Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro. Common modern MEAs are still based on costly microfabrication techniques, making them expensive tools that researchers are pushed to reuse, compromising the reproducibility and the quality of the acquired data. There is a need to develop novel fabrication strategies, able to produce disposable devices that incorporate advanced technologies beyond the standard metal electrodes on rigid substrates. Here we present an innovative fabrication process for the production of polymer-based flexible MEAs. The device fabrication exploited inkjet printing, as this low-cost manufacturing method allows for an easy and reliable patterning of conducting pol...
Inkjet printing is a viable method for rapid and low-cost manufacturing of flexible sensors. In this...
Recent investigations into cardiac or nervous tissues call for systems that are able to electrically...
Production of conductive composite electrodes for extracellular recording and stimulation Multielec...
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
International audiencePEDOT:PSS) conductive-polymer multielectrode arrays (MEAs) are fabricated with...
International audiencePEDOT:PSS) conductive-polymer multielectrode arrays (MEAs) are fabricated with...
We present the first Organ-on-Chip equipped with a low-impedance Poly(3,4-ethylenedioxythiophene) po...
Microelectrode arrays (MEAs) are widely used platforms in bioelectronics to study electrogenic cells...
Conducting polymer electrodes based on poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT...
© 2017 Materials Research Society. In vitro electrophysiology using microelectrode arrays (MEAs) pla...
Recent investigations into cardiac or nervous tissues call for systems that are able to electrically...
Inkjet printing is a viable method for rapid and low-cost manufacturing of flexible sensors. In this...
Recent investigations into cardiac or nervous tissues call for systems that are able to electrically...
Production of conductive composite electrodes for extracellular recording and stimulation Multielec...
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
Multi-electrode arrays (MEAs) have become a key element in the study of cellular phenomena in vitro....
International audiencePEDOT:PSS) conductive-polymer multielectrode arrays (MEAs) are fabricated with...
International audiencePEDOT:PSS) conductive-polymer multielectrode arrays (MEAs) are fabricated with...
We present the first Organ-on-Chip equipped with a low-impedance Poly(3,4-ethylenedioxythiophene) po...
Microelectrode arrays (MEAs) are widely used platforms in bioelectronics to study electrogenic cells...
Conducting polymer electrodes based on poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT...
© 2017 Materials Research Society. In vitro electrophysiology using microelectrode arrays (MEAs) pla...
Recent investigations into cardiac or nervous tissues call for systems that are able to electrically...
Inkjet printing is a viable method for rapid and low-cost manufacturing of flexible sensors. In this...
Recent investigations into cardiac or nervous tissues call for systems that are able to electrically...
Production of conductive composite electrodes for extracellular recording and stimulation Multielec...