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Chia-Hung Dylan Tsai

7 accepted papers

2019

Experimental Study on Microfluidic Mixing with Trapezoidal Obstacles in a 1000-Fold Span of Reynolds Number

IROS 2019poster

Mixing is important for microfluidic systems and placing obstacles in a flow path for generating advection, or splitting/recombination flows, is a very popular method for enhancing the mixing. In this paper, we present experimental investigations on such microfluidic mixing with four different shape…

Cited by 0SourceScholar
2018

A Novel Fabrication of PDMS Chip using Atmospheric Pressure Plasma Jet: Hydrophobicity Modification and Feasibility Test

IROS 2018poster

This paper presents a new application of atmospheric pressure plasma jet (APPJ) aiming for fabricating a microfluidic system on a polydimethylsiloxane (PDMS) surface. While PDMS is widely used for microfluidic chips, the fabrication of a chip requires different instruments which are not easily acces…

Cited by 4SourceScholar
2017

3000Hz cell manipulation in a microfluidic channel

IROS 2017poster

This paper reports an ultra-fast manipulation on micro-scale objects in a microfluidic channel. The objects are manipulated in simple harmonic motions and the manipulation speed has been achieved up to 3000 Hz. While the maximum speed was only about 130 Hz in previous works, the speed is advanced wi…

Cited by 2SourceScholar
2016

Catch, load and launch toward on-chip active cell evaluation

ICRA 2016

An automatic system for evaluating single cell viscoelasticity is proposed and tested in this paper. The system includes three main operations, and they are the operations of catch, load and launch. In the catch operation, the system is capable of capturing a target cell by high-speed vision and hig

Cited by 11SourceScholar
2015

An on-chip, electricity-free and single-layer pressure sensor for microfluidic applications

IROS 2015poster

A novel method for sensing local pressure inside a microfluidic device is proposed and developed. The main advantage of the method is that the pressure can be visually seen without attaching any electrical wire or instrument. The method can also be easily integrated into applications, such as micro-…

Cited by 6SourceScholar