Label-free Identification of Nonelectrogenic Cancer Cells using Adhesion Noise

Time-continuous detection of cells on substrates without the need of optical microscopic imaging is of broad interest in biotechnological applications. We present a method how to detect cancer cells using voltage noise caused by cell adhesion which is recorded by high-density CMOS-based microelectro...

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Vydáno v:2023 IEEE BioSensors Conference (BioSensors) s. 1 - 4
Hlavní autoři: Ell, Maximilian, Zeitler, Ralf, Thewes, Roland, Zeck, Gunther
Médium: Konferenční příspěvek
Jazyk:angličtina
Vydáno: IEEE 30.07.2023
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Abstract Time-continuous detection of cells on substrates without the need of optical microscopic imaging is of broad interest in biotechnological applications. We present a method how to detect cancer cells using voltage noise caused by cell adhesion which is recorded by high-density CMOS-based microelectrode arrays. We analyze our data in terms of spectral power density for two different types of arrays, each of them being optimized in a different working regime.
AbstractList Time-continuous detection of cells on substrates without the need of optical microscopic imaging is of broad interest in biotechnological applications. We present a method how to detect cancer cells using voltage noise caused by cell adhesion which is recorded by high-density CMOS-based microelectrode arrays. We analyze our data in terms of spectral power density for two different types of arrays, each of them being optimized in a different working regime.
Author Ell, Maximilian
Zeck, Gunther
Thewes, Roland
Zeitler, Ralf
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  surname: Ell
  fullname: Ell, Maximilian
  email: maximilian.ell@tuwien.ac.at
  organization: Institute of Biomedical Electronics,TU Wien, Faculty of Electrical Engineering and Information Technology,Vienna,Austria
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  givenname: Ralf
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  organization: Chair of Sensor and Actuator Systems,TU Berlin, Faculty of Electrical Engineering and Computer Science,Berlin,Germany
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  givenname: Gunther
  surname: Zeck
  fullname: Zeck, Gunther
  organization: Institute of Biomedical Electronics,TU Wien, Faculty of Electrical Engineering and Information Technology,Vienna,Austria
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Snippet Time-continuous detection of cells on substrates without the need of optical microscopic imaging is of broad interest in biotechnological applications. We...
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SubjectTerms Adhesives
Arrays
Biosensors
cell adhesion noise
CMOS-based microelectrode array
HT-29 cell
Microelectrodes
Optical recording
Power system measurements
Voltage
Title Label-free Identification of Nonelectrogenic Cancer Cells using Adhesion Noise
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