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Dive into the research topics where Patrick Métrailler is active.

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Featured researches published by Patrick Métrailler.


IEEE Transactions on Neural Systems and Rehabilitation Engineering | 2009

The WalkTrainer—A New Generation of Walking Reeducation Device Combining Orthoses and Muscle Stimulation

Yves Stauffer; Yves Allemand; Mohamed Bouri; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard; Fabienne Reynard

This paper presents a novel reeducation device for paraplegics that combines hybrid orthoses and closed-loop electrical muscle stimulation. Based on the so called cyberthosis concept, the WalkTrainer enables an active muscular participation of the subject in the walking reeducation process by the mean of closed-loop muscle stimulation. The WalkTrainer is also equipped with a leg and pelvic orthosis, an active bodyweight support, and motorized wheels to allow true over ground deambulation. This paper will focus on the development of the WalkTrainer, the presentation of the control strategies, and also give some preliminary results of the first clinical trials.


intelligent robots and systems | 2008

Pelvic motion measurement during over ground walking, analysis and implementation on the WalkTrainer reeducation device

Yves Stauffer; Yves Allemand; Mohamed Bouri; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard; Fabienne Reynard

Pelvic motions are of great importance while walking, and have thus to be taken into account when developing and controlling rehabilitation devices. This paper will first introduce a new reeducation device for paraplegic people: the WalkTrainer. This device is composed of a leg and pelvic orthosis, an active bodyweight support and closed loop muscle stimulation. Second, the six degrees of freedom (DOF) of the pelvis will be measured by using the WalkTrainer on a population of twenty healthy subjects. Each DOF was successfully measured and can be analyzed as a function of time or gait cycle. Third several models that predict the pelvic motion amplitude as a function of various parameters (speed, size, ...) will be proposed and analyzed. Fourth, pelvic trajectories will be programmed on the WalkTrainer and applied on healthy subjects by the mean of the pelvic orthosis. In that phase one of the previously proposed models will be implemented. A force reduction of 20% is measured on the pelvic orthosis when the pelvic motion amplitude prediction model is used. At last muscle identification and stimulation will be introduced in the future works chapter.


Journal of Biomechanics | 2008

CLINICAL TRIALS WITH THE WALKTRAINER: PRELIMINARY RESULTS

Yves Stauffer; Yves Allemand; Mohamed Bouri; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard

Robotic devices are well suited for providing motion to the patient and information (positions, forces, etc.) to the therapist. The FSC and LSRO are combining their effort in the development of robotic re-education devices, focusing on active rehabilitation. A new generation of rehabilitation devices combining mobility, closed loop functional electrical muscle stimulation through force feedback and a compliant mechanical interaction was elaborated. At this time, two devices are developed: the MotionMaker™; a stationary device for functional muscle strengthening and the WalkTrainer™; the mobile rehabilitation device used for this study. Previous clinical results on the MotionMaker™ have demonstrated the enhancement of such concept to paraplegic’s life quality and muscle force increasing. The first clinical trials of the WalkTrainer™ on a population of SCI patients will be presented. These trials are made at the Clinique Romande de Readaptation (CRR) in Sion with the help of medical actors through a predefined protocol.


robotics and biomimetics | 2006

The WalkTrainer: A Robotic System for Walking Rehabilitation

Mohamed Bouri; Yves Stauffer; Carl Schmitt; Yves Allemand; Stany Gnemmi; Reymond Clavel; Patrick Métrailler; Roland Brodard


ieee international conference on biomedical robotics and biomechatronics | 2006

Improvement of rehabilitation possibilities with the MotionMaker TM

Patrick Métrailler; Vincent Blanchard; Ismael Perrin; Rolland Brodard; Rolf Frischknecht; Carl Schmitt; Jacques Fournier; Mohamed Bouri; Reymond Clavel


Rehabilitation Robotics | 2007

Cyberthosis: Rehabilitation Robotics With Controlled Electrical Muscle Stimulation

Patrick Métrailler; Roland Brodard; Yves Stauffer; Reymond Clavel; Rolf Frischknecht


6th Mediterranean Forum of PRM | 2006

closed loop electrical muscle stimulation in spinal cord injured rehabilitation

Patrick Métrailler; Roland Brodard; Reymond Clavel; Rolph Frischknecht


Archive | 2007

Cyberthses. Mise en ?uvre d'un nouveau concept de rducation pour paraplgiques

Yves Stauffer; Mohamed Bouri; Carl Scmitt; Yves Allemand; Stany Gnemmi; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard


Journal européen des systèmes automatisés | 2007

Mise en oeuvre d'un nouveau concept de rééducation pour paraplégiques

Yves Stauffer; Mohamed Bouri; Carl Schmitt; Yves Allemand; Stany Gnemmi; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard


Journal Européen des Systèmes Automatisés | 2007

Cyberthèse. Mise en oeuvre d"un nouveau concept de rééducation pour paraplégiques

Yves Stauffer; Mohamed Bouri; Carl Schmitt; Yves Allemand; Stany Gnemmi; Jacques Fournier; Reymond Clavel; Patrick Métrailler; Roland Brodard

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Reymond Clavel

École Polytechnique Fédérale de Lausanne

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Roland Brodard

École Polytechnique Fédérale de Lausanne

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Yves Stauffer

École Polytechnique Fédérale de Lausanne

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Jacques Fournier

École Polytechnique Fédérale de Lausanne

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Yves Allemand

École Normale Supérieure

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Mohamed Bouri

École Polytechnique Fédérale de Lausanne

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Carl Schmitt

École Normale Supérieure

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Stany Gnemmi

École Normale Supérieure

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Fabienne Reynard

École Polytechnique Fédérale de Lausanne

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