A microfluidic lab-on-chip device was developed to automatically and selectively manipulate target cells at the single cell level. The device is composed of a microfluidic chip, mini solenoid valves with negative-pressurized soft tubes, and a LabView®-based data acquisition device. Once a target cell passes the resistive pulse sensing gate of the microfluidic chip, the solenoid valves are automatically actuated and open the negative-pressurized tubes placed at the ends of the collecting channels. As a result, the cell is transported to that collecting well. Numerical simulation shows that a 0.14 mm3 volume change of the soft tube can result in a 1.58 mm/s moving velocity of the sample solution. Experiments with single polystyrene particles ...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
AbstractA multi-layer device, combining hydrodynamic trapping with microfluidic valving techniques, ...
Microfluidics is a rapidly growing field of biomedical engineering with numerous applications such a...
Microfluidics and "lab-on-chips" are currently major areas of research. Integrated chips provide man...
Introduction: The application of microchip techniques has really entered life science and has starte...
The basic structural and functional unit of a living organism is a single cell. To understand the va...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
Cancer cells in blood may represent “a real time liquid biopsy” through the interrogation of single ...
Hydrodynamic-based microfluidic platforms enable single-cell arraying and analysis over time. Despit...
Microfluidics has seen an explosion in growth in the past few years, providing researchers with new ...
We design, develop and demonstrate the principle of a continuous, non-intrusive, low power microflui...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
Microfluidic is an ensemble of technologies and methods that permits the handling and analysis of mi...
We have developed microfluidic chips for automating molecular biology processes such as gene ligatio...
none9We present the development and application of a microfluidic device that can efficiently and re...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
AbstractA multi-layer device, combining hydrodynamic trapping with microfluidic valving techniques, ...
Microfluidics is a rapidly growing field of biomedical engineering with numerous applications such a...
Microfluidics and "lab-on-chips" are currently major areas of research. Integrated chips provide man...
Introduction: The application of microchip techniques has really entered life science and has starte...
The basic structural and functional unit of a living organism is a single cell. To understand the va...
Many scientific domains focus on the gathering of fundamental knowledge in physiological, biochemica...
Cancer cells in blood may represent “a real time liquid biopsy” through the interrogation of single ...
Hydrodynamic-based microfluidic platforms enable single-cell arraying and analysis over time. Despit...
Microfluidics has seen an explosion in growth in the past few years, providing researchers with new ...
We design, develop and demonstrate the principle of a continuous, non-intrusive, low power microflui...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
Microfluidic is an ensemble of technologies and methods that permits the handling and analysis of mi...
We have developed microfluidic chips for automating molecular biology processes such as gene ligatio...
none9We present the development and application of a microfluidic device that can efficiently and re...
In recent years, considerable attention has been paid to miniaturized and integrated mechanical, aco...
AbstractA multi-layer device, combining hydrodynamic trapping with microfluidic valving techniques, ...
Microfluidics is a rapidly growing field of biomedical engineering with numerous applications such a...