Ibidi µ-Slide Angiogenesis ibiTreat 81506
The Ibidi µ-Slide Angiogenesis ibiTreat 81506 is a microscopy slide specifically designed for studying angiogenesis, the formation of new blood vessels. It provides a controlled environment for observing and analyzing angiogenic processes in vitro, allowing researchers to gain valuable insights into the mechanisms of blood vessel growth and development.
- Benefits/Advantages:
- High-quality imaging: The µ-Slide Angiogenesis ibiTreat 81506 features a thin, optically clear bottom that optimizes image quality and minimizes autofluorescence, enabling precise observation and analysis of angiogenesis.
- Precise equidistant channels: The slide incorporates six equidistant channels, each with a width of 100 µm, facilitating the controlled and uniform formation of capillary-like structures.
- Compatible with various assays: The ibiTreat surface treatment of the slide ensures excellent cell adhesion and growth, making it compatible with various cell-based assays commonly used in angiogenesis research.
- Easy handling: The slide's standard microscopy slide format ensures compatibility with most fluorescence microscopes, making it convenient and user-friendly for researchers.
Product Details
Model | |
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Product Type | Consumables |
Part Number | 81506 |
Brand | ibidi GmbH |
Gross Dimensions (WxDxH cm) | |
Net Dimensions (WxDxH cm) | |
Gross Weight (kg) | |
Net Weight (kg) |
Coverslip Material | Polymer Coverslip |
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ibidi GmbH
ibidi is a leading global supplier for functional cell-based assays and advanced products for cellular microscopy. A shared passion among the team for innovation, quality, service and a strong relationship to the customers, are the keys to ibidi's excellence and success.
ibidi is committed to supplying the highest quality products and service at a good value. Its innovative research tools enabling scientists to achieve outstanding success and breakthroughs in life sciences, pharma, biotechnology, and medical diagnostics. ibidi’s goal is to provide scientists with standardized workflows that result in reproducible and truly objective scientific data, which can also be translated into therapies.