Magnetic resonance imaging (MRI) can non-invasively assess muscle anatomy, exercise effects and pathologies with different underlying causes such as neuromuscular diseases (NMD). Quantitative MRI including fat fraction mapping using chemical shift encoding-based water-fat MRI has emerged for reliable determination of muscle volume and fat composition. The data analysis of water-fat images requires segmentation of the different muscles which has been mainly performed manually in the past and is a very time consuming process, currently limiting the clinical applicability. An automatization of the segmentation process would lead to a more time-efficient analysis. In the present work, the manually segmented thigh magnetic resonance imaging data...
Abstract Background Changes in muscle fat composition as for example observed in sarcopenia or muscu...
(1) Background and Purpose: The skeletal muscles of patients suffering from neuromuscular diseases (...
Recent years have seen tremendous progress towards therapy of many previously incurable neuromuscula...
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...
Abstract Background Magnetic resonance imaging (MRI) is the modality of choice for diagnosing and mo...
Purpose: Based on conventional and quantitative magnetic resonance imaging (MRI), texture analysis (...
peer reviewedOBJECTIVES: Magnetic resonance imaging (MRI) constitutes a powerful outcome measure in ...
International audiencePurpose: To propose a novel segmentation framework that is dedicated to the fo...
Purpose—To introduce and validate an unsupervised muscle and fat quantification algorithm based on j...
Purpose: Infiltration of fat into lower limb muscles is one of the key markers for the severity of m...
This work reports a study of Neuromuscular Diseases (NMD) by Magnetic Resonance Imaging as reliable ...
Background Deep learning methods have been shown to be useful for segmentation of lower limb muscle ...
Advances in magnetic resonance imaging (MRI) and analysis techniques have improved diagnosis and pa...
Abstract Background Changes in muscle fat composition as for example observed in sarcopenia or muscu...
(1) Background and Purpose: The skeletal muscles of patients suffering from neuromuscular diseases (...
Recent years have seen tremendous progress towards therapy of many previously incurable neuromuscula...
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...
Abstract Background Magnetic resonance imaging (MRI) is the modality of choice for diagnosing and mo...
Purpose: Based on conventional and quantitative magnetic resonance imaging (MRI), texture analysis (...
peer reviewedOBJECTIVES: Magnetic resonance imaging (MRI) constitutes a powerful outcome measure in ...
International audiencePurpose: To propose a novel segmentation framework that is dedicated to the fo...
Purpose—To introduce and validate an unsupervised muscle and fat quantification algorithm based on j...
Purpose: Infiltration of fat into lower limb muscles is one of the key markers for the severity of m...
This work reports a study of Neuromuscular Diseases (NMD) by Magnetic Resonance Imaging as reliable ...
Background Deep learning methods have been shown to be useful for segmentation of lower limb muscle ...
Advances in magnetic resonance imaging (MRI) and analysis techniques have improved diagnosis and pa...
Abstract Background Changes in muscle fat composition as for example observed in sarcopenia or muscu...
(1) Background and Purpose: The skeletal muscles of patients suffering from neuromuscular diseases (...
Recent years have seen tremendous progress towards therapy of many previously incurable neuromuscula...