab Community und teilen Sie Ihr Fachwissen.
Hunched working position without a microscope (left) and upright neutral posture achieved with the M320 dental microscope (right).

Dental Loupes vs Microscopes: Exploring Visualization Options in Dentistry

Dental professionals often ask: “Should I use dental loupes or invest in a microscope?” This article explores the key differences between dental microscopes and dental loupes, focusing on…

Sechs wichtige Faktoren für die Auswahl eines Dentalmikroskops

In der Zahnmedizin ist das Operationsmikroskop mittlerweile ein wichtiges Werkzeug für qualitativ hochwertige und erfolgreiche Operationen, insbesondere im Bereich der Endodontie. Ein Mikroskop…
Proveo 8x 3D digital microscope used in ophthalmic surgery, illustrating heads‑up visualization and clinical collaboration.

4 Key Benefits of 3D Digital Microscopy in Ophthalmic Surgery

3D digital visualization is rapidly transforming ophthalmic surgery. Modern 3D surgical microscopes enable surgeons to perform procedures using high-resolution digital displays rather than traditional…
Some 2D measurements, e.g., lengths and areas, made on a PCB sample with a Leica measurement microscope using the Enersight software.

How to Select the Right Measurement Microscope

With a measurement microscope, users can measure the size and dimensions of sample features in both 2D and 3D, something crucial for inspection, QC, failure analysis, and R&D. However, choosing the…
Sectioning resin-embedded sambles

Ultramicrotomy eBook: Targeting, Trimming & Alignment

Ultramicrotomy is evolving rapidly, and today’s microscopes demand high‑quality sections, precise targeting, and reproducible workflows. This eBook brings together expert application notes, automated…
U2OS cells transfected with an Mx1-GFP plasmid (signal enhanced using Alexa Fluor 488-conjugared anti-GFP antibody) and co-stained for nuclear DNA (Hoechst 33342), microtubules (Alexa 555) and F-actin (ATTO 643). Image was captured on Mateo FL.

Microscopy and AI Solutions for 2D Cell Culture

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…
Artificial Intelligence (AI) segmentation used in conjunction with LMD to increase discovery throughput.

Biomarker Discovery with Laser Microdissection

Explore the potential of spatial proteomics workflows, such as Deep Visual Proteomics (DVP), to decipher pathology mechanisms and uncover druggable targets. Altered protein expression, abundance, or…
Digital microscopy simplifies documenting cell-culture results electronically while following 21 CFR part 11 guidelines for biopharma.

Introduction to 21 CFR Part 11 for Electronic Records of Cell Culture

This article provides an introduction to the recommendations of 21 CFR Part 11 from the FDA, specifically focusing on the audit trail and user management in the context of cell-culture laboratories.…
Molecular structure of the green fluorescent protein (GFP)

Introduction to Fluorescent Proteins

Overview of fluorescent proteins (FPs) from, red (RFP) to green (GFP) and blue (BFP), with a table showing their relevant spectral characteristics.
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