Lab-on-a-chip systems have been attracting a growing attention for the perspective of miniaturization and portability of bio-chemical assays. Here we present a the design and characterization of a miniaturized, USB-powered, self-contained, 2-channel instrument for impedance sensing, suitable for label-free tracking and real-time detection of cells flowing in microfluidic channels. This original circuit features a signal generator based on a direct digital synthesizer, a transimpedance amplifier, an integrated square-wave lock-in coupled to a Σ△ ADC converter, and a digital processing platform. Real-time automatic peak detection on two channels is implemented in a FPGA. System functionality has been tested with an electronic resistance modul...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
An electrochemical detection system specifically designed for multi-parameter real-time monitoring o...
Lab-on-a-chip systems have been attracting a growing attention for the perspective of miniaturizatio...
A dual-channel credit-card-sized impedance cell counter featuring a throughput of 2000 cell/s and de...
We present a portable system for personalized blood cell counting consisting of a microfluidic imped...
In this paper we present a compact system for impedance measurement in the kHz-MHz frequency range w...
Cell-based microfluidic devices have attracted interest for a wide range of applications. While opti...
In the process of collection of biological samples for testing, the issue of insufficient samples ha...
We present a miniaturized CMOS impedance detector integrated within a dielectrophoretic microfluidic...
In this study, a new, simple and cost-effective impedance detection of yeast cell concentration by u...
Miniature high speed label-free cell analysis systems have yet to be developed, but have the potenti...
A microfluidic cell impedance measurement device is presented in this article. The design is simple ...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
An electrochemical detection system specifically designed for multi-parameter real-time monitoring o...
Lab-on-a-chip systems have been attracting a growing attention for the perspective of miniaturizatio...
A dual-channel credit-card-sized impedance cell counter featuring a throughput of 2000 cell/s and de...
We present a portable system for personalized blood cell counting consisting of a microfluidic imped...
In this paper we present a compact system for impedance measurement in the kHz-MHz frequency range w...
Cell-based microfluidic devices have attracted interest for a wide range of applications. While opti...
In the process of collection of biological samples for testing, the issue of insufficient samples ha...
We present a miniaturized CMOS impedance detector integrated within a dielectrophoretic microfluidic...
In this study, a new, simple and cost-effective impedance detection of yeast cell concentration by u...
Miniature high speed label-free cell analysis systems have yet to be developed, but have the potenti...
A microfluidic cell impedance measurement device is presented in this article. The design is simple ...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
In this study, we introduce novel method of flow cytometry for cell detection based on impedance mea...
An electrochemical detection system specifically designed for multi-parameter real-time monitoring o...