A robust impedance microscopy technique is presented. This optical tool enables high resolution imaging of electrical properties with promising biophysical applications. The underlying principle is that surface plasmon resonance (SPR) sensors are able to measure perturbations of surface charge density and therefore can be used to compute the impedance of surface-adhered cells. However, the ability to perform reliable quantitative impedance imaging is affected by the optical heterogeneity of the cell-sensor interface. To address this issue, a novel method for quantitative time-resolved resonance angle tracking is developed and applied to correct for the effect of the optical properties. To demonstrate the capability of this technique, impeda...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
The central theme of this thesis is the use of imaging Surface Plasmon Resonance (iSPR) as a tool in...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
Ce travail de thèse traite de la caractérisation par spectroscopie d'impédance d'échantillons biolog...
International audienceThis work is aiming at using impedance measurements on MicroElectrode Array (M...
This paper describes theoretical and experimental study of the fundamentals of using surface plasmon...
The voltage sensitivity of surface plasmon resonance is investigated as a potential method for label...
Retrieving electrical impedance maps at the nanoscale rapidly via nondestructive inspection with a h...
We present a low frequency approach to characterize small biological samples by using bioimpedance s...
Two modern applications of contactless impedance sensing at the microscale are reviewed. In particul...
The application of microfabrication technology to molecular and cell biology has motivated the rapid...
Research in label free methods for biological analysis has brought interesting developments. Cell im...
In this article we describe the integration of impedance spectroscopy (EIS) and surface plasmon reso...
In this article we describe the integration of impedance spectroscopy (EIS) and surface plasmon reso...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
The central theme of this thesis is the use of imaging Surface Plasmon Resonance (iSPR) as a tool in...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
Ce travail de thèse traite de la caractérisation par spectroscopie d'impédance d'échantillons biolog...
International audienceThis work is aiming at using impedance measurements on MicroElectrode Array (M...
This paper describes theoretical and experimental study of the fundamentals of using surface plasmon...
The voltage sensitivity of surface plasmon resonance is investigated as a potential method for label...
Retrieving electrical impedance maps at the nanoscale rapidly via nondestructive inspection with a h...
We present a low frequency approach to characterize small biological samples by using bioimpedance s...
Two modern applications of contactless impedance sensing at the microscale are reviewed. In particul...
The application of microfabrication technology to molecular and cell biology has motivated the rapid...
Research in label free methods for biological analysis has brought interesting developments. Cell im...
In this article we describe the integration of impedance spectroscopy (EIS) and surface plasmon reso...
In this article we describe the integration of impedance spectroscopy (EIS) and surface plasmon reso...
Microelectrode array (MEA) has been used in cell physiology for many years. It features the non-inva...
The central theme of this thesis is the use of imaging Surface Plasmon Resonance (iSPR) as a tool in...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...