In this study we investigated the changes in fiber length and diffusion parameters as a consequence of passive lengthening and stretching of the calf muscles. We hypothesized that changes in radial diffusivity (RD) are caused by changes in the muscle fiber cross sectional area (CSA) as a consequence of lengthening and shortening of the muscle. Diffusion Tensor MRI (DT-MRI) measurements were made twice in five healthy volunteers, with the foot in three different positions (30° plantarflexion, neutral position and 15° dorsiflexion). The muscles of the calf were manually segmented on co-registered high resolution anatomical scans, and maps of RD and axial diffusivity (AD) were reconstructed from the DT-MRI data. Fiber tractography was performe...
\u3cp\u3eMusculoskeletal (dys-)function relies for a large part on muscle architecture which can be ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
\u3cp\u3eIn this study we investigated the changes in fiber length and diffusion parameters as a con...
Item does not contain fulltextIn this study we investigated the changes in fiber length and diffusio...
Purpose: To investigate to what extent inter- and intramuscular variations of diffusion parameters o...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
\u3cp\u3eMusculoskeletal (dys-)function relies for a large part on muscle architecture which can be ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
In this study we investigated the changes in fiber length and diffusion parameters as a consequence ...
\u3cp\u3eIn this study we investigated the changes in fiber length and diffusion parameters as a con...
Item does not contain fulltextIn this study we investigated the changes in fiber length and diffusio...
Purpose: To investigate to what extent inter- and intramuscular variations of diffusion parameters o...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
BACKGROUND Diffusion tensor imaging (DTI) is a non-invasive MR technique widely employed to study mu...
\u3cp\u3eMusculoskeletal (dys-)function relies for a large part on muscle architecture which can be ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...
Musculoskeletal (dys-)function relies for a large part on muscle architecture which can be obtained ...