In this paper, electrical impedance tomography (EIT) is proposed to monitor the kinetics in substrate-based cell culture due to the spatial conductivity distribution within the culturing environment. A circular 16-electrode array was designed for imaging the culturing of Physarum. Polycephalum. The theoretical modelling and preliminarily reconstructed image of Physarum cell are presented
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractWe present an integrated microfluidic system, which combines long-term cell culturing with e...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...
Electrical impedance tomography is an imaging technology that spatially characterizes the electrical...
Electrical impedance spectroscopy (EIS) is a high speed, non-invasive and label-free technique to ch...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
In tissue engineering, cells are generally cultured in biomaterials to generate three-dimensional ar...
We present a novel, inexpensive, and fast microimpedance tomography system for two-dimensional imagi...
3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) c...
As a complement and alternative to optical methods, wide-band electrical impedance spectroscopy (EIS...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
Basically, Electrical impedance tomography is a new technique in monitoring and imaging cross sectio...
Objective. 3D cell cultures are becoming a fundamental resource for in-vitro studies, as they mimic ...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractWe present an integrated microfluidic system, which combines long-term cell culturing with e...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...
Electrical impedance tomography is an imaging technology that spatially characterizes the electrical...
Electrical impedance spectroscopy (EIS) is a high speed, non-invasive and label-free technique to ch...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
In tissue engineering, cells are generally cultured in biomaterials to generate three-dimensional ar...
We present a novel, inexpensive, and fast microimpedance tomography system for two-dimensional imagi...
3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) c...
As a complement and alternative to optical methods, wide-band electrical impedance spectroscopy (EIS...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
Basically, Electrical impedance tomography is a new technique in monitoring and imaging cross sectio...
Objective. 3D cell cultures are becoming a fundamental resource for in-vitro studies, as they mimic ...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
An alternative approach for cell-culture end-point protocols is proposed herein. This new technique ...
AbstractWe present an integrated microfluidic system, which combines long-term cell culturing with e...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...