Design on MEMS-based 3D biochip for drug-released dispenser

被引:0
|
作者
Hsiang-Chen Hsu
Li-Ming Chu
Baojun Liu
Chien-Yuan Lai
机构
[1] I-Shou University,Department of Mechanical and Automation Engineering
[2] I-Shou University,Department of Industrial Management
[3] Southern Taiwan University of Science and Technology University,Department of Mechanical Engineering
[4] University of Electronic Science and Technology of China,Department of Mechanical Engineering
[5] Zhongshan Institute,undefined
来源
Microsystem Technologies | 2017年 / 23卷
关键词
PDMS; Microfluidic Device; Velocity Ratio; Emulsion Droplet; Double Emulsion;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, the microfluidic emulsion biochip has been fabricated based on micro-electro-mechanical system technique which integrates microfluidic designed micro-pumps, micro-valves and nozzles with different micro-channels. The quantitative droplet nozzle with micro-pump controlled pressure plays a key role to determine the size of the micro-droplets. The designed 3D dispenser using PDMS material provides micro-channels for different samples in different layers. Drug-released process can be performed as follows: micro-pump is first actuated to store the desired fluid sample in the cavity, followed-by micro-valves compression, the sample is spread out through the nozzle and drops into the bottom channel. The features of this multiple sampling microfluidic chips are (1) quantitative droplets by micro-pump pressure control (2) volume of droplets (3) different samples without contamination. The oil-in-water (W/O) emulsion droplet is formed by a connected hydrodynamic focusing T-shaped structure. Similarly, the double emulsion droplets, water-in-oil-in-water (W/O/W) can be formed by using the second T-shaped structure at the intersection of the oil and the external water. The diameter of emulsion droplets strongly depend on the velocity of water or oil. A series of experimental works is conducted in this research.
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页码:355 / 360
页数:5
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