This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cultures. It allows to represent biological samples by using a new impedance sensing method, and exploiting the electrode-to-cell model for both electrical simulation and imaging reconstruction. Preliminary electrical simulations are reported to validate the proposal for Electrical Cell Impedance Spectroscopy (ECIS) applications. The results reported show that low concentration cell culture can be correctly sensed and displayed at several frequencies using the proposed CMOS system.Ministerio de Ciencia e Innovación TEC2007-6807
This paper proposes the application of a cell-microelectrode model in cell biometry experiments, usi...
This work proposes a method for studying and monitoring in real-time a single cell on a 2D electrode...
A complete microsensor array with integrated circuitry, fabricated using a conventional complementar...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
This paper presents a computer tool for automatic analysis of cell culture images. The program allow...
A system for cell-culture real-time monitoring using an oscillation-based approach is proposed. The ...
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...
Sensing cellular adhesion via impedance measurements provides a versatile and easily accessible mean...
This paper presents the fitting process followed to adjust the parameters of the electrical model as...
Biological Impedance is a physical property related to the state and inherent evolution of biologica...
Many biomedical applications require observing the response of biological cells to various stimuli a...
This paper proposes a cell-microelectrode model for cell biometry applications, based on the area ov...
This paper presents a computer tool for automatic analysis of cell culture images. The program allo...
This paper proposes the application of a cell-microelectrode model in cell biometry experiments, usi...
This work proposes a method for studying and monitoring in real-time a single cell on a 2D electrode...
A complete microsensor array with integrated circuitry, fabricated using a conventional complementar...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
This paper presents a computer tool for automatic analysis of cell culture images. The program allow...
A system for cell-culture real-time monitoring using an oscillation-based approach is proposed. The ...
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...
Sensing cellular adhesion via impedance measurements provides a versatile and easily accessible mean...
This paper presents the fitting process followed to adjust the parameters of the electrical model as...
Biological Impedance is a physical property related to the state and inherent evolution of biologica...
Many biomedical applications require observing the response of biological cells to various stimuli a...
This paper proposes a cell-microelectrode model for cell biometry applications, based on the area ov...
This paper presents a computer tool for automatic analysis of cell culture images. The program allo...
This paper proposes the application of a cell-microelectrode model in cell biometry experiments, usi...
This work proposes a method for studying and monitoring in real-time a single cell on a 2D electrode...
A complete microsensor array with integrated circuitry, fabricated using a conventional complementar...