MRI: Essentials for Innovative Technologies describes novel
methods to improve magnetic resonance imaging (MRI) beyond its
current limitations. It proposes smart encoding methods and
acquisition sequences to deal with frequency displacement due to
residual static magnetic field inhomogeneity, motion, and
undersampling. Requiring few or no hardware modifications, these
speculative methods offer building blocks that can be combined and
refined to overcome barriers to more advanced MRI applications,
such as real-time imaging and open systems.
After a concise review of basic mathematical tools and the
physics of MRI, the book describes the severe artifacts produced by
conventional MRI techniques. It first tackles magnetic field
inhomogeneities, outlining conventional solutions as well as a
completely different approach based on time-varying gradients and
temporal frequency variation coding (acceleration). The book then
proposes two innovative acquisition methods for reducing
acquisition time, motion, and undersampling artifacts: adaptive
acquisition and compressed sensing. The concluding chapter lays out
the author s predictions for the future of MRI.
For some of the proposed solutions, this is the first time the
reported results have been published. Where experimental data is
preliminary or unavailable, the book presents only numerical
solutions. Offering insight into emerging MRI techniques, this book
provides readers with specialized knowledge to help them design
better acquisition sequences and select appropriate correction
methods.
The author s proceeds from the sale of this book will be
entirely donated to Bambin Gesu Children s Hospital in Rome.
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