Abstract Background Magnetic resonance imaging (MRI) is the modality of choice for diagnosing and monitoring muscular tissue pathologies and bone marrow alterations in the context of lower back pain, neuromuscular diseases and osteoporosis. Chemical shift encoding-based water-fat MRI allows for reliable determination of proton density fat fraction (PDFF) of the muscle and bone marrow. Prior to quantitative data extraction, segmentation of the examined structures is needed. Performed manually, the segmentation process is time consuming and therefore limiting the clinical applicability. Thus, the development of automated segmentation algorithms is an ongoing research focus. Construction and content This database provides ground truth data whi...
Background: To our knowledge, there are no methods allowing for quantification of the spatial distri...
Magnetic resonance imaging (MRI) is widely utilized for diagnosing and monitoring of spinal disorder...
peer reviewedOBJECTIVES: Magnetic resonance imaging (MRI) constitutes a powerful outcome measure in ...
Magnetic resonance imaging (MRI) can non-invasively assess muscle anatomy, exercise effects and path...
Magnetic resonance imaging (MRI) can non-invasively assess muscle anatomy, exercise effects and path...
Background: Bone marrow fat (BMF) fraction quantification in vertebral bodies is used as a novel ima...
BackgroundParaspinal musculature (PSM) is increasingly recognized as a contributor to low back pain ...
There is increasing interest in paravertebral muscle composition as a potential prognostic and diagn...
© 2019, Springer Nature Switzerland AG. Recent evidence suggests an association between low back pai...
Abstract Background There is an increasing interest in assessing paraspinal morphology and compositi...
We propose a semi-automatic algorithm for the segmentation of vertebral bodies in magnetic resonance...
International audiencePurpose: To propose a novel segmentation framework that is dedicated to the fo...
In this paper we present an interactive tool that can be used to quantify fat infiltration in lumbar...
We propose a semi-automatic algorithm for the segmentation of vertebral bodies in magnetic resonance...
Background: To our knowledge, there are no methods allowing for quantification of the spatial distri...
Magnetic resonance imaging (MRI) is widely utilized for diagnosing and monitoring of spinal disorder...
peer reviewedOBJECTIVES: Magnetic resonance imaging (MRI) constitutes a powerful outcome measure in ...
Magnetic resonance imaging (MRI) can non-invasively assess muscle anatomy, exercise effects and path...
Magnetic resonance imaging (MRI) can non-invasively assess muscle anatomy, exercise effects and path...
Background: Bone marrow fat (BMF) fraction quantification in vertebral bodies is used as a novel ima...
BackgroundParaspinal musculature (PSM) is increasingly recognized as a contributor to low back pain ...
There is increasing interest in paravertebral muscle composition as a potential prognostic and diagn...
© 2019, Springer Nature Switzerland AG. Recent evidence suggests an association between low back pai...
Abstract Background There is an increasing interest in assessing paraspinal morphology and compositi...
We propose a semi-automatic algorithm for the segmentation of vertebral bodies in magnetic resonance...
International audiencePurpose: To propose a novel segmentation framework that is dedicated to the fo...
In this paper we present an interactive tool that can be used to quantify fat infiltration in lumbar...
We propose a semi-automatic algorithm for the segmentation of vertebral bodies in magnetic resonance...
Background: To our knowledge, there are no methods allowing for quantification of the spatial distri...
Magnetic resonance imaging (MRI) is widely utilized for diagnosing and monitoring of spinal disorder...
peer reviewedOBJECTIVES: Magnetic resonance imaging (MRI) constitutes a powerful outcome measure in ...