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Quality assurance for polychromatic flow cytometry using a suite of calibration beads
by
Ambrozak, David
, Chattopadhyay, Pratip K
, Nguyen, Richard
, Perfetto, Stephen P
, Roederer, Mario
in
13/31
/ 631/1647/1407/1492
/ Analytical Chemistry
/ Biological Techniques
/ Calibration
/ Computational Biology/Bioinformatics
/ Efficiency
/ Filters
/ Flow
/ Flow cytometry
/ Flow Cytometry - instrumentation
/ Flow Cytometry - methods
/ Fluorescent Dyes
/ Lasers
/ Life Sciences
/ Methods
/ Microarrays
/ Optimization
/ Organic Chemistry
/ Protocol
/ protocol-update
/ Quality assurance
/ Quality Control
/ Quality management
/ Sensors
2012
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Quality assurance for polychromatic flow cytometry using a suite of calibration beads
by
Ambrozak, David
, Chattopadhyay, Pratip K
, Nguyen, Richard
, Perfetto, Stephen P
, Roederer, Mario
in
13/31
/ 631/1647/1407/1492
/ Analytical Chemistry
/ Biological Techniques
/ Calibration
/ Computational Biology/Bioinformatics
/ Efficiency
/ Filters
/ Flow
/ Flow cytometry
/ Flow Cytometry - instrumentation
/ Flow Cytometry - methods
/ Fluorescent Dyes
/ Lasers
/ Life Sciences
/ Methods
/ Microarrays
/ Optimization
/ Organic Chemistry
/ Protocol
/ protocol-update
/ Quality assurance
/ Quality Control
/ Quality management
/ Sensors
2012
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Do you wish to request the book?
Quality assurance for polychromatic flow cytometry using a suite of calibration beads
by
Ambrozak, David
, Chattopadhyay, Pratip K
, Nguyen, Richard
, Perfetto, Stephen P
, Roederer, Mario
in
13/31
/ 631/1647/1407/1492
/ Analytical Chemistry
/ Biological Techniques
/ Calibration
/ Computational Biology/Bioinformatics
/ Efficiency
/ Filters
/ Flow
/ Flow cytometry
/ Flow Cytometry - instrumentation
/ Flow Cytometry - methods
/ Fluorescent Dyes
/ Lasers
/ Life Sciences
/ Methods
/ Microarrays
/ Optimization
/ Organic Chemistry
/ Protocol
/ protocol-update
/ Quality assurance
/ Quality Control
/ Quality management
/ Sensors
2012
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Quality assurance for polychromatic flow cytometry using a suite of calibration beads
Journal Article
Quality assurance for polychromatic flow cytometry using a suite of calibration beads
2012
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Overview
The quality assurance program presented here provides a means to maximize and maintain the performance of individual flow cytometers in a facility. To optimize performance, we recommend performing all three steps (optimization, calibration and standardization) in this program when a new flow cytometer is installed or whenever the flow cytometer's optical path is altered (e.g., lasers, filters or detectors are replaced). The complete process requires 3–4 h. On a more frequent basis, only a subset of these procedures need to be performed as a part of daily maintenance routines. The data generated can be tracked to monitor the instrument and determine whether service is needed. In addition, the data can provide a metric for whether repairs and upgrades have improved or harmed performance, and for future instrument-to-instrument comparisons. In sum, the procedures presented here represent an updated framework for optimizing, calibrating and standardizing a flow cytometer for daily use.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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