Skeletal muscle structural assembly (and its remodeling in response to loading-unloading states) can be investigated macroscopically by assessing muscle architecture, described as fascicle geometric disposition within the muscle. Over recent decades, various medical imaging techniques have been developed to facilitate the in vivo assessment of muscle architecture. However, the main advantages and limitations of these methodologies have been fragmentally discussed. In the present article, the main techniques used for the evaluation of muscle architecture are presented: conventional B-mode ultrasonography, extended-field-of-view ultrasound, 3-D ultrasound and magnetic resonance imaging-based diffusion tensor imaging. By critically discussing ...
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...
The mechanical functions of muscles involve the generation of force and the actuation of movement by...
Muscle architecture parameters, such as the fascicle length, pennation angle, and volume, are import...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
The internal architecture plays an essential role in determining the functional features of skeletal...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
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...
International audienceSkeletal muscles’ primary function in the body is mechanical: to move and stab...
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...
The mechanical functions of muscles involve the generation of force and the actuation of movement by...
Muscle architecture parameters, such as the fascicle length, pennation angle, and volume, are import...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
For detailed analyses of muscle adaptation mechanisms during growth, ageing or disease, reliable mea...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
The internal architecture plays an essential role in determining the functional features of skeletal...
In vivo measurements of muscle architecture provide insight into inter-individual differences in mus...
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...
International audienceSkeletal muscles’ primary function in the body is mechanical: to move and stab...
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...
The mechanical functions of muscles involve the generation of force and the actuation of movement by...