In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner and at high trapping efficiency is designed simply through a concept of hydrodynamic manipulation. The microfluidic device is designed with a series of trap and bypass microchannel structures for trapping individual cells without the need for microwell, robotic equipment, external electric force or surface modification. In order to investigate the single cell trapping efficiency, a finite element model of the proposed design has been developed using ABAQUS-FEA software. Based on the simulation, the geometrical parameters and fluid velocity which affect the single cell trapping are extensively optimized. After optimization of the trap and bypas...
Microfluidic technology has been applied widely for separating and trapping various type of cells. 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...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
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...
Single-cell analysis has become the interest of a wide range of biological and biomedical engineerin...
To perform specific analysis for the single cell, individual cells have to be captured and separated...
Microfluidic devices are important for the single cell analysis such as cell mechanical and electric...
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...
Abstract: Single-cell analysis has become the interest of a wide range of biological and biomedical ...
Microfluidic technology has been applied widely for separating and trapping various type of cells. 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...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
In this paper, a microfluidic device capable of trapping a single cell in a high throughput manner a...
A highly requirement of analyzing a biological sample at a so-called single cell level has encourage...
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...
Single-cell analysis has become the interest of a wide range of biological and biomedical engineerin...
To perform specific analysis for the single cell, individual cells have to be captured and separated...
Microfluidic devices are important for the single cell analysis such as cell mechanical and electric...
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...
Abstract: Single-cell analysis has become the interest of a wide range of biological and biomedical ...
Microfluidic technology has been applied widely for separating and trapping various type of cells. 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...