Muscle architecture parameters, such as the fascicle length, pennation angle, and volume, are important muscle morphology characteristics. Accurate in vivo quantification of these parameters allows to detect changes due to pathologies, interventions, and rehabilitation trainings, which ultimately impact on muscles’ force-producing capacity. In this study, we compared three-dimensional (3D) muscle architecture parameters of the tibialis anterior and gastrocnemius medialis, which were quantified by 3D freehand ultrasound (3DfUS) and a magnetic resonance imaging (MRI) technique, diffusion tensor imaging (DTI), respectively. Sixteen able-bodied subjects were recruited where seven of them received both 3DfUS and MRI measurement, while the rest u...
Muscle fascicle architecture is an important parameter affecting the mechanical function of skeletal...
Background. Most data on the architecture of the human soleus muscle have been obtained from cadaver...
This study investigates the in-vivo architecture of muscles in the lower leg using 2D ultrasound (US...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
Muscle volume and length are important parameters for examining the force-generating capabilities of...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
Muscle morphological parameters such as fascicle length (FL), pennationangle (PA) and physiologic cr...
Skeletal muscle architecture significantly influences the performance capacity of a muscle. A DTI-ba...
Skeletal muscle architecture significantly influences the performance capacity of a muscle. A DTI-ba...
Skeletal muscle structural assembly (and its remodeling in response to loading-unloading states) can...
Background. Muscles not only shorten during contraction to perform mechanical work, but they also bu...
The developmental goal of 3D ultrasound imaging (3DUS) is to engineer a modality to perform 3D morph...
In several neurological disorders and muscle injuries, morphological changes of the m. semitendinosu...
B-mode ultrasound is often used to quantify muscle architecture during movements. Our objectives wer...
B-mode ultrasound is often used to quantify muscle architecture during movements. Our objectives wer...
Muscle fascicle architecture is an important parameter affecting the mechanical function of skeletal...
Background. Most data on the architecture of the human soleus muscle have been obtained from cadaver...
This study investigates the in-vivo architecture of muscles in the lower leg using 2D ultrasound (US...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
Muscle volume and length are important parameters for examining the force-generating capabilities of...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
Muscle morphological parameters such as fascicle length (FL), pennationangle (PA) and physiologic cr...
Skeletal muscle architecture significantly influences the performance capacity of a muscle. A DTI-ba...
Skeletal muscle architecture significantly influences the performance capacity of a muscle. A DTI-ba...
Skeletal muscle structural assembly (and its remodeling in response to loading-unloading states) can...
Background. Muscles not only shorten during contraction to perform mechanical work, but they also bu...
The developmental goal of 3D ultrasound imaging (3DUS) is to engineer a modality to perform 3D morph...
In several neurological disorders and muscle injuries, morphological changes of the m. semitendinosu...
B-mode ultrasound is often used to quantify muscle architecture during movements. Our objectives wer...
B-mode ultrasound is often used to quantify muscle architecture during movements. Our objectives wer...
Muscle fascicle architecture is an important parameter affecting the mechanical function of skeletal...
Background. Most data on the architecture of the human soleus muscle have been obtained from cadaver...
This study investigates the in-vivo architecture of muscles in the lower leg using 2D ultrasound (US...