International audienceAbstract Temporal bone CT-scan is a prerequisite in most surgical procedures concerning the ear such as cochlear implants. The 3D vision of inner ear structures is crucial for diagnostic and surgical preplanning purposes. Since clinical CT-scans are acquired at relatively low resolutions, improved performance can be achieved by registering patient-specific CT images to a high-resolution inner ear model built from accurate 3D segmentations based on micro-CT of human temporal bone specimens. This paper presents a framework based on convolutional neural network for human inner ear segmentation from micro-CT images which can be used to build such a model from an extensive database. The proposed approach employs an auto-con...
The main goal of this project is to identify an efficient segmentation algorithm for each anatomic s...
The Open Ear Dataset provides a library consisting of eight three-dimensional colour models of the h...
The presented data set consists of images, labels and surface models of 23 human bony labyrinths. Fo...
International audienceAbstract Temporal bone CT-scan is a prerequisite in most surgical procedures c...
Computed tomography (CT) scans are acquired prior to cochlear implant (CI) surgery. Three-dimensiona...
Abstract Background Segmentation of important structures in temporal bone CT is the basis of image-g...
Background and objective: Performing patient-specific, pre-operative cochlea CT-based measurements c...
Abstract Segmentation of anatomical structures is valuable in a variety of tasks, including 3D visua...
BACKGROUND AND OBJECTIVE: Performing patient-specific, pre-operative cochlea CT-based measurements c...
Introduction: Knowledge of the neuro-anatomical architecture of the inner ear contributes to the imp...
International audienceMain goalImprove the understanding of human temporal bone computed tomography ...
Understanding the human inner ear anatomy and its internal structures is paramount to advance hearin...
Hereby it is presents a novel methodology to segment the internal structures of the human ear based ...
The anatomical model of the ear is of great importance in the design of ossicular prosthesis, cochle...
The temporal bone is a part of the lateral skull surface that contains organs responsible for hearin...
The main goal of this project is to identify an efficient segmentation algorithm for each anatomic s...
The Open Ear Dataset provides a library consisting of eight three-dimensional colour models of the h...
The presented data set consists of images, labels and surface models of 23 human bony labyrinths. Fo...
International audienceAbstract Temporal bone CT-scan is a prerequisite in most surgical procedures c...
Computed tomography (CT) scans are acquired prior to cochlear implant (CI) surgery. Three-dimensiona...
Abstract Background Segmentation of important structures in temporal bone CT is the basis of image-g...
Background and objective: Performing patient-specific, pre-operative cochlea CT-based measurements c...
Abstract Segmentation of anatomical structures is valuable in a variety of tasks, including 3D visua...
BACKGROUND AND OBJECTIVE: Performing patient-specific, pre-operative cochlea CT-based measurements c...
Introduction: Knowledge of the neuro-anatomical architecture of the inner ear contributes to the imp...
International audienceMain goalImprove the understanding of human temporal bone computed tomography ...
Understanding the human inner ear anatomy and its internal structures is paramount to advance hearin...
Hereby it is presents a novel methodology to segment the internal structures of the human ear based ...
The anatomical model of the ear is of great importance in the design of ossicular prosthesis, cochle...
The temporal bone is a part of the lateral skull surface that contains organs responsible for hearin...
The main goal of this project is to identify an efficient segmentation algorithm for each anatomic s...
The Open Ear Dataset provides a library consisting of eight three-dimensional colour models of the h...
The presented data set consists of images, labels and surface models of 23 human bony labyrinths. Fo...