Microtissue spheroids in microfluidic devices are increasingly used to establish novel in vitro organ models of the human body. As the spheroids are comparably sizable, it is difficult to monitor larger numbers of them by optical means. Therefore, electrical impedance spectroscopy (EIS) emerges as a viable alternative to probing spheroid properties. Current spheroid EIS systems are, however, not suitable for investigating multiple spheroids in parallel over extended time in an automated fashion. Here we address this issue by presenting an automated, multiplexed EIS (AMEIS) platform for impedance analysis in a microfluidic setting. The system was used to continuously monitor the effect of the anticancer drug fluorouracil (5-FU) on HCT116 can...
Currently, the use of electrical readout methods for the investigation of microtissue spheroids in c...
Dielectric spectroscopy is a nondestructive method to characterize dielectric properties by measurin...
DE 10142393 C UPAB: 20030214 NOVELTY - An electrically-insulating measurement chamber wall surrounds...
We present a microfluidic platform, which allows for automated, simultaneous and continuous electric...
This research utilizes Electrical Impedance Spectroscopy, a technique classically used for electroch...
Electrical impedance spectroscopy (EIS) as a label-free and noninvasive analysis method receives gro...
We present the integration of electrical impedance spectroscopy (EIS) into a microfluidic network of...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
The paper presents the application of electrical impedance spectroscopy (EIS) analysis for investiga...
As regular cervical cancer screening becomes more common, the detection of cervical intraepithelial ...
The goal of this article is the conception, development, and evaluation of micro system-based impeda...
A new approach for monitoring myocardium edema is introduced. It utilizes electrical impedance spect...
International audienceFibrosis represents an open issue for medium tolong-term active implants given...
We present a novel technology for the simultaneous and simple impedimetric screening of multiple mic...
Currently, the use of electrical readout methods for the investigation of microtissue spheroids in c...
Dielectric spectroscopy is a nondestructive method to characterize dielectric properties by measurin...
DE 10142393 C UPAB: 20030214 NOVELTY - An electrically-insulating measurement chamber wall surrounds...
We present a microfluidic platform, which allows for automated, simultaneous and continuous electric...
This research utilizes Electrical Impedance Spectroscopy, a technique classically used for electroch...
Electrical impedance spectroscopy (EIS) as a label-free and noninvasive analysis method receives gro...
We present the integration of electrical impedance spectroscopy (EIS) into a microfluidic network of...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
Three dimensional cell culture systems have witnessed rapid expansion in the fields of tissue engine...
The paper presents the application of electrical impedance spectroscopy (EIS) analysis for investiga...
As regular cervical cancer screening becomes more common, the detection of cervical intraepithelial ...
The goal of this article is the conception, development, and evaluation of micro system-based impeda...
A new approach for monitoring myocardium edema is introduced. It utilizes electrical impedance spect...
International audienceFibrosis represents an open issue for medium tolong-term active implants given...
We present a novel technology for the simultaneous and simple impedimetric screening of multiple mic...
Currently, the use of electrical readout methods for the investigation of microtissue spheroids in c...
Dielectric spectroscopy is a nondestructive method to characterize dielectric properties by measurin...
DE 10142393 C UPAB: 20030214 NOVELTY - An electrically-insulating measurement chamber wall surrounds...