Object: Dynamic contrast enhanced MRI and pharmacokinetic modelling provide a powerful tool for tumour diagnosis and treatment evaluation. However, several studies show low reproducibility of the technique and poor precision of the transendothelial transfer constant K trans. This work proposes a theoretical framework describing how finite signal-noise-ratio (SNR) in the MR images is propagated throughout the measurement protocol to uncertainty on the kinetic parameter estimates. Materials and methods: After deriving a distribution for the contrast agent concentration, a maximum likelihood estimator (MLM) is proposed that exhibits Cramer-Rao lower bounds (CRLB). An analytical expression is derived for the CRLB that can be used to determine c...
Contains fulltext : 53324.pdf (publisher's version ) (Closed access)The so-called ...
Background: Dynamic contrast-enhanced MRI (DCE-MRI) has the potential to produce images of physiolog...
Optimization of experimental settings of dynamic contrast-enhanced magnetic resonance imaging (DCE-M...
Dynamic contrast enhanced MRI and pharmacokinetic modelling provide a powerful tool for tumour diagn...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
The so-called Kety model is a two-compartment pharmacokinetic model describing tumor perfusion kin...
This paper assesses the estimation of kinetic parameters from dynamic contrast-enhanced magnetic res...
Contains fulltext : 53324.pdf (publisher's version ) (Closed access)The so-called ...
Background: Dynamic contrast-enhanced MRI (DCE-MRI) has the potential to produce images of physiolog...
Optimization of experimental settings of dynamic contrast-enhanced magnetic resonance imaging (DCE-M...
Dynamic contrast enhanced MRI and pharmacokinetic modelling provide a powerful tool for tumour diagn...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
The so-called "Kety model" is a two-compartment pharmacokinetic model describing tumor perfusion kin...
Dynamic contrast-enhanced magnetic resonance imaging is increasingly applied for tumour diagnosis an...
The so-called Kety model is a two-compartment pharmacokinetic model describing tumor perfusion kin...
This paper assesses the estimation of kinetic parameters from dynamic contrast-enhanced magnetic res...
Contains fulltext : 53324.pdf (publisher's version ) (Closed access)The so-called ...
Background: Dynamic contrast-enhanced MRI (DCE-MRI) has the potential to produce images of physiolog...
Optimization of experimental settings of dynamic contrast-enhanced magnetic resonance imaging (DCE-M...