Ultrasound (US) muscle image series can be used for peripheral human-machine interfacing based on global features, or even on the decomposition of US images into the contributions of individual motor units (MUs). With respect to state-of-the-art surface electromyography (sEMG), US provides higher spatial resolution and deeper penetration depth. However, the accuracy of current methods for direct US decomposition, even at low forces, is relatively poor. These methods are based on linear mathematical models of the contributions of MUs to US images. Here, we test the hypothesis of linearity by comparing the average velocity twitch profiles of MUs when varying the number of other concomitantly active units. We observe that the velocity twitch p...
Objective: In this study, the aim was to compare the performance of four spatiotemporal decompositio...
Earlier experiments indicates that motor unit activity during isometric contractions can be imaged u...
Skeletal muscle is organized in motor units, each comprising a motor neuron and all its connected mu...
Ultrasound (US) muscle image series can be used for peripheral human-machine interfacing based on gl...
The smallest voluntarily controlled structure of the human body is the motor unit (MU), comprised of...
Objective. The study of human neuromechanical control at the motor unit (MU) level has predominantly...
Objective: Ultrafast ultrasound (UUS) imaging has been used to detect intramuscular mechanical dynam...
The central nervous system (CNS) controls skeletal muscles by the recruitment of motor units (MUs). ...
The central nervous system controls human force production by successive recruitment of motor units ...
The central nervous system coordinates movement through forces generated by motor units (MUs) in ske...
The central nervous system coordinates movement through forces generated by motor units (MUs) in ske...
During a voluntary contraction, motor units (MUs) fire a train of action potentials, causing summati...
Electromyography and ultrasonography provide complementary information about electrophysiological an...
Objective: In this study, the aim was to compare the performance of four spatiotemporal decompositio...
Earlier experiments indicates that motor unit activity during isometric contractions can be imaged u...
Skeletal muscle is organized in motor units, each comprising a motor neuron and all its connected mu...
Ultrasound (US) muscle image series can be used for peripheral human-machine interfacing based on gl...
The smallest voluntarily controlled structure of the human body is the motor unit (MU), comprised of...
Objective. The study of human neuromechanical control at the motor unit (MU) level has predominantly...
Objective: Ultrafast ultrasound (UUS) imaging has been used to detect intramuscular mechanical dynam...
The central nervous system (CNS) controls skeletal muscles by the recruitment of motor units (MUs). ...
The central nervous system controls human force production by successive recruitment of motor units ...
The central nervous system coordinates movement through forces generated by motor units (MUs) in ske...
The central nervous system coordinates movement through forces generated by motor units (MUs) in ske...
During a voluntary contraction, motor units (MUs) fire a train of action potentials, causing summati...
Electromyography and ultrasonography provide complementary information about electrophysiological an...
Objective: In this study, the aim was to compare the performance of four spatiotemporal decompositio...
Earlier experiments indicates that motor unit activity during isometric contractions can be imaged u...
Skeletal muscle is organized in motor units, each comprising a motor neuron and all its connected mu...