This work proposes a method for studying and monitoring in real-time a single cell on a 2D electrode matrix, of great interest in cell motility assays and in the characterization of cancer cell metastasis. A CMOS system proposal for cell location based on occupation maps data generated from Electrical Cell-substrate Impedance Spectroscopy (ECIS) has been developed. From this cell model, obtained from experimental assays data, an algorithm based on analysis of the 8 nearest neighbors has been implemented, allowing the evaluation of the cell center of mass. The path followed by a cell, proposing a Brownian route, has been simulated with the proposed algorithm. The presented results show the success of the approach, with accuracy over 9...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...
This work proposes a method for the study and real-time monitoring of a single cell on a 2D electro...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
A system for cell-culture real-time monitoring using an oscillation-based approach is proposed. The ...
This paper proposes a cell-microelectrode model for cell biometry applications, based on the area ov...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...
This work proposes a method for the study and real-time monitoring of a single cell on a 2D electro...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
A system for cell-culture real-time monitoring using an oscillation-based approach is proposed. The ...
This paper proposes a cell-microelectrode model for cell biometry applications, based on the area ov...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
The objective of this research is to develop fundamental understanding of cell-substrate (CS) and ce...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
Electric cell-substrate impedance sensing (ECIS) pioneered by Giaever and Keese is suitable for cont...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...