This multicenter study evaluated the effect of variations in arterial input function (AIF) determination on pharmacokinetic (PK) analysis of dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) data using the shutter-speed model (SSM). Data acquired from eleven prostate cancer patients were shared among nine centers. Each center used a site-specific method to measure the individual AIF from each data set and submitted the results to the managing center. These AIFs, their reference tissue-adjusted variants, and a literature population-averaged AIF, were used by the managing center to perform SSM PK analysis to estimate Ktrans (volume transfer rate constant), ve (extravascular, extracellular volume fraction), kep (efflux rate consta...
BACKGROUND: Quantification of pharmacokinetic parameters in dynamic contrast enhanced (DCE) MRI is h...
PURPOSE To compare an (independent) high-temporal-resolution arterial input function (AIF) to an AIF...
Purpose: To present a modified pharmacokinetic model for improved parameter accuracy and to investi...
This multicenter study evaluated the effect of variations in arterial input function (AIF) determina...
PURPOSE: The arterial input function (AIF) is a major source of uncertainty in tracer kinetic (TK) a...
PURPOSEThis study aims to analyze the ability of quantitative dynamic contrast-enhanced magnetic res...
PURPOSE: The arterial input function (AIF) is a major source of uncertainty in tracer kinetic (TK) a...
International audienceBackgroundHead and neck cancer (HNC) is the sixth most prevalent cancer worldw...
Dynamic-Contrast-Enhanced Magnetic Resonance Imaging (DCE-MRI) has been used widely for clinical app...
International audiencePURPOSE:To evaluate the variability induced by the imager in discriminating hi...
In dynamic contrast-enhanced MRI (DCE-MRI) studies, a time-concentration curve of injected contrast ...
Objective To investigate the effect of inter-operator variability in arterial input function (AIF) d...
OBJECTIVES: To correlate pharmacokinetic parameters of 3-T dynamic contrast-enhanced (DCE-)MRI with ...
Purpose: To demonstrate that inter-patient differences in the spreading of the contrast agent throug...
BACKGROUND: Quantification of pharmacokinetic parameters in dynamic contrast enhanced (DCE) MRI is h...
PURPOSE To compare an (independent) high-temporal-resolution arterial input function (AIF) to an AIF...
Purpose: To present a modified pharmacokinetic model for improved parameter accuracy and to investi...
This multicenter study evaluated the effect of variations in arterial input function (AIF) determina...
PURPOSE: The arterial input function (AIF) is a major source of uncertainty in tracer kinetic (TK) a...
PURPOSEThis study aims to analyze the ability of quantitative dynamic contrast-enhanced magnetic res...
PURPOSE: The arterial input function (AIF) is a major source of uncertainty in tracer kinetic (TK) a...
International audienceBackgroundHead and neck cancer (HNC) is the sixth most prevalent cancer worldw...
Dynamic-Contrast-Enhanced Magnetic Resonance Imaging (DCE-MRI) has been used widely for clinical app...
International audiencePURPOSE:To evaluate the variability induced by the imager in discriminating hi...
In dynamic contrast-enhanced MRI (DCE-MRI) studies, a time-concentration curve of injected contrast ...
Objective To investigate the effect of inter-operator variability in arterial input function (AIF) d...
OBJECTIVES: To correlate pharmacokinetic parameters of 3-T dynamic contrast-enhanced (DCE-)MRI with ...
Purpose: To demonstrate that inter-patient differences in the spreading of the contrast agent throug...
BACKGROUND: Quantification of pharmacokinetic parameters in dynamic contrast enhanced (DCE) MRI is h...
PURPOSE To compare an (independent) high-temporal-resolution arterial input function (AIF) to an AIF...
Purpose: To present a modified pharmacokinetic model for improved parameter accuracy and to investi...