| Literature DB >> 19727758 |
Stefan Zwick1, Gunnar Brix, Paul S Tofts, Ralph Strecker, Annette Kopp-Schneider, Hendrik Laue, Wolfhard Semmler, Fabian Kiessling.
Abstract
PURPOSE: The purpose was to compare two approaches for the acquisition and analysis of dynamic-contrast-enhanced MRI data with respect to differences in the modelling of the arterial input-function (AIF), the dependency of the model parameters on physiological parameters and their numerical stability. Eight hundred tissue concentration curves were simulated for different combinations of perfusion, permeability, interstitial volume and plasma volume based on two measured AIFs and analysed according to the two commonly used approaches. The transfer constants (Approach 1) K (trans) and (Approach 2) k (ep) were correlated with all tissue parameters. K (trans) showed a stronger dependency on perfusion, and k (ep) on permeability. The volume parameters (Approach 1) v (e) and (Approach 2) A were mainly influenced by the interstitial and plasma volume. Both approaches allow only rough characterisation of tissue microcirculation and microvasculature. Approach 2 seems to be somewhat more robust than 1, mainly due to the different methods of CA administration.Mesh:
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Year: 2009 PMID: 19727758 DOI: 10.1007/s00330-009-1556-6
Source DB: PubMed Journal: Eur Radiol ISSN: 0938-7994 Impact factor: 5.315