Microfluidic impedance cytometry-measuring single cells at high speed
Microfluidic impedance cytometry-measuring single cells at high speed
High throughput single cell microfluidic analysis platforms offer the ability to characterize large numbers of individual cells (or more generally particles) at high speed. Miniature flow cytometers offer new methods for the rapid analysis of single cells. Impedance analysis of single cells provides information on cell size (volume), membrane and cytoplasmic characteristics. The technology has developed rapidly and offers the prospects of new approaches for counting and differentiating cells with applications from basic research to point of care diagnostics.
Sun, Tao
b2f8e932-a7e6-4fe7-94dd-5c4ce725eacb
Morgan, Hywel
de00d59f-a5a2-48c4-a99a-1d5dd7854174
Sun, Tao
b2f8e932-a7e6-4fe7-94dd-5c4ce725eacb
Morgan, Hywel
de00d59f-a5a2-48c4-a99a-1d5dd7854174
Sun, Tao and Morgan, Hywel
(2010)
Microfluidic impedance cytometry-measuring single cells at high speed.
In,
Microfluidics based microsystems for security-fundamentals and applications.
Springer.
(In Press)
Record type:
Book Section
Abstract
High throughput single cell microfluidic analysis platforms offer the ability to characterize large numbers of individual cells (or more generally particles) at high speed. Miniature flow cytometers offer new methods for the rapid analysis of single cells. Impedance analysis of single cells provides information on cell size (volume), membrane and cytoplasmic characteristics. The technology has developed rapidly and offers the prospects of new approaches for counting and differentiating cells with applications from basic research to point of care diagnostics.
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Accepted/In Press date: 2010
Organisations:
Nanoelectronics and Nanotechnology
Identifiers
Local EPrints ID: 268209
URI: http://eprints.soton.ac.uk/id/eprint/268209
PURE UUID: 060e5bc2-1750-4bcf-9173-d9c5c0940eb7
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Date deposited: 13 Nov 2009 14:20
Last modified: 11 Dec 2021 03:55
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Contributors
Author:
Tao Sun
Author:
Hywel Morgan
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