An electrochemical detection system specifically designed for multi-parameter real-time monitoring of stem cell culturing/differentiation in a microfluidic system is presented. It is composed of a very compact 24-channel electronic board, compatible with arrays of microelectrodes and coupled to a microfluidic cell culture system. A versatile data acquisition software enables performing amperometry, cyclic voltammetry and impedance spectroscopy in each of the 12 independent chambers over a 100 kHz bandwidth with current resolution down to 5 pA for 100 ms measuring time. The design of the platform, its realization and experimental characterization are reported, with emphasis on the analysis of impact of input capacitance (i.e., microelectrode...
Bioassays are a type of in vitro experiment used to measure the effects of a substance on a living o...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
This thesis presents work in two main areas of focus, the development of electroanalytical technique...
An electrochemical detection system specifically designed for multi-parameter real-time monitoring o...
Downscaling of microfluidic cell culture and detection devices for electrochemical monitoring has mo...
A versatile microfluidic, multichamber cell culture and analysis system with an integrated electrode...
A novel, up to 128 channels, multi-parametric physiological measurement system suitable for monitori...
An up to 128 channel PC-based physiological measurement platform for stem cell cultures is presented...
The following paper describes the design and functions of a miniaturized integrated platform for opt...
In-vitro cell culturing is one of the most exciting tools scientists use to study cellular and molec...
Cell proliferation can be monitored by a wide range of well-established techniques. Most of the prin...
Stem cells exhibit unique characteristics of self-renewal and differentiation, the ability to produc...
Human cell cultures provide a potentially powerful means for pharmacological and toxicological resea...
We developed different types of glass cell-culture chips (GC3s) for culturing cells for microscopic ...
Microfluidics has much to offer the field of stem cell biology, making interaction with single cells...
Bioassays are a type of in vitro experiment used to measure the effects of a substance on a living o...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
This thesis presents work in two main areas of focus, the development of electroanalytical technique...
An electrochemical detection system specifically designed for multi-parameter real-time monitoring o...
Downscaling of microfluidic cell culture and detection devices for electrochemical monitoring has mo...
A versatile microfluidic, multichamber cell culture and analysis system with an integrated electrode...
A novel, up to 128 channels, multi-parametric physiological measurement system suitable for monitori...
An up to 128 channel PC-based physiological measurement platform for stem cell cultures is presented...
The following paper describes the design and functions of a miniaturized integrated platform for opt...
In-vitro cell culturing is one of the most exciting tools scientists use to study cellular and molec...
Cell proliferation can be monitored by a wide range of well-established techniques. Most of the prin...
Stem cells exhibit unique characteristics of self-renewal and differentiation, the ability to produc...
Human cell cultures provide a potentially powerful means for pharmacological and toxicological resea...
We developed different types of glass cell-culture chips (GC3s) for culturing cells for microscopic ...
Microfluidics has much to offer the field of stem cell biology, making interaction with single cells...
Bioassays are a type of in vitro experiment used to measure the effects of a substance on a living o...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
This thesis presents work in two main areas of focus, the development of electroanalytical technique...