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Sony ID700 cell analyzer with operator in lab coat holding a test tube
Over the past decade, Sony has brought spectral flow cytometers ranging from the entry-level SA3800 to the high-end, powerful ID7000™ to laboratories across the globe, adapting Sony technology to meet research needs across a variety of application areas. With these systems, researchers can use fluorochrome combinations that were previously not possible with traditional non-spectral instruments.
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The ID7000 combines highest optical performance with streamlined software workflows, enabling seamless experiment set up, best resolution and unbiased multicolor data.
  • Capability for Every Laboratory - 186 detectors are built within upgradable configurations to provide fluorescence detection from 360 to 920 nm.
  • Highest Fidelity of Information - spectral signatures are evenly detected with a resolution of approximately 10 nm across all 32 channel PMT arrays to capture the entire spectral profile without data stitching.
  • Spectral Resolution - overlapping fluorochromes are accurately resolved - and up to eight autofluorescence signals can be unmixed from fluorescence to resolve dim signal and rare populations.
  • Adaptable Spectral Reference Library - reuse, update, and share reference controls and reduce the number of tubes to be run with every high-parameter experiment.
The Spectral Flow Analysis Life Sciences Cloud Platform is Here!
The SFA Life Sciences Cloud Platform is a cloud-based solution that can efficiently perform a wide array of analysis protocols, from a conventional analysis, to an advanced analysis such as dimensionality reduction or clustering. Designed to work effortlessly with the ID7000, the SFA Platform can directly import raw data output or analysis results from the ID7000 software without any conversion. Get the most out of your ID7000 workflow by learning more about the analysis tools available in the SFA Life Sciences Cloud Platform.
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Bram van Cranenbroek and Hans J.P.M. Koenen, PhD – Radboud University Medical Center Nijmegen Revolutionizing the analysis of cells in clinical research applications with the ID7000.
David Onion, Flow Cytometry Facility Manager – University of Nottingham Using spectral flow cytometry to measure SARS-CoV-2 specific T cells.
Charlotte Petersen, Head of the FACS Core Facility – Aarhus University: Using Spectral flow cytometry for next generation cell analysis.
Hind Hussein, Postdoctoral Researcher – TARGID, KU Leuven How to elucidate intestinal neuro-immune interactions with spectral flow cytometry.
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