Lab-on-chip technologies: making a microfluidic network and coupling it into a complete microsystem—a review

P Abgrall, AM Gue - Journal of micromechanics and …, 2007 - iopscience.iop.org
Microfluidics is an emerging field that has given rise to a large number of scientific and
technological developments over the last few years. This review reports on the use of …

Microfluidic devices for cellomics: a review

H Andersson, A Van den Berg - Sensors and actuators B: Chemical, 2003 - Elsevier
A review of microfluidic devices for cellomics is presented. After a brief description of the
historical background of Lab-on-Chip (LOC) devices, different areas are reviewed. Devices …

A novel 3D mammalian cell perfusion-culture system in microfluidic channels

YC Toh, C Zhang, J Zhang, YM Khong, S Chang… - Lab on a Chip, 2007 - pubs.rsc.org
Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in
drug development and biological research applications. These systems would have more …

An integrated microfluidic biochemical detection system for protein analysis with magnetic bead-based sampling capabilities

JW Choi, KW Oh, JH Thomas, WR Heineman… - Lab on a Chip, 2002 - pubs.rsc.org
This paper presents the development and characterization of an integrated microfluidic
biochemical detection system for fast and low-volume immunoassays using magnetic beads …

Bead-based microfluidic immunoassays: the next generation

CT Lim, Y Zhang - Biosensors and Bioelectronics, 2007 - Elsevier
Microfluidic devices possess many advantages like high throughput, short analysis time,
small volume and high sensitivity that fulfill all the important criteria of an immunoassay used …

Detection of a single magnetic microbead using a miniaturized silicon Hall sensor

PA Besse, G Boero, M Demierre, V Pott… - Applied physics …, 2002 - pubs.aip.org
Using a highly sensitive silicon Hall sensor fabricated in a standard complementary metal–
oxide–semiconductor (CMOS) technology, we detect a single magnetic microbead of 2.8 μm …

Deep reactive ion etching

F Laermer, S Franssila, L Sainiemi, K Kolari - Handbook of silicon based …, 2020 - Elsevier
This chapter discusses reactive ion etching (RIE) and deep RIE (DRIE) on wafers detailing
the various equipment and reactor requirements for different applications. The Bosch …

Focusbeads and chips: New recipes for analysis

E Verpoorte - Lab on a Chip, 2003 - pubs.rsc.org
View Article Online/Journal Homepage/Table of Contents for this issue interaction to a
specific point in the analysis system. In the case of dilute suspensions, separation of the …

Polymer-based microfluidic devices for pharmacy, biology and tissue engineering

A Alrifaiy, OA Lindahl, K Ramser - Polymers, 2012 - mdpi.com
This paper reviews microfluidic technologies with emphasis on applications in the fields of
pharmacy, biology, and tissue engineering. Design and fabrication of microfluidic systems …

Injection molded microfluidic chips featuring integrated interconnects

DA Mair, E Geiger, AP Pisano, JMJ Fréchet, F Svec - Lab on a Chip, 2006 - pubs.rsc.org
An injection molding process for the fabrication of disposable plastic microfluidic chips with a
cycle time of 2 min has been designed, developed, and implemented. Of the sixteen …