Model-based deconvolution approach to solve fiber crossing in diffusion-weighted MR imaging.
Articolo
Data di Pubblicazione:
2007
Abstract:
A deconvolution approach is presented to solve fiber
crossing in diffusion magnetic resonance imaging. In order to
provide a direct physical interpretation of the signal generation
process, we started from the classical multicompartment model
and rewrote this in terms of a convolution process, identifying a
significant scalar parameter alfa to characterize the physical system
response. Deconvolution is performed by a modified version of the
Richardson-Lucy algorithm. Simulations show the ability of this
method to correctly separate fiber crossing, even in the presence
of noisy data, with lower signal-to-noise ratio, and imprecision in
the impulse response function imposed during deconvolution. The
in vivo data confirms the efficacy of this method to resolve fiber
crossing in real complex brain structures. These results suggest
the usefulness of our approach in fiber tracking or connectivity
studies.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
DTI; DW-MRI; fiber crossing; HARDI; Multicompartment model; Richardson-Lucy algorithm; Spherical deconvolution
Elenco autori:
Fazio, Ferruccio; Rizzo, Giovanna
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