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Dive into the research topics where Marie-Hélène Meurisse is active.

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Featured researches published by Marie-Hélène Meurisse.


Langmuir | 2008

Role of nanomechanical properties in the tribological performance of phospholipid biomimetic surfaces.

Ana-Maria Trunfio-Sfarghiu; Yves Berthier; Marie-Hélène Meurisse; Jean-Paul Rieu

The role of phospholipid bilayers in controlling and reducing frictional forces between biological surfaces is investigated by three complementary experiments: friction forces are measured using a homemade tribometer, mechanical resistance to indentation is measured by AFM, and lipid bilayer degradation is controlled in situ during friction testing using fluorescence microscopy. DPPC lipid bilayers in the solid phase generate friction coefficients as low as 0.002 (comparable to that found for cartilage) that are stable through time. DOPC bilayers formed by the vesicle fusion method or the adsorption of mixed micelles generate higher friction coefficients. These coefficients increased through time, during which the bilayers degraded. The friction coefficient is correlated with the force needed to penetrate the bilayer with the AFM tip. With only one bilayer in the contact region, the friction increased to a similar value of about 0.08 for the DPPC and DOPC. Our study therefore shows that good mechanical stability of the bilayers is essential and suggests that the low friction coefficient is ensured by the hydration layers between adjacent lipid bilayers.


Tribology International | 2011

Tribological properties of fluid phase phospholipid bilayers

Magdalena-Carla Corneci; Fairouz Dekkiche; Ana-Maria Trunfio-Sfarghiu; Marie-Hélène Meurisse; Yves Berthier; Jean-Paul Rieu


Tribology International | 2013

A molecular dynamics study of a nanoscale liquid bridge under shear

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


tribo-lyon2013 Conference | 2013

Molecular Dynamics Study of Lubrication Phenomena of Nanoscale Liquid Bridge between Surfaces

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


5th World Tribology Congress, WTC2013 | 2013

A Molecular Dynamics Study for Momentum Transport Phenomena in Nanoscale Liquid Bridge

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


5th ELyT lab Workshop | 2013

A molecular dynamics study for the momentum transport in a liquid bridge

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


マイクロ・ナノ工学シンポジウム | 2012

OS6-1-2 ナノ液柱の運動量輸送特性に関する分子動力学的解析(OS6 マイクロナノトライボロジー(1))

崇 徳増; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


The Proceedings of the Symposium on Micro-Nano Science and Technology | 2012

OS6-1-2 A Molecular Dynamics Study for the Transport Phenomena of a Nanoscale Liquid Bridge

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


NordTrib 2012 Symposium on Tribology | 2012

Characteristics of Momentum Transport in a Nanoscale Liquid Bridge

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne


ELyT Lab Annual Workshop | 2012

Modelling of momentum transport in a nanoscale liquid bridge

Takashi Tokumasu; Marie-Hélène Meurisse; Nicolas Fillot; Philippe Vergne

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Philippe Vergne

Institut national des sciences Appliquées de Lyon

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Yves Berthier

Institut national des sciences Appliquées de Lyon

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Aurélien Saulot

Institut national des sciences Appliquées de Lyon

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Camille Dayot

Institut national des sciences Appliquées de Lyon

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Ivan Iordanoff

Institut national des sciences Appliquées de Lyon

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Laurent Baillet

Centre national de la recherche scientifique

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