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Dive into the research topics where Remi Julliard is active.

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Featured researches published by Remi Julliard.


Medical Image Analysis | 1999

Incorporating a statistically based shape model into a system for computer-assisted anterior cruciate ligament surgery.

Markus Fleute; Stephane Lavallee; Remi Julliard

This paper addresses the problem of extrapolating very sparse three-dimensional (3-D) data to obtain a complete surface representation. A new method that uses statistical shape models is proposed and its application to computer-assisted anterior cruciate ligament (ACL) reconstruction is detailed. The rupture of the ACL has become one of the most common knee injuries. One problem during reconstruction is to find the optimal attachment points for the graft. Therefore a system for computer-assisted reconstruction of the ACL has been proposed by TIMC laboratory. During surgery the surgeon collects several data points on the tibial and femoral joint surface with a 3-D localizer system. These 3-D data are used to find those attachment points resulting in a low anisometry of the graft, while preventing impingement between the graft and the femoral notch. As the collected data points only cover a small surface patch of the femur, it is desirable to extrapolate these data to also have a visualization in those areas where no data points are available. A sufficiently good approximation of the actual femur by the model would further allow us to better deal with the notch impingement problem of the graft. The chosen approach is to fit a deformable model to the data points, it can be subdivided into two steps, constructing the model and fitting this model to the data. To incorporate a priori knowledge into the model, the allowed deformations are determined by the statistics of the shape variation of a set of training objects. Matching the training objects together is obtained by elastic registration of surface points using octree splines. The fitting process of the sparse intra-operative data with the statistical model results in a non-linear multi-dimensional function minimization. A hybrid search strategy combining local and global methods is used to avoid local minima. First experimental results with a model generated from 10 femurs are presented, including fitting of the model with both simulated and real intra-operative data.


Journal of Image Guided Surgery | 1995

Computer-Assisted Knee Anterior Cruciate Ligament Reconstruction: First Clinical Tests

Vincent Dessenne; Stephane Lavallee; Remi Julliard; Rachel Orti; Sandra Martelli; Philippe Cinquin

Anterior cruciate ligament reconstruction is a delicate task. The procedure of choice is the patellar tendon bone autograft, but an anisometric position of this tendon often leads to failure. We propose a method that allows positioning of the central part of the ligament graft at the least anisometric sites. The system uses a workstation and a three-dimensional optical localizer to create images that represent knee kinematics. The surgeon uses these images to guide the surgery. This technique has been validated on eight cadavers and 12 patients.


international conference on computer vision | 1995

Computer Assisted Knee Anterior Cruciate Ligament Reconstruction: First Clinical Tests

Vincent Dessenne; Stephane Lavallee; Remi Julliard; Philippe Cinquin; Rachel Orti

Anterior cruciate ligament reconstruction is a delicate task. The procedure of choice is the patellar tendon bone autograft, but an anisometric position of this tendon often leads to failure. We allows positioning of the central part of the ligament graft at the least anisometric sites. The system uses a workstation and a three-dimensional optical localizer to create images that represent knee kinematics. The surgeon uses these images to guide the surgery. This technique has been validated on eight cadavers and 12 patients.


Archive | 1993

Method and system for determining the fixation point on the femur of a crossed ligament of the knee

Eric Bainville; Philippe Cinquin; Remi Julliard; Jocelyne Troccaz; Stéphane Lavallée; Guillaume Champlebaux


Archive | 1993

Procedure for determining the femoral anchorage part of a cruciate knee ligament

Eric Bainville; Guillaume Champlebaux; Philippe Cinquin; Remi Julliard; Stéphane Lavallée; Jocelyne Troccaz


Archive | 1995

Laboratory Investigation Mathematical Determination of the Tibia1 Insertion of the Patellar Tendon Using Computed Tomography Images

Guillaume Champleboux; Remi Julliard; Philippe Cinquin


Archive | 1993

Method for determining thighbone fixing point related to crossed ligament of knee and device therefor

Eric Bainville; Guillaume Champlebaux; Philippe Cinquin; Remi Julliard; Stephane Lavallee; Jocelyne Troccaz; バンヴィル エリク; シャンルボー ギヨーム; トロカ ジョスラン; ラヴァレ ステファン; サンキュアン フィリップ; ジュリアール レミィ


Archive | 1993

Method for determining the Femurverankerungspunkts of the cruciate ligament of a knee joint

Eric Bainville; Philippe Cinquin; Remi Julliard; Jocelyne Troccaz; Stephane Lavallee; Guillaume Champlebaux


Archive | 1993

Verfahren zur Bestimmung des Femurverankerungspunkts des Kreuzbandes eines Kniegelenks Method for determining the Femurverankerungspunkts the cruciate ligament of a knee joint

Eric Bainville; Philippe Cinquin; Remi Julliard; Jocelyne Troccaz; Stephane Lavallee; Guillaume Champlebaux


Archive | 1992

Procédé de détermination du point d'ancrage fémoral d'un ligament croisé de genou.

Eric Bainville; Philippe Cinquin; Remi Julliard; Jocelyne Troccaz; Stephane Lavallee; Guillaume Champlebaux

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Philippe Cinquin

Centre national de la recherche scientifique

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Stephane Lavallee

Centre national de la recherche scientifique

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Jocelyne Troccaz

Centre national de la recherche scientifique

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Eric Bainville

Joseph Fourier University

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Markus Fleute

Joseph Fourier University

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