Flow Cytometry Compensation, Counting and Calibration
Flow Cytometry Compensation, Counting and Calibration
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Filtered Search Results
Invitrogen™ 123count eBeads™ Counting Beads
Intended for use in absolute counting of cells or other particles by flow cytometry. 123count eBeads are 7μm microparticles containing encapsulated dyes compatible with blue (488nm) and violet (405nm) excitation sources and emitting fluorescence between approximately 500nm and 750nm.
Invitrogen™ UltraComp eBeads™ Compensation Beads
Designed for use in compensation with all fluorochromes excited by ultraviolet, violet, blue, green, yellow-green, and red lasers. UltraComp eBeads™ react with antibodies of mouse, rat, and hamster origin, and are immunoglobulin light chain-independent. 1 drop (50μL)/test.
For Use With (Equipment) | Flow Cytometer |
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Product Type | Compensation Beads |
Product Line | eBeads™ |
Molecular Probes™ CountBright™ Absolute Counting Beads, for flow cytometry
CountBright™ Absolute Counting Beads, for flow cytometry
Invitrogen™ ArC™ Amine Reactive Compensation Bead Kit (for use with LIVE/DEAD™ Fixable dead cell stain kits)
ArC™ Amine Reactive Compensation Bead Kit (for use with LIVE/DEAD™ Fixable dead cell stain kits)
Shipping Condition | Room Temperature |
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Format | Tube |
For Use With (Equipment) | Flow Cytometer |
Product Type | Compensation Beads |
Diameter (Metric) | 6 μm |
Stain Configuration | Surface |
Quantity | 1 Kit |
Detection Method | Fluorescence |
Invitrogen™ AbC™ Total Antibody Compensation Bead Kit
Provides a consistent, accurate, and simple-to-use technique for the setting of flow cytometry compensation when using fluorochrome-conjugated mouse, rat, hamster, or rabbit antibodies with any laser in flow cytometry.
Shipping Condition | Room Temperature |
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Content And Storage | Contains 1 vial AbC™ Total Compensation capture beads and 1 vial of negative beads. |
Format | Tube |
For Use With (Equipment) | Flow Cytometer |
Product Type | Compensation Beads |
Diameter (Metric) | 6 μm |
Excitation Wavelength Range | any lasers (UV to 633/635) |
Product Line | AbC™ |
Detection Method | Fluorescence |
Invitrogen™ CountBright™ Plus Absolute Counting Beads
Calibrated suspension of ∼4 μm beads that encapsulate dyes that are excitable across a wide range of UV-IR wavelengths and brightly fluoresce in the emission range of 385-860 nm.
Invitrogen™ BrightComp eBeads™ Compensation Bead Kits
BrightComp eBeads compensation beads provide a consistent, accurate, and simple-to-use technique for setting flow cytometry compensation when using fluorescent protein-expressing samples.
Product Type | Compensation Beads |
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For Use With (Application) | Flow Cytometry |
Shipping Condition | Room Temperature |
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Content And Storage | Store at room temperature. |
Product Type | Fixation Medium |
Reagent Type | Fixation Reagent |
Molecular Probes™ Flow Cytometry Size Calibration Kit (nonfluorescent microspheres)
Flow Cytometry Size Calibration Kit (nonfluorescent microspheres)
Molecular Probes™ Alignflow™ Flow Cytometry Alignment Beads for Blue Lasers, 2.5 μm
Alignflow™ Flow Cytometry Alignment Beads for Blue Lasers, 2.5 μm
Molecular Probes™ Cell Sorting Set-up Beads (for red lasers)
Cell Sorting Set-up Beads (for red lasers)
Molecular Probes™ Alignflow™ Flow Cytometry Alignment Beads for Red Lasers, 6.0 μm
Alignflow™ Flow Cytometry Alignment Beads for Red Lasers, 6.0 μm
Invitrogen™ CountBright™ Plus Ready Tubes
CountBright Plus Ready Tubes offer the same advantages as CountBright Plus Absolute Counting Beads, but in ready-to-use tubes. This not only improves the accuracy and repeatability of cell counting, but also allows for convenient room temperature storage for up to 12 months.
Invitrogen™ eBioscience™ Human Intracellular (nuclear/transcription factor) Protein Flow Cytometry Workflow Kit
The eBioscience™ Human Intracellular (nuclear/transcription factor) Protein Flow Cytometry Workflow Kit contains all of the normal buffers, blockers, and beads needed to complete a standard flow cytometry experiment for staining intracellular nuclear and transcription factor targets in human cell suspensions.