Functional neurosurgery requires neuroimaging technologies that enable precise navigation to targeted structures. Insufficient image resolution of deep brain structures necessitates alignment to a brain atlas to indirectly locate targets within preoperative magnetic resonance imaging (MRI) scans. Indirect targeting through atlas-image registration is innately imprecise, increases preoperative planning time, and requires manual identification of anterior and posterior commissure (AC and PC) reference landmarks which is subject to human error. As such, we created a deep learning-based pipeline that consistently and automatically locates, with submillimeter accuracy, the AC and PC anatomical landmarks within MRI volumes without the need for an...
Anatomical landmarks are a crucial prerequisite for many medical imaging tasks. Usually, the set of ...
Skull stripping is the task of finding pixels or voxels that establishes where the brain is in amedi...
This thesis offers possible solution to automatic 3D dental scan landmark localization. These scans ...
International audienceThe increasing use of 3-dimensional (3D) imaging by orthodontists and maxillof...
International audiencePurpose: Transcranial Magnetic Stimulation (TMS) is a growing therapy for a va...
In this study, we propose a fast and accurate method to automatically localize anatomical landmarks ...
Anatomical landmarks on 3-D human body scans play key roles in shape-essential applications, includi...
Anatomical landmarks on 3-D human body scans play key roles in shape-essential applications, includi...
Cardiac MRI is the gold standard for quantification of cardiac volumetry, function, and blood flow. ...
124 pagesMachine learning and deep learning have recently witnessed great successes in various field...
The manual brain tumor annotation process is time consuming and resource consuming, therefore, an au...
Recently, deep learning technology has been applied to medical images. This study aimed to create a ...
The Physics-based Non-Rigid Registration (PBNRR) framework allows for accurate real-time medical ima...
We propose a new Patch-based Iterative Network (PIN) for fast and accurate landmark localisation in ...
PurposeTo develop and evaluate a system to prescribe imaging planes for cardiac MRI based on deep le...
Anatomical landmarks are a crucial prerequisite for many medical imaging tasks. Usually, the set of ...
Skull stripping is the task of finding pixels or voxels that establishes where the brain is in amedi...
This thesis offers possible solution to automatic 3D dental scan landmark localization. These scans ...
International audienceThe increasing use of 3-dimensional (3D) imaging by orthodontists and maxillof...
International audiencePurpose: Transcranial Magnetic Stimulation (TMS) is a growing therapy for a va...
In this study, we propose a fast and accurate method to automatically localize anatomical landmarks ...
Anatomical landmarks on 3-D human body scans play key roles in shape-essential applications, includi...
Anatomical landmarks on 3-D human body scans play key roles in shape-essential applications, includi...
Cardiac MRI is the gold standard for quantification of cardiac volumetry, function, and blood flow. ...
124 pagesMachine learning and deep learning have recently witnessed great successes in various field...
The manual brain tumor annotation process is time consuming and resource consuming, therefore, an au...
Recently, deep learning technology has been applied to medical images. This study aimed to create a ...
The Physics-based Non-Rigid Registration (PBNRR) framework allows for accurate real-time medical ima...
We propose a new Patch-based Iterative Network (PIN) for fast and accurate landmark localisation in ...
PurposeTo develop and evaluate a system to prescribe imaging planes for cardiac MRI based on deep le...
Anatomical landmarks are a crucial prerequisite for many medical imaging tasks. Usually, the set of ...
Skull stripping is the task of finding pixels or voxels that establishes where the brain is in amedi...
This thesis offers possible solution to automatic 3D dental scan landmark localization. These scans ...