The convolution of the transmembrane current of an excitable cell and a weighting function generates a single fiber action potential (SFAP) model by using the volume conductor theory. Here, we propose an empirical muscle IAP model with multiple Erlang probability density functions (PDFs) based on a modified Newton method. In addition, we generate SFAPs based on our IAP model and referent sources, and use the peak-to-peak ratios (PPRs) of SFAPs for model verification. Through this verification, we find that the relation between an IAP profile and the PPR of its SFAP is consistent with some previous studies, and our IAP model shows close profiles to the referent sources. Moreover, we simulate and discuss some possible ionic activities by usin...
Poster Presentation from Nineteenth Annual Computational Neuroscience Meeting: CNS*2010 San Antonio,...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
This is an open access article published under the Creative Commons CC-BY-NC 3.0 license
An Electromyogram (EMG) is an electrical signal, which is measured from a skeletal muscle during vol...
Generally, single muscle fiber action potentials (SFAPs) are modeled as a convolution of the bioelec...
Abstract—The single-fiber action potential (SFAP) can be mod-eled as a convolution of a biolectrical...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrical...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Recent experimental findings in the Rich lab suggest there are important gaps in our understanding o...
This paper demonstrates quantitatively, using streamlined mathematics, how the transmembrane ionic c...
Poster Presentation from Nineteenth Annual Computational Neuroscience Meeting: CNS*2010 San Antonio,...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
This is an open access article published under the Creative Commons CC-BY-NC 3.0 license
An Electromyogram (EMG) is an electrical signal, which is measured from a skeletal muscle during vol...
Generally, single muscle fiber action potentials (SFAPs) are modeled as a convolution of the bioelec...
Abstract—The single-fiber action potential (SFAP) can be mod-eled as a convolution of a biolectrical...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrical...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Recent experimental findings in the Rich lab suggest there are important gaps in our understanding o...
This paper demonstrates quantitatively, using streamlined mathematics, how the transmembrane ionic c...
Poster Presentation from Nineteenth Annual Computational Neuroscience Meeting: CNS*2010 San Antonio,...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
The aim of this chapter is to describe the approaches used for modelling electromyographic (EMG) si...