Search Results - "Bibette, J"

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  1. 1

    Chiral colloidal clusters by Bibette, J, Zerrouki, D, Baudry, J, Pine, D, Chaikin, P

    Published in Nature (London) (18-09-2008)
    “…Chirality is an important element of biology, chemistry and physics. Once symmetry is broken and a handedness is established, biochemical pathways are set. In…”
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  2. 2

    Monitoring single-cell bioenergetics via the coarsening of emulsion droplets by Boitard, L, Cottinet, D, Kleinschmitt, C, Bremond, N, Baudry, J, Yvert, G, Bibette, J

    “…Microorganisms are widely used to generate valuable products, and their efficiency is a major industrial focus. Bioreactors are typically composed of billions…”
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  3. 3

    Acceleration of the Recognition Rate between Grafted Ligands and Receptors with Magnetic Forces by Baudry, J., Rouzeau, C., Goubault, C., Robic, C., Cohen-Tannoudji, L., Koenig, A., Bertrand, E., Bibette, J.

    “…When ligands and receptors are both attached on surfaces, because of the restriction of configurational freedom, their recognition kinetics may be…”
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  4. 4

    Flexible magnetic filaments as micromechanical sensors by Goubault, C, Jop, P, Fermigier, M, Baudry, J, Bertrand, E, Bibette, J

    Published in Physical review letters (31-12-2003)
    “…We propose a new micromechanical approach to probe bending rigidity at molecular scale. Long flexible filaments made of magnetic colloids and linkers are shown…”
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  5. 5

    Digital antimicrobial susceptibility testing using the MilliDrop technology by Jiang, L., Boitard, L., Broyer, P., Chareire, A.-C., Bourne-Branchu, P., Mahé, P., Tournoud, M., Franceschi, C., Zambardi, G., Baudry, J., Bibette, J.

    “…We present the MilliDrop Analyzer (MDA), a droplet-based millifluidic system for digital antimicrobial susceptibility testing (D-AST), which enables us to…”
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  6. 6

    Double emulsions: how does release occur? by Pays, K, Giermanska-Kahn, J, Pouligny, B, Bibette, J, Leal-Calderon, F

    Published in Journal of controlled release (19-02-2002)
    “…Water-in-oil-in-water double emulsions (W/O/W) consist of dispersed oil globules containing smaller aqueous droplets. These materials offer interesting…”
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  7. 7

    Shear Rupturing of Droplets in Complex Fluids by Mason, T. G, Bibette, J

    Published in Langmuir (20-08-1997)
    “…We have experimentally studied the shear-induced rupturing of viscous droplets in viscoelastic complex fluids. Remarkably, a premixed emulsion of large,…”
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  8. 8

    Yielding and Flow of Monodisperse Emulsions by Mason, T.G., Bibette, J., Weitz, D.A.

    Published in Journal of colloid and interface science (10-05-1996)
    “…We have measured the yield transition of monodisperse emulsions as the volume fraction, φ, and droplet radius,a, are varied. We study the crossover from the…”
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    Diffusion through colloidal shells under stress by Guery, J, Baudry, J, Weitz, D A, Chaikin, P M, Bibette, J

    “…The permeability of solids has long been associated with a diffusive process involving activated mechanism as originally envisioned by Eyring. Tensile stress…”
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  11. 11

    Monodisperse fragmentation in emulsions: Mechanisms and kinetics by Mabille, C, Leal-Calderon, F, Bibette, J, Schmitt, V

    Published in Europhysics letters (01-03-2003)
    “…How can a crude polydisperse emulsion be transformed into a monodisperse one? Mason and Bibette (Phys. Rev. Lett., 77 (1996) 3481) have experimentally…”
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  12. 12

    Coalescence in Surfactant-Stabilized Double Emulsions by Pays, K, Giermanska-Kahn, J, Pouligny, B, Bibette, J, Leal-Calderon, F

    Published in Langmuir (11-12-2001)
    “…In this paper, we investigate the two mechanisms that are responsible for the release of a chemical substance from water-in-oil-in-water double emulsions. (i)…”
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  13. 13

    Irreversible shear-activated aggregation in non-Brownian suspensions by Guery, J, Bertrand, E, Rouzeau, C, Levitz, P, Weitz, D A, Bibette, J

    Published in Physical review letters (19-05-2006)
    “…We have studied the effect of shear on the stability of suspensions made of non-Brownian solid particles. We demonstrate the existence of an irreversible…”
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  14. 14

    Measuring colloidal forces with the magnetic chaining technique by Dreyfus, R., Lacoste, D., Bibette, J., Baudry, J.

    “…In 1994 Leal Calderon et al. (Phys. Rev. Lett. 72 , 2959 (1994)) introduced the magnetic chaining technique to directly probe the force-distance profile…”
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  15. 15

    Investigation of the complex susceptibility of magnetic beads containing maghemite nanoparticles by Fannin, P.C., Cohen-Tannoudji, L., Bertrand, E., Giannitsis, A.T., Mac Oireachtaigh, C., Bibette, J.

    “…We report on frequency and field-dependent complex susceptibility, χ s ( ω ) = χ s ′ ( ω ) - i χ s ″ ( ω ) , measurements of a magnetic colloidal system…”
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  16. 16

    Rheology of Emulsions Stabilized by Solid Interfaces by Bressy, L, Hébraud, P, Schmitt, V, Bibette, J

    Published in Langmuir (04-02-2003)
    “…The rheological behavior of soybean oil emulsions stabilized by sodium caseinate is studied. While having a very low interfacial tension, these emulsions, when…”
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  17. 17

    Some Stability Criteria for Double Emulsions by Ficheux, M.-F, Bonakdar, L, Leal-Calderon, F, Bibette, J

    Published in Langmuir (12-05-1998)
    “…Double W/O/W emulsions consist in an inverse emulsion which is dispersed within a water continuous phase as direct emulsion droplets. The aim of this paper is…”
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    Skin cell targeting with self-assembled ligand addressed nanoemulsion droplets by Atrux-Tallau, N., Delmas, T., Han, S.-H., Kim, J.-W., Bibette, J.

    Published in International journal of cosmetic science (01-06-2013)
    “…Synopsis Dermo‐pharmacy and cosmetic industries have utilized nanotechnologies for two decades. Initially proposed as vector systems for encapsulation of…”
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  20. 20

    Magnetic force probe for nanoscale biomolecules by KOENIG, A, HEBRAUD, P, GOSSE, C, DREYFUS, R, BAUDRY, J, BERTRAND, E, BIBETTE, J

    Published in Physical review letters (16-09-2005)
    “…We present a new technique to measure the mechanical properties of small biomolecules. This technique uses long range repulsive colloidal forces together with…”
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