Ibidi µ-Slide I 0.2 Luer Glass Bottom 80167
The Ibidi µ-Slide I 0.2 Luer Glass Bottom 80167 is a specialized microscopic slide with a glass bottom and Luer connections. It is designed for live cell imaging and microscopy applications, providing a high-quality platform for cell culture and observation.
- Benefits/Advantages:
- Enhanced optical clarity: The glass bottom of the slide offers excellent transparency, enabling clear visualization and imaging of cells. It ensures minimal autofluorescence and distortion, providing reliable and accurate results.
- Compatibility with Luer fittings: The Luer connections allow for easy and secure attachment of syringe needles, tubing, or other devices. This simplifies the experimental setup and allows for easy media exchange or manipulation during live cell experiments.
- Stable and biocompatible: The slide is made of high-quality materials that are non-toxic and non-reactive with cells, ensuring optimal cell viability and functionality during imaging experiments.
- Convenience and versatility: The µ-Slide I 0.2 Luer Glass Bottom is compatible with standard microscopes and imaging systems, offering great flexibility for various microscopy techniques and applications.
Product Details
Model | |
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Product Type | Consumables |
Part Number | 80167 |
Brand | ibidi GmbH |
Gross Dimensions (WxDxH cm) | |
Net Dimensions (WxDxH cm) | |
Gross Weight (kg) | |
Net Weight (kg) |
Coverslip Material | Glass 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.