International audience— In this paper we introduce a method for semi-automatic registration of 3D deformable models using 2D shape outlines (silhouettes) extracted from a monocular camera view. Our framework is based on the combination of a biomechanical model of the organ with a set of projective constraints influencing the deformation of the model. To enforce convergence towards a global minimum for this ill-posed problem we interactively provide a rough (rigid) estimation of the pose. We show that our approach allows for the estimation of the non-rigid 3D pose while relying only on 2D information. The method is evaluated experimentally on a soft silicone gel model of a liver, as well as on real surgical data, providing augmented reality ...
International audienceThe visualization of internal structures of organs in minimally invasive surge...
International audienceTo build an augmented view of an organ during surgery, it is essential to have...
Presented at the SAGES 2016 Annual Meeting, March 16–19, 2016, Boston, MAInternational audienceAccur...
International audience— In this paper we introduce a method for semi-automatic registration of 3D de...
International audienceWe present in this paper an original method to estimate the pose of a monocula...
International audienceWe address in this paper the ill-posed problem of initial alignment of pre-ope...
International audienceIn this paper we introduce a method for augmenting the laparoscopic view durin...
International audienceEach year in Europe 50,000 new liver cancer cases are diagnosed for which hepa...
Augmented reality systems (ARS) allow the transparent projection of preoperative CT images onto the ...
International audiencePurpose: Locating the internal structures of an organ is a critical aspect of ...
International audienceThe nonrigid alignment between a pre-operative biomechanical model and an intr...
PURPOSE: The initial registration of a 3D pre-operative CT model to a 2D laparoscopic video image in...
International audienceThis paper focuses on the 3D shape recovery and augmented reality on elastic o...
International audienceThis paper introduces an Augmented Reality (AR) system for open liver surgery....
Abstract—One of the current limits of laparosurgery is the absence of a 3D sensing facility for stan...
International audienceThe visualization of internal structures of organs in minimally invasive surge...
International audienceTo build an augmented view of an organ during surgery, it is essential to have...
Presented at the SAGES 2016 Annual Meeting, March 16–19, 2016, Boston, MAInternational audienceAccur...
International audience— In this paper we introduce a method for semi-automatic registration of 3D de...
International audienceWe present in this paper an original method to estimate the pose of a monocula...
International audienceWe address in this paper the ill-posed problem of initial alignment of pre-ope...
International audienceIn this paper we introduce a method for augmenting the laparoscopic view durin...
International audienceEach year in Europe 50,000 new liver cancer cases are diagnosed for which hepa...
Augmented reality systems (ARS) allow the transparent projection of preoperative CT images onto the ...
International audiencePurpose: Locating the internal structures of an organ is a critical aspect of ...
International audienceThe nonrigid alignment between a pre-operative biomechanical model and an intr...
PURPOSE: The initial registration of a 3D pre-operative CT model to a 2D laparoscopic video image in...
International audienceThis paper focuses on the 3D shape recovery and augmented reality on elastic o...
International audienceThis paper introduces an Augmented Reality (AR) system for open liver surgery....
Abstract—One of the current limits of laparosurgery is the absence of a 3D sensing facility for stan...
International audienceThe visualization of internal structures of organs in minimally invasive surge...
International audienceTo build an augmented view of an organ during surgery, it is essential to have...
Presented at the SAGES 2016 Annual Meeting, March 16–19, 2016, Boston, MAInternational audienceAccur...