Existing approaches for automated tracking of fascicle length (FL) and pennation angle (PA) rely on the presence of a single, user-defined fascicle (feature tracking) or on the presence of a specific intensity pattern (feature detection) across all the recorded ultrasound images. These prerequisites are seldom met during large dynamic muscle movements or for deeper muscles that are difficult to image. Deep-learning approaches are not affected by these issues, but their applicability is restricted by their need for large, manually analyzed training data sets. To address these limitations, the present study proposes a novel approach that tracks changes in FL and PA based on the distortion pattern within the fascicle band. The results indicate...
Muscle architecture features, typically defined by the length, curvature and the angle of insertion ...
Objective: To develop an automated algorithm for detecting fasciculations and other movements in mus...
Background: Dynamic measurements of human muscle fascicle length from sequences of B-mode ultrasound...
Existing approaches for automated tracking of fascicle length (FL) and pennation angle (PA) rely on ...
We address the problem of tracking in vivo muscle fascicle shape and length changes using ultrasound...
Goal: The fascicle length obtained by ultrasound imaging is one of the crucial muscle architecture p...
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...
Objective B-mode ultrasound can be used to image musculoskeletal tissues, but one major bottleneck ...
Ultrasound imaging for medical applications is considered a cost-effective and non-invasive method o...
Muscle pennation angle (PA) is a key characteristic in muscle function. However, current methodologi...
Manual tracking of muscle fascicle length changes from ultrasound images is a subjective and time-co...
Background and objectiveDynamic muscle fascicle length measurements through B-mode ultrasound have b...
Fascicle (fiber bundle) orientation and length are useful parameters to infer the force potential of...
B-mode ultrasound has become one-off, if not the main way of measuring muscle fascicle fiber lengths...
Muscle architecture features, typically defined by the length, curvature and the angle of insertion ...
Objective: To develop an automated algorithm for detecting fasciculations and other movements in mus...
Background: Dynamic measurements of human muscle fascicle length from sequences of B-mode ultrasound...
Existing approaches for automated tracking of fascicle length (FL) and pennation angle (PA) rely on ...
We address the problem of tracking in vivo muscle fascicle shape and length changes using ultrasound...
Goal: The fascicle length obtained by ultrasound imaging is one of the crucial muscle architecture p...
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...
Objective B-mode ultrasound can be used to image musculoskeletal tissues, but one major bottleneck ...
Ultrasound imaging for medical applications is considered a cost-effective and non-invasive method o...
Muscle pennation angle (PA) is a key characteristic in muscle function. However, current methodologi...
Manual tracking of muscle fascicle length changes from ultrasound images is a subjective and time-co...
Background and objectiveDynamic muscle fascicle length measurements through B-mode ultrasound have b...
Fascicle (fiber bundle) orientation and length are useful parameters to infer the force potential of...
B-mode ultrasound has become one-off, if not the main way of measuring muscle fascicle fiber lengths...
Muscle architecture features, typically defined by the length, curvature and the angle of insertion ...
Objective: To develop an automated algorithm for detecting fasciculations and other movements in mus...
Background: Dynamic measurements of human muscle fascicle length from sequences of B-mode ultrasound...