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Lab on a Chip

Microfluidic & nanofluidic technologies for chemistry, physics, biology, and bioengineering



Contents list for Lab on a Chip, issue 8, 2005

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Front cover
Lab Chip, 2005, 5, 797
DOI: 10.1039/b509532h

front cover image for Lab on a Chip, Issue 8, 2005


Contents
Lab Chip, 2005, 5, 799
DOI: 10.1039/b509533f

Papers

Development of a microfluidic biosensor module for pathogen detection
Natalya V. Zaytseva, Vasiliy N. Goral, Richard A. Montagna and Antje J. Baeumner,  Lab Chip, 2005, 5, 805
DOI: 10.1039/b503856a

Controllable polymerization of N-carboxy anhydrides in a microreaction system
Takeshi Honda, Masaya Miyazaki, Hiroyuki Nakamura and Hideaki Maeda,  Lab Chip, 2005, 5, 812
DOI: 10.1039/b505137a

Development of a multiplexed microbioreactor system for high-throughput bioprocessing
Nicolas Szita, Paolo Boccazzi, Zhiyu Zhang, Patrick Boyle, Anthony J. Sinskey and Klavs F. Jensen,  Lab Chip, 2005, 5, 819
DOI: 10.1039/b504243g

Surface-directed capillary system; theory, experiments and applications
Salim Bouaidat, Ole Hansen, Henrik Bruus, Christian Berendsen, Niels Kristian Bau-Madsen, Peter Thomsen, Anders Wolff and Jacques Jonsmann,  Lab Chip, 2005, 5, 827
DOI: 10.1039/b502207j

Fabrication and characterization of 20 nm planar nanofluidic channels by glass–glass and glass–silicon bonding
Pan Mao and Jongyoon Han,  Lab Chip, 2005, 5, 837
DOI: 10.1039/b502809d

World-to-chip microfluidic interface with built-in valves for multichamber chip-based PCR assays
Kwang W. Oh, Chinsung Park, Kak Namkoong, Jintae Kim, Kyeong-Sik Ock, Suhyeon Kim, Young-A Kim, Yoon-Kyoung Cho and Christopher Ko,  Lab Chip, 2005, 5, 845
DOI: 10.1039/b503437j

An electrokinetic/hydrodynamic flow microfluidic CE-ESI-MS interface utilizing a hydrodynamic flow restrictor for delivery of samples under low EOF conditions
Trust T. Razunguzwa, James Lenke and Aaron T. Timperman,  Lab Chip, 2005, 5, 851
DOI: 10.1039/b503746h

Diffusion based analysis in a sheath flow microchannel: the sheath flow T-sensor
Matthew S. Munson, Kenneth R. Hawkins, Melissa S. Hasenbank and Paul Yager,  Lab Chip, 2005, 5, 856
DOI: 10.1039/b501035g

Towards microalbuminuria determination on a disposable diagnostic microchip with integrated fluorescence detection based on thin-film organic light emitting diodes
Oliver Hofmann, Xuhua Wang, John C. deMello, Donal D. C. Bradley and Andrew J. deMello,  Lab Chip, 2005, 5, 863
DOI: 10.1039/b504551g

A polymeric microchip with integrated tips and in situ polymerized monolith for electrospray mass spectrometry
Yanou Yang, Chen Li, Jun Kameoka, Kelvin H. Lee and H. G. Craighead,  Lab Chip, 2005, 5, 869
DOI: 10.1039/b503025k

A model for laminar diffusion-based complex electrokinetic passive micromixers
Yi Wang, Qiao Lin and Tamal Mukherjee,  Lab Chip, 2005, 5, 877
DOI: 10.1039/b500010f

Characterization of SU-8 for electrokinetic microfluidic applications
Tiina Sikanen, Santeri Tuomikoski, Raimo A. Ketola, Risto Kostiainen, Sami Franssila and Tapio Kotiaho,  Lab Chip, 2005, 5, 888
DOI: 10.1039/b503016a

Sinusoidal crossflow microfiltration device—experimental and computational flowfield analysis
Michal M. Mielnik, Rahul P. Ekatpure, Lars R. Sætran and Friedhelm Schönfeld,  Lab Chip, 2005, 5, 897
DOI: 10.1039/b501490e

Back matter
Lab Chip, 2005, 5, 904
DOI: 10.1039/b509534b

Back cover
Lab Chip, 2005, 5, 907
DOI: 10.1039/b509535m