It is now well known that the magnetic resonance imaging (MRI) signal decay deviates from the classical mono-exponential relaxation. This deviation is referred to in the literature as anomalous relaxation. The modelling of this anomalous relaxation can provide a better understanding of MRI magnetization. The purpose of this work is to investigate the utility of the distributed-order time fractional Bloch equations to describe anomalous relaxation processes in human brain MRI data. Two choices of continuous distribution weight functions, which are parameterised by their mean μ and standard deviation σ, are studied to investigate their impact on the model solution behaviour. An implicit numerical method implemented on a graded mesh is propose...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Free to read Fractional-order dynamics in physics, particularly when applied to diffusion, leads to ...
It is now well known that the magnetic resonance imaging (MRI) signal decay deviates from the classi...
Highlights - We consider anomalous relaxation processes of human tissue. - We explore the utility of...
PURPOSE To study the utility of fractional calculus in modeling gradient-recalled echo MRI signal d...
PURPOSE \ud \ud To study the utility of fractional calculus in modeling gradient-recalled echo MRI s...
Mathematical models are becoming increasingly important in magnetic resonance imaging (MRI), as they...
Mathematical models are becoming increasingly important in magnetic resonance imaging (MRI), as they...
Highlights - We consider anomalous relaxation processes of human tissue. - We explore the utility of...
Magnetic resonance imaging can reveal exquisite details about the complex structure and function of ...
MRI models based on integer order calculus lack the ability to accurately map magnitude signal decay...
In physics and chemistry, specifically in NMR (nuclear magnetic resonance) or MRI (magnetic resonanc...
In physics and chemistry, specifically in NMR (nuclear magnetic resonance) or MRI (magnetic resonanc...
This thesis is primarily concerned with developing new models and numerical methods based on the fra...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Free to read Fractional-order dynamics in physics, particularly when applied to diffusion, leads to ...
It is now well known that the magnetic resonance imaging (MRI) signal decay deviates from the classi...
Highlights - We consider anomalous relaxation processes of human tissue. - We explore the utility of...
PURPOSE To study the utility of fractional calculus in modeling gradient-recalled echo MRI signal d...
PURPOSE \ud \ud To study the utility of fractional calculus in modeling gradient-recalled echo MRI s...
Mathematical models are becoming increasingly important in magnetic resonance imaging (MRI), as they...
Mathematical models are becoming increasingly important in magnetic resonance imaging (MRI), as they...
Highlights - We consider anomalous relaxation processes of human tissue. - We explore the utility of...
Magnetic resonance imaging can reveal exquisite details about the complex structure and function of ...
MRI models based on integer order calculus lack the ability to accurately map magnitude signal decay...
In physics and chemistry, specifically in NMR (nuclear magnetic resonance) or MRI (magnetic resonanc...
In physics and chemistry, specifically in NMR (nuclear magnetic resonance) or MRI (magnetic resonanc...
This thesis is primarily concerned with developing new models and numerical methods based on the fra...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Fractional order dynamics in physics, particularly when applied to diffusion, leads to an extension ...
Free to read Fractional-order dynamics in physics, particularly when applied to diffusion, leads to ...