A maximum length sequence MLS is used to perform broadband impedance spectroscopy on a dielectric sample. The method has a number of advantages over other pulse-based or frequency sweep techniques. It requires the application of a very short sequence of voltage steps in the microsecond range and therefore allows the measurement of time-dependent impedance of a sample with high temporal resolution over a large bandwidth. The technique is demonstrated using a time-invariant passive RC network. The impedance of single biological cell flowing in a microfluidic channel is also measured, showing that MLS is an ideal method for high speed impedance analysis
Microfluidic impedance cytometry is a label-free technique for high-throughput single-cell analysis....
Impedance spectroscopy is a non-invasive technique which allows analysis of the electrical propertie...
Purpose. To distinguish between normal (SV-HUC-1) and cancerous (TCCSUP) human urothelial cell lines...
Measurements of the dielectric (or impedance) properties of cells can be used as a general character...
We have recently developed a novel impedance spectroscopy for high throughput analysis on single bio...
A novel broadband high-speed impedance spectrometer has been developed for the analysis of single bi...
A novel impedance spectroscopy technique has been developed for high speed single biological particl...
A novel impedance spectroscopy technique has been developed for high speed single biological particl...
A microfluidic device that is able to perform dielectric spectroscopy is developed. The device consi...
Single-cell impedance cytometry is a label-free analysis technique that is now widely used to measur...
This article presents anovel microfluidic impedance cytometer enabling dielectric characterization o...
One of the most difficulties researchers facing in the field of microfluidic technology is labeling ...
Impedance microfluidic cytometry is a noninvasive, label-free technology that can characterize the d...
This thesis presents a microfluidic device with wide channels and embedded AgPDMS electrodes for mea...
Flow cytometry is an essential tool in biology and medicine with applications in immunodeficiency di...
Microfluidic impedance cytometry is a label-free technique for high-throughput single-cell analysis....
Impedance spectroscopy is a non-invasive technique which allows analysis of the electrical propertie...
Purpose. To distinguish between normal (SV-HUC-1) and cancerous (TCCSUP) human urothelial cell lines...
Measurements of the dielectric (or impedance) properties of cells can be used as a general character...
We have recently developed a novel impedance spectroscopy for high throughput analysis on single bio...
A novel broadband high-speed impedance spectrometer has been developed for the analysis of single bi...
A novel impedance spectroscopy technique has been developed for high speed single biological particl...
A novel impedance spectroscopy technique has been developed for high speed single biological particl...
A microfluidic device that is able to perform dielectric spectroscopy is developed. The device consi...
Single-cell impedance cytometry is a label-free analysis technique that is now widely used to measur...
This article presents anovel microfluidic impedance cytometer enabling dielectric characterization o...
One of the most difficulties researchers facing in the field of microfluidic technology is labeling ...
Impedance microfluidic cytometry is a noninvasive, label-free technology that can characterize the d...
This thesis presents a microfluidic device with wide channels and embedded AgPDMS electrodes for mea...
Flow cytometry is an essential tool in biology and medicine with applications in immunodeficiency di...
Microfluidic impedance cytometry is a label-free technique for high-throughput single-cell analysis....
Impedance spectroscopy is a non-invasive technique which allows analysis of the electrical propertie...
Purpose. To distinguish between normal (SV-HUC-1) and cancerous (TCCSUP) human urothelial cell lines...