1,721,033 research outputs found
Microsystems for dermatological research
Times Cited: 0 Griscom, L Chateau, Y Pennec, JP Misery, L Le Pioufle, B 2nd Annual Meeting of the Australasian-Society-for-Dermatology-Research May 14, 2005 Perth, AUSTRALIA Australasian Soc Dermatol ResInternational audienc
Microsystems for dermatological research
Times Cited: 0 Griscom, L Chateau, Y Pennec, JP Misery, L Le Pioufle, B 2nd Annual Meeting of the Australasian-Society-for-Dermatology-Research May 14, 2005 Perth, AUSTRALIA Australasian Soc Dermatol ResInternational audienc
Microsystems for dermatological research
Times Cited: 0 Griscom, L Chateau, Y Pennec, JP Misery, L Le Pioufle, B 2nd Annual Meeting of the Australasian-Society-for-Dermatology-Research May 14, 2005 Perth, AUSTRALIA Australasian Soc Dermatol ResInternational audienc
Microsystems for dermatological research
Times Cited: 0 Griscom, L Chateau, Y Pennec, JP Misery, L Le Pioufle, B 2nd Annual Meeting of the Australasian-Society-for-Dermatology-Research May 14, 2005 Perth, AUSTRALIA Australasian Soc Dermatol ResInternational audienc
Surface engineering of microfluidic systems for cellular biochips
Times Cited: 1 Griscom, L Legeay, G Le Pioufle, B 3rd IEEE/EMBS Special Topic Conference on Microtechnology in Medicine and Biology May 12-15, 2005 Oahu, HI Ieee, embsInternational audienceIn this paper, we describe a rapid and cost-effective hydrophilic surface modification method for PDMS microsystems that is both durable and biocompatible. The method involves a combination of an oxygen plasma treatment followed by coating the activated surfaces with a hydrophilic and biocompatible polymer. In this case, poly(vinylpyrrolidone) (PVP) is used to increase the surface energy of PDMS microchannels and render them hydrophilic. Contact angle experiments show that the surface of the PDMS remains hydrophilic for an extended period of time under dry conditions. Uses for microfluidic and cell chip applications are demonstrated
Investigation of human hepatoma cell line in microfluidic devices
Times Cited: 0 Leclerc, E Griscom, L Lepioufle, B Guguen-Guillouzo, C Corlu, A Legallais, U 3rd IEEE/EMBS Special Topic Conference on Microtechnology in Medicine and Biology May 12-15, 2005 Oahu, HI Ieee, embsInternational audienceIn this paper we have investigated the proliferation of the cell line IIcpaRG in three types of microfluidic devices. The results demonstrated that the micro geometries play an important role on organisation and proliferation of this type of liver cell
Behaviour of osteoblast-like cells in cellular microdevices
Times Cited: 0 Leclerc, E David, B Warocquier-Clerout, R Griscom, L Le Pioufle, B Fujii, T Legallais, C 8th International Conference on Miniaturized Systems for Chemistry and Life Sciences Sep 26-30, 2004 Malmo, SWEDEN VINNIVA, Crafoord Fdn, Swedish Fdn Strateg Res, MCPT, Micralyne, SAMSUNG, Micro Plastab, GYROS, Lung Univ, Erysave AB, ATS Med, Silex Microsyst, Johnson &Johnson, Caliper Life Sci, MicroFluid Syst Inc, Analyt Chem, Sci AAAS, Lab Chip, Journal Separat SciInternational audienceIn this work, we report the results of bone cell cultures in cellular microdevices. In our dynamical configuration of cultures, 3D geometrical effects appeared predominant on the microfluidic flow conditions, as far as cell behaviours were concerned
Going Beyond Counting First Authors in Author Co-citation Analysis
The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation
counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings
are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that
only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into
account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed
Behaviour of osteoblast-like cells in cellular microdevices
Times Cited: 0 Leclerc, E David, B Warocquier-Clerout, R Griscom, L Le Pioufle, B Fujii, T Legallais, C 8th International Conference on Miniaturized Systems for Chemistry and Life Sciences Sep 26-30, 2004 Malmo, SWEDEN VINNIVA, Crafoord Fdn, Swedish Fdn Strateg Res, MCPT, Micralyne, SAMSUNG, Micro Plastab, GYROS, Lung Univ, Erysave AB, ATS Med, Silex Microsyst, Johnson &Johnson, Caliper Life Sci, MicroFluid Syst Inc, Analyt Chem, Sci AAAS, Lab Chip, Journal Separat SciInternational audienceIn this work, we report the results of bone cell cultures in cellular microdevices. In our dynamical configuration of cultures, 3D geometrical effects appeared predominant on the microfluidic flow conditions, as far as cell behaviours were concerned
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