ibidi Pump System
ibidi GmbHA pump system for the cultivation of, e.g. endothelial, cells under flow for simulation of blood vessels. Combine with ibidi Channel slides, such as the µ-Slide I Luer, for cell culture under flow conditions.
A pump system for the cultivation of, e.g. endothelial, cells under flow for simulation of blood vessels. Combine with ibidi Channel slides, such as the µ-Slide I Luer, for cell culture under flow conditions.
Easy setup directly on your microscope: perform live cell imaging in dishes, slides, or multiwell plates. The ibidi Stage Top Incubation Systems fit every standard inverted microscope and include CO 2 and O 2 control as well as actively controlled humidity. They are ideal for all live cell imaging applications and available for single slides and dishes as well as for multiwell plates.
Use this versatile 35 mm imaging Dish for high-end microscopy through the #1.5 coverslip bottom.
Use this chambered coverslip with 8 wells for cell culture, immunofluorescence, and high-end microscopy. Also available with 2, 4, or 18 wells.
Use this high-quality rat tail collagen type I solution for cell culture applications (e.g., 3D gels, scaffolds, and coating).
Use this Multiwell plate with black walls, square wells, and a flat and clear coverslip bottom (#1.5 ibidi Polymer Coverslip) for high-throughput applications in cell-based assays. Also available with 24 wells.
Use this channel microscopy slide with a coverslip bottom (#1.5 ibidi Polymer or #1.5H glass) for immunofluorescence, cell culture under flow, live cell imaging, and high resolution microscopy on inverted microscopes. Available in various channel heights.
Use these silicone inserts with a defined cell-free gap for wound healing assays, migration assays, 2D invasion assays, and co-cultivation of cells. Available with 2, 3, or 4 wells.
Use this slide to investigate angiogenesis in tube formation assays. Also ideal for 3D cell culture and immunofluorescence staining. Also available in a 96 well format.
Investigate chemotaxis of fast or slow migrating adherent cells and non-adherent cells in 2D or 3D gel matrices.