This paper presents a simple mathematical model to predict the impedance data acquired by electric cell-substrate impedance sensing (ECIS) at frequencies between 25 Hz and 60 kHz. With this model, the equivalent resistance (R) and capacitance (C) of biological samples adhered on gold surfaces could be more precisely measured at 4 kHz. ECIS applications were extended for real-time monitoring of living bacteria cultivated in Luria Bertani (LB) culture medium by two different approaches. In the former, we used a ferri/ferrocyanide redox couple in LB medium as an indicator for bacterial multiplication. Because the redox couple was toxic to some bacteria, we developed a second approach, in which L-cysteine self-assembled monolayers (SAM) on gold...
Despite advances in DNA based technologies and molecular methods, there are still several drawbacks ...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...
This article deals in the constantly developing branch of microelectronic devices used in various fi...
In medical and food industry,most common nosocomial infections and contaminations are caused by ...
Electric Cell-substrate Impedance Sensing (ECIS) is an in vitro impedance measuring system to quanti...
In this work, the ability of an impedance sensor to rapidly detect bacteria growth in a culture medi...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electric cell-substrate impedance sensing (ECIS) is described for real time monitoring of cell behav...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
International audienceThe low but known risk of bacterial contamination has emerged as the greatest ...
Despite advances in DNA based technologies and molecular methods, there are still several drawbacks ...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...
This article deals in the constantly developing branch of microelectronic devices used in various fi...
In medical and food industry,most common nosocomial infections and contaminations are caused by ...
Electric Cell-substrate Impedance Sensing (ECIS) is an in vitro impedance measuring system to quanti...
In this work, the ability of an impedance sensor to rapidly detect bacteria growth in a culture medi...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electric cell-substrate impedance sensing (ECIS) is described for real time monitoring of cell behav...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
Electrostatic finite element modelling software and an ac equivalent circuit model have been used to...
International audienceThe low but known risk of bacterial contamination has emerged as the greatest ...
Despite advances in DNA based technologies and molecular methods, there are still several drawbacks ...
Monitoring the properties of biological samples (BS) is expensive in terms of time consumption and c...
This article deals in the constantly developing branch of microelectronic devices used in various fi...