Cell-based impedance spectroscopy (CBI) is a powerful tool that uses the principles of electrochemical impedance spectroscopy (EIS) by measuring changes in electrical impedance relative to a voltage applied to a cell layer. CBI provides a promising platform for the detection of several properties of cells including the adhesion, motility, proliferation, viability and metabolism of a cell culture. This review gives a brief overview of the theory, instrumentation, and detection principles of CBI. The recent applications of the technique are given in detail for research into cancer, neurodegenerative diseases, toxicology as well as its application to 2D and 3D in vitro cell cultures. CBI has been established as a biophysical marker to provide ...
In this paper we report on the electrical impedance spectroscopy characterization of the attachment...
This research focuses on the detection and characterization of cells using impedance-based technique...
This paper describes a simple and convenient method to monitor on-line cell adhesion by electrical i...
Cellular heterogeneity is of significance in cell-based assays for life science, biomedicine and cli...
In general, cell culture-based assays, investigations of cell number, viability, and metabolic activ...
An electrical impedance sensing device which integrates multielectrode automated impedance spectrosc...
BACKGROUND: Acquisition of electrical impedance spectroscopy (EIS) measurements enables one to obtai...
Electric cell-substrate impedance sensing (ECIS) is described for real time monitoring of cell behav...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Human cells are able to respond to applied electrical signals and their response is different accord...
Interest in impedance-based cellular assays is rising due to their remarkable advantages, including ...
Abstract: We used an electrical cell-substrate impedance sensing (ECIS) technique to measure changes...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
An on-line and continuous technique based on electric cell substrate impedance sensing (ECIS) was de...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
In this paper we report on the electrical impedance spectroscopy characterization of the attachment...
This research focuses on the detection and characterization of cells using impedance-based technique...
This paper describes a simple and convenient method to monitor on-line cell adhesion by electrical i...
Cellular heterogeneity is of significance in cell-based assays for life science, biomedicine and cli...
In general, cell culture-based assays, investigations of cell number, viability, and metabolic activ...
An electrical impedance sensing device which integrates multielectrode automated impedance spectrosc...
BACKGROUND: Acquisition of electrical impedance spectroscopy (EIS) measurements enables one to obtai...
Electric cell-substrate impedance sensing (ECIS) is described for real time monitoring of cell behav...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Human cells are able to respond to applied electrical signals and their response is different accord...
Interest in impedance-based cellular assays is rising due to their remarkable advantages, including ...
Abstract: We used an electrical cell-substrate impedance sensing (ECIS) technique to measure changes...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
An on-line and continuous technique based on electric cell substrate impedance sensing (ECIS) was de...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
In this paper we report on the electrical impedance spectroscopy characterization of the attachment...
This research focuses on the detection and characterization of cells using impedance-based technique...
This paper describes a simple and convenient method to monitor on-line cell adhesion by electrical i...