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Updated: Aug 6, 2026

Analysis of Cell Suspensions Isolated from Solid Tissues by Spectral Flow Cytometry
Published on: May 5, 2017
Coincidence Detection in Flow Cytometry Using Pulse-Shape Analysis in Polydisperse Suspensions
Alexander Putz1, Jonas Gienger1, Martin Hussels1
1Physikalisch-Technische Bundesanstalt (PTB), Berlin, Germany.
This study introduces a novel method for flow cytometer coincidence correction, improving accuracy in cell counting. The new technique enhances detection sensitivity for various particle sizes and types in biological samples.
Area of Science:
- Biomedical Engineering
- Analytical Chemistry
- Hematology
Background:
- Flow cytometers are essential for cell characterization in medical diagnostics.
- Accurate cell counting is critical in hematology, necessitating precise coincidence correction methods.
- Current coincidence correction methods have limitations in sensitivity and accuracy.
Purpose of the Study:
- To develop an advanced post-processing procedure for flow cytometer signals to improve coincidence detection.
- To enhance the accuracy and speed of coincidence correction in cell concentration measurements.
- To differentiate coincidences between various particle sizes and cell types.
Main Methods:
- Developed a post-processing method for time-dependent detector signals (pulses).
- Analyzed pulse characteristics including area, maximum intensity, standard deviation, and skewness.
- Utilized standard deviation versus area, and pulse skewness/standard deviation for coincidence detection.
Main Results:
- The standard deviation versus area method significantly improved coincidence detection in monodisperse suspensions compared to traditional methods.
- Successfully identified and distinguished coincidences between different particle sizes (1 and 5 μm) and cell types (thrombocytes, erythrocytes) in polydisperse samples and whole blood.
- The developed procedure identifies coincidences for individual measurements, unlike dilution series methods.
Conclusions:
- The novel approach offers superior sensitivity and accuracy for coincidence detection in flow cytometry.
- This method provides a more precise way to correct for coincidences in cell concentration measurements.
- The technique is applicable to various sample types, including whole blood, enhancing diagnostic capabilities.
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