A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrical source and a filter impulse response. In the Dimitrov-Dimitrova (D-D) convolutional model, the first temporal derivative of the intracellular action potential (IAP) is used as the source, and T spl is a time parameter related to the duration of the IAP waveform. Our work is centred on the relation between Tspl and the main spike duration (MSD), defined as the time interval between the first and third phases of the SFAP. We show that Tspl essentially determines the MSD parameter. As experimental data, we used fibrillation potentials (FPs) of two different muscles to study the...
Mathematical expressions are derived for some parameters of the myoelectric (ME) signal recorded dur...
<p>A) MEP amplitude recorded from the FDI muscle was comparable in the experimental (red line) and t...
This paper shows that conduction velocity (CV) and motor unit action potential (MUAPs) synchronizati...
A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrical...
Abstract.−A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrica...
Abstract—The single-fiber action potential (SFAP) can be mod-eled as a convolution of a biolectrical...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
To facilitate a study of the transmembrane action current, the striated muscle spike potential was r...
Generally, single muscle fiber action potentials (SFAPs) are modeled as a convolution of the bioelec...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
An Electromyogram (EMG) is an electrical signal, which is measured from a skeletal muscle during vol...
From Sandow's excitation-contraction coupling hypothesis and reasonable assumptions I obtain the kin...
In vivo records of single fibre action potentials (SFAPs) have always been obtained at unknown dista...
A method is presented for determining the magnitude of the ionic current associated with the propaga...
Mathematical expressions are derived for some parameters of the myoelectric (ME) signal recorded dur...
<p>A) MEP amplitude recorded from the FDI muscle was comparable in the experimental (red line) and t...
This paper shows that conduction velocity (CV) and motor unit action potential (MUAPs) synchronizati...
A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrical...
Abstract.−A single fibre action potential (SFAP) can be modelled as the convolution of a biolectrica...
Abstract—The single-fiber action potential (SFAP) can be mod-eled as a convolution of a biolectrical...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
Single muscle fibre action potentials (SFAPs) are considered to be functions of a bioelectrical sour...
To facilitate a study of the transmembrane action current, the striated muscle spike potential was r...
Generally, single muscle fiber action potentials (SFAPs) are modeled as a convolution of the bioelec...
The convolution of the transmembrane current of an excitable cell and a weighting function generates...
An Electromyogram (EMG) is an electrical signal, which is measured from a skeletal muscle during vol...
From Sandow's excitation-contraction coupling hypothesis and reasonable assumptions I obtain the kin...
In vivo records of single fibre action potentials (SFAPs) have always been obtained at unknown dista...
A method is presented for determining the magnitude of the ionic current associated with the propaga...
Mathematical expressions are derived for some parameters of the myoelectric (ME) signal recorded dur...
<p>A) MEP amplitude recorded from the FDI muscle was comparable in the experimental (red line) and t...
This paper shows that conduction velocity (CV) and motor unit action potential (MUAPs) synchronizati...