3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) cell cultures to obtain in vivo like inter and intracellular responses. However, third dimension brings complexity to cell culture. Therefore, high-resolution/high-content screening in 3D is one of the most important challenges with this type of cell cultures. Although optical monitoring techniques, well-established in 2D area, are enhanced to monitor 3D cell cultures, they are generally endpoint, static, time inefficient, and labor intensive. Alternatively, electrical sensing can become a solution to achieve dynamic, real-time, and label-free monitoring of cells in both 2D and 3D cell cultures. Developments in electrical monitoring of cell cu...
During the last years, scientific research in biotechnology has been reporting a considerable boost ...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...
3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) c...
Three-dimensional printing technologies have been recently proposed to monitor cell cultures and imp...
Three-dimensional printing technologies have been recently proposed to monitor cell cultures and im...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
Three-dimensional (3D) cell cultures have recently received attention because they represent a more ...
In general, cell culture-based assays, investigations of cell number, viability, and metabolic activ...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
Recent advances in cell and tissue engineering have enabled long-term three-dimensional (3D) in vitr...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
During the last years, scientific research in biotechnology has been reporting a considerable boost ...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
During the last years, scientific research in biotechnology has been reporting a considerable boost ...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...
3-dimensional (3D) cell cultures better mimic natural environment of cells than 2-dimensional (2D) c...
Three-dimensional printing technologies have been recently proposed to monitor cell cultures and imp...
Three-dimensional printing technologies have been recently proposed to monitor cell cultures and im...
AbstractElectrical impedance spectroscopy was used to characterize the cell environment of multilaye...
Three-dimensional (3D) cell cultures have recently received attention because they represent a more ...
In general, cell culture-based assays, investigations of cell number, viability, and metabolic activ...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
AbstractIt is proposed a microscopy for cell culture applications based on impedance sensors. The im...
Recent advances in cell and tissue engineering have enabled long-term three-dimensional (3D) in vitr...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
During the last years, scientific research in biotechnology has been reporting a considerable boost ...
It is proposed a microscopy for cell culture applications based on impedance sensors. The imagined s...
During the last years, scientific research in biotechnology has been reporting a considerable boost ...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
We describe a new low-cost technique for continuous monitoring of the thickness of biofilms and tiss...