ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit

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Bibliographic Details
Main Author: Kurt Langenbach
Format: Article
Language:English
Published: Taylor & Francis Group 2010-10-01
Series:BioTechniques
Online Access:https://www.future-science.com/doi/10.2144/000113518
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author Kurt Langenbach
author_facet Kurt Langenbach
author_sort Kurt Langenbach
collection DOAJ
format Article
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issn 0736-6205
1940-9818
language English
publishDate 2010-10-01
publisher Taylor & Francis Group
record_format Article
series BioTechniques
spelling doaj-art-7d21397326634d17b8128f21b0da296c2025-08-20T02:25:51ZengTaylor & Francis GroupBioTechniques0736-62051940-98182010-10-0149475775810.2144/000113518ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing UnitKurt Langenbach01Manager/Scientist, BioServices Division ATCC, 10801 University Boulevard, Manassas, VA 20110–2209 USAhttps://www.future-science.com/doi/10.2144/000113518
spellingShingle Kurt Langenbach
ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
BioTechniques
title ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
title_full ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
title_fullStr ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
title_full_unstemmed ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
title_short ATCC Technology Assessment of Roche xCELLigence™ System–An Electronic Impedance-Based Cell Sensing Unit
title_sort atcc technology assessment of roche xcelligence™ system an electronic impedance based cell sensing unit
url https://www.future-science.com/doi/10.2144/000113518
work_keys_str_mv AT kurtlangenbach atcctechnologyassessmentofrochexcelligencesystemanelectronicimpedancebasedcellsensingunit