Attune CytPix Flow Cytometer
The Attune CytPix Flow Cytometer is an advanced cell analyzer that combines acoustic focusing fluidics for high sensitivity and high throughput with a high-speed camera.

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Imaging-enhanced flow cytometer applications include almost any study that can benefit from understanding the morphology of each cell population identified. The imaging capability lets you look more deeply into results to:
Confirm gate accuracy in real time
Use images to adjust gates and camera settings, and exclude atypical cells and debris for more robust gating
Further characterize cell populations
Document morphologically distinct populations in existing protocols such as apoptosis detection
Capture cell-to-cell interactions
With visual clarity
Visualize structural features of large populations
With high-throughput, detailed photographic evidence
Discover opportunities for analysis
Based on fluorescence, scatter, and morphological features
High-throughput quality control
Detect quality issues quickly by adding rapid imaging to cell culture QC workflows, and monitor changes in cell morphology as the plate is processed
Automated image analysis reduces user-to-user variability in flow cytometry gating strategies
The need for high-throughput sample acquisition and automation in flow cytometry creates demand for new methods for analytical standardization and for reducing sources of variability. When performed on the Attune CytPix Flow Cytometer, automated image analysis combined with conventional flow cytometry provides a robust quantitative method for standardizing flow cytometry data analysis. In this application note, Thermo Fisher Scientific demonstrates that automated image-assisted analysis enables more accurate gating of true singlet populations and exclusion of unwanted events.
How cell image data is enhancing flow cytometry, enabling ground-breaking discoveries
The addition of cell image data in flow cytometry is enabling researchers using the MSU Flow Cytometry Core to make new discoveries in cell cycle analysis, endospore lifecycle, nanoparticle uptake in bacteria, and more. Hear why Dr. Daniel Vocelle, Assistant Professor in the department of Pharmacology & Toxicology Department at Michigan State University and Assistant Director of the MSU Flow Cytometry Core Facility, chose the Attune™ CytPix™ Flow Cytometer from Thermo Fisher Scientific. Learn how this state-of-the-art high-throughput flow cytometer, which combines acoustic focusing with a high-speed brightfield camera, is helping researchers to better troubleshoot their experiments.
Automated image analysis with the Attune CytPix Flow Cytometer
In this video, Thermo Fisher Scientific presents the Attune CytPix Flow Cytometer, an advanced cell analyzer that combines acoustic focusing fluidics for high sensitivity and high throughput with a high-speed camera. The Attune CytPix Flow Cytometer now has built-in image analysis software.
The Attune CytPix Flow Cytometer enables you to gain more data with automated image analysis
In this video, discover how you can gain more data from your flow sample, without sacrificing speed, with the Attune CytPix Flow Cytometer by Thermo Fisher Scientific.
Improve accuracy in your flow cytometry data analysis with the Attune CytPix Flow Cytometer
In this video, Thermo Fisher Scientific shows how you can improve accuracy in your flow cytometry data with the Attune CytPix Flow Cytometer, which now has automated image analysis for doublet discrimination, live-dead analysis, and more.
Save time by combining two workflows with the Attune CytPix Flow Cytometer
In this video, Thermo Fisher Scientific explains how you can Save time by combining two workflows with the Attune CytPix Flow Cytometer. The Attune CytPix Flow Cytometer is an advanced cell analyzer that combines acoustic focusing fluidics for high sensitivity and high throughput with a high-speed camera.
Here’s how experts are breaking down barriers in flow cytometry
A flow cytometry technician shares how live high-speed image capture increases the range of information obtained from limited sample materials


















