The aim of this paper is to optimally design the set of-values for diffusion weighted MRI with the aim of precise estimation of intra-voxel incoherent motion (IVIM) parameters (perfusion fraction,slow diffusion, fast diffusion) according to the model developed by Le Bihan. Previous studies have addressed the design in a Monte Carlo fashion; however, due to huge computation times, this approach is practical only for a limited number of values of the parameters (): however, as the parameters of a specific patient are not known, it would be desirable to optimise-values over aof parameters. In order to address this issue, we propose to use a D-optimal design approach. Our study has two key results: first, under fairy general conditions, the optimal design does not depend on perfusion fraction: this allow to perform a search over a 2D parameter space instead of 3D; second, as an exhaustive search over all possible designs would still be time consuming, we proposed an algorithm to find an approximate solution very quickly.
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http://dx.doi.org/10.1088/2057-1976/ab12bb | DOI Listing |
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