A finite-element model for the generation of single fiber action potentials in a muscle undergoing various degrees of fiber shortening is developed. The muscle is assumed fusiform with muscle fibers following a curvilinear path described by a Gaussian function. Different degrees of fiber shortening are simulated by changing the parameters of the fiber path and maintaining the volume of the muscle constant. The conductivity tensor is adapted to the muscle fiber orientation. In each point of the volume conductor, the conductivity of the muscle tissue in the direction of the fiber is larger than that in the transversal direction. Thus, the conductivity tensor changes point-by-point with fiber shortening, adapting to the fiber paths. An analyti...
Traditionally, studies dealing with muscle shortening have concentrated on assessing its impact on c...
We propose a model for surface EMG signal generation with cylindrical description of the volume cond...
Electromyography is the study of the waveforms of the electrical activity which always accompanies m...
Surface electromyographic (EMG) signal modeling has important applications in the interpretation of ...
A nonspace invariant model of volume conductor for surface electromyography(EMG) signal generation i...
Abstract—The effect of skin, muscle, fat, and bone tissue on simulated surface electromyographic (EM...
Surface electromyographic (EMG) signal modeling is important for signal interpretation, testing of p...
INTRODUCTION: Surface electromyography (sEMG) is the measurement of the electrical activity of the s...
The study and measurement of the magnetic field from the skeletal muscle is called Magnetomyography ...
This dissertation investigates force generation in muscle using a finite element (FE) approach to mo...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
Traditionally, studies dealing with muscle shortening have concentrated on assessing its impact on c...
We propose a model for surface EMG signal generation with cylindrical description of the volume cond...
Electromyography is the study of the waveforms of the electrical activity which always accompanies m...
Surface electromyographic (EMG) signal modeling has important applications in the interpretation of ...
A nonspace invariant model of volume conductor for surface electromyography(EMG) signal generation i...
Abstract—The effect of skin, muscle, fat, and bone tissue on simulated surface electromyographic (EM...
Surface electromyographic (EMG) signal modeling is important for signal interpretation, testing of p...
INTRODUCTION: Surface electromyography (sEMG) is the measurement of the electrical activity of the s...
The study and measurement of the magnetic field from the skeletal muscle is called Magnetomyography ...
This dissertation investigates force generation in muscle using a finite element (FE) approach to mo...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
This study presents a modelling framework in which information on muscle fiber direction and orienta...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
Traditionally, studies dealing with muscle shortening have concentrated on assessing its impact on c...
We propose a model for surface EMG signal generation with cylindrical description of the volume cond...
Electromyography is the study of the waveforms of the electrical activity which always accompanies m...