Single-cell analysis has become the interest of a wide range of biological and biomedical engineering research. It could provide precise information on individual cells, leading to important knowledge regarding human diseases. To perform single-cell analysis, it is crucial to isolate the individual cells before further manipulation is carried out. Recently, microfluidic biochips have been widely used for cell trapping and single cell analysis, such as mechanical and electrical detection. This work focuses on developing a finite element simulation model of single-cell trapping system for any types of cells or particles based on the hydrodynamic flow resistance (Rh) manipulations in the main channel and trap channel to achieve successful trap...
The development of hydrodynamic-based microfluidic biochips has been increasing over the years. In t...
The primary objective of this work is to show simulation outputs from the developed model of cell fl...
The application of microfluidic technology to manipulate cells or biological particles is becoming o...
Single-cell analysis has become the interest of a wide range of biological and biomedical engineerin...
Single cell analysis has become the interest of a wide range of biological and biomedical engineerin...
Microfluidic devices are important for the single cell analysis such as cell mechanical and electric...
Abstract: Single-cell analysis has become the interest of a wide range of biological and biomedical ...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
Microfluidic technology has been applied widely for separating and trapping various type of cells. T...
To perform specific analysis for the single cell, individual cells have to be captured and separated...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
Microfluidic technology has been applied widely for separating and trapping various type of cells. T...
Microfluidic cell-based arraying technology is widely used in the field of single-cell analysis. How...
Copyright © 2014 B. Deng et al. This is an open access article distributed under the Creative Common...
The development of hydrodynamic-based microfluidic biochips has been increasing over the years. In t...
The primary objective of this work is to show simulation outputs from the developed model of cell fl...
The application of microfluidic technology to manipulate cells or biological particles is becoming o...
Single-cell analysis has become the interest of a wide range of biological and biomedical engineerin...
Single cell analysis has become the interest of a wide range of biological and biomedical engineerin...
Microfluidic devices are important for the single cell analysis such as cell mechanical and electric...
Abstract: Single-cell analysis has become the interest of a wide range of biological and biomedical ...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
Microfluidic technology has been applied widely for separating and trapping various type of cells. T...
To perform specific analysis for the single cell, individual cells have to be captured and separated...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
Microfluidic technology has been applied widely for separating and trapping various type of cells. T...
Microfluidic cell-based arraying technology is widely used in the field of single-cell analysis. How...
Copyright © 2014 B. Deng et al. This is an open access article distributed under the Creative Common...
The development of hydrodynamic-based microfluidic biochips has been increasing over the years. In t...
The primary objective of this work is to show simulation outputs from the developed model of cell fl...
The application of microfluidic technology to manipulate cells or biological particles is becoming o...