The theory from electrical ladder networks is often used as a mathematical basis to introduce the analogy to mechanical parametric models. In turn, the mechanical analogy serves as a theoretical basis for analyzing viscoelastic properties in the lung tissue. A relation between the lumped fractional order model parameters and viscoelasticity bridges the two worlds of mathematical and physiological concepts. This paper provides the necessary framework to support the added value of fractional order models for respiratory impedance and their ability in characterizing viscoelasticity in the lungs
This paper aims to provide the mechanical parameters of the respiratory airways (resistance, inertan...
This article focuses on fractional Maxwell model of viscoelastic materials, which are a generalizati...
Time dependent hereditary properties of complex materials are well described by power-laws with real...
The theory from electrical ladder networks is often used as a mathematical basis to introduce the an...
The self similar branching arrangement of the airways makes the respiratory system an ideal candida...
This contribution provides an analysis of the human respiratory system in frequency domain by means ...
The self similar branching arrangement of the airways makes the respiratory system an ideal candidat...
This paper provides a model of the human respiratory system by taking into account the fractal struc...
New lumped-element models of red blood cell mechanics can be constructed using fractional order gene...
In this study, changes in respiratory mechanics from healthy and chronic obstructive pulmonary disea...
Fractional order modeling of biological systems has received significant interest in the research co...
Fractional order modeling of biological systems has received significant interest in the research co...
This paper introduces the emerging tool from mathematics in engineering: fractional calculus. Conseq...
The fractional calculus is a generalization of classical integer-order integration and derivation to...
Taking into account the self-similar recurrent geometrical structure of the human respiratory tree, ...
This paper aims to provide the mechanical parameters of the respiratory airways (resistance, inertan...
This article focuses on fractional Maxwell model of viscoelastic materials, which are a generalizati...
Time dependent hereditary properties of complex materials are well described by power-laws with real...
The theory from electrical ladder networks is often used as a mathematical basis to introduce the an...
The self similar branching arrangement of the airways makes the respiratory system an ideal candida...
This contribution provides an analysis of the human respiratory system in frequency domain by means ...
The self similar branching arrangement of the airways makes the respiratory system an ideal candidat...
This paper provides a model of the human respiratory system by taking into account the fractal struc...
New lumped-element models of red blood cell mechanics can be constructed using fractional order gene...
In this study, changes in respiratory mechanics from healthy and chronic obstructive pulmonary disea...
Fractional order modeling of biological systems has received significant interest in the research co...
Fractional order modeling of biological systems has received significant interest in the research co...
This paper introduces the emerging tool from mathematics in engineering: fractional calculus. Conseq...
The fractional calculus is a generalization of classical integer-order integration and derivation to...
Taking into account the self-similar recurrent geometrical structure of the human respiratory tree, ...
This paper aims to provide the mechanical parameters of the respiratory airways (resistance, inertan...
This article focuses on fractional Maxwell model of viscoelastic materials, which are a generalizati...
Time dependent hereditary properties of complex materials are well described by power-laws with real...