Title :
Perfusion MRI deconvolution with delay estimation and non-negativity constraints
Author :
Pizzolato, Marco ; Ghosh, Aurobrata ; Boutelier, Timothe ; Deriche, Rachid
Author_Institution :
Athena Project-Team, Inria Sophia Antipolis, Méditerranée, France
Abstract :
Perfusion MRI deconvolution aims to recover the time-dependent residual amount of indicator (residue function) from the measured arterial and tissue concentration time-curves. The deconvolution is complicated by the presence of a time lag between the measured concentrations. Moreover the residue function must be non-negative and its shape may become non-monotonic due to dispersion phenomena. We introduce Modified Exponential Bases (MEB) to perform de-convolution. The MEB generalize the previously proposed exponential approximation (EA) by taking into account the time lag and introducing non-negativity constraints for the recovered residue function also in the case of non-monotonic dispersed shapes, thus overcoming the limitation due to the non-increasing assumtion of the EA. The deconvolution problem is solved linearly. Quantitative comparisons with the widespread block-circulant Singular Value Decomposition show favorable results in recovering the residue function.
Keywords :
biomedical MRI; blood vessels; delays; arterial concentration time-curve measurement; block-circulant singular value decomposition; delay estimation; modified exponential bases; nonmonotonic dispersed shapes; nonnegativity constraints; perfusion MRI deconvolution; time-dependent residual function; tissue concentration time-curve measurement; Blood; Convolution; Deconvolution; Delays; Kernel; Shape; Signal to noise ratio; DSC-MRI; Deconvolution; Delay; Dispersion; Exponential Bases; Non-Negative; Perfusion;
Conference_Titel :
Biomedical Imaging (ISBI), 2015 IEEE 12th International Symposium on
Conference_Location :
New York, NY
DOI :
10.1109/ISBI.2015.7164057