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(ibidi) μ - Glide photoelectric correlation microscope slide -80361
(ibidi) μ - Glide photoelectric correlation microscope slide -80361
Product details
Item number | product name | Specifications (pcs/box) |
80361 | μ - Glide photoelectric correlation microscope slide | 15 |
2. More suitable for repositioning cells and cell clusters in tissues
3. Samples can be prepared directly in an open chamber, and after the chamber is closed, cell shear force experiments can be conducted
4. It can be directly used for high-resolution optical microscopes and electron microscopes to observe cells through the glass bottom of high polymers
application
1. Photoelectric Correlation Microscope (CLEM)
2. Single cell or tissue samples
3. Sample perfusion
FEATURES
1. Mainly designed for FEI equipment, but can also be used in other fields
2. The bottom is engraved with a grid of 100 microns
3. Use letters and numbers to represent the latitude and longitude of the grid, respectively
4. The lattice can be clearly seen in phase contrast and bright field microscopy, but it appears dimmer under fluorescence microscopy
5. Suitable for high-end microscopes, with ideal optical imaging effects

2. More suitable for repositioning cells and cell clusters in tissues
3. Samples can be prepared directly in an open chamber, and after the chamber is closed, cell shear force experiments can be conducted
4. It can be directly used for high-resolution optical microscopes and electron microscopes to observe cells through the glass bottom of high polymers
application
1. Photoelectric Correlation Microscope (CLEM)
2. Single cell or tissue samples
3. Sample perfusion
FEATURES
1. Mainly designed for FEI equipment, but can also be used in other fields
2. The bottom is engraved with a grid of 100 microns
3. Use letters and numbers to represent the latitude and longitude of the grid, respectively
4. The lattice can be clearly seen in phase contrast and bright field microscopy, but it appears dimmer under fluorescence microscopy
5. Suitable for high-end microscopes, with ideal optical imaging effects

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