PURPOSE: This work aims to develop a novel distortion-free 3D-EPI acquisition and image reconstruction technique for fast and robust, high-resolution, whole-brain imaging as well as quantitative T2* mapping. METHODS: 3D Blip-up and -down acquisition (3D-BUDA) sequence is designed for both single- and multi-echo 3D gradient recalled echo (GRE)-EPI imaging using multiple shots with blip-up and -down readouts to encode B 0 field map information. Complementary k-space coverage is achieved using controlled aliasing in parallel imaging (CAIPI) sampling across the shots. For image reconstruction, an iterative hard-thresholding algorithm is employed to minimize the cost function that combines field map information informed parallel imaging with th...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
In the tendency towards high-field imaging, three-dimensional (3D) acquisition has potential advanta...
PURPOSE Achieving higher spatial resolution and improved brain coverage while mitigating in-plane...
PURPOSE: This work aims to develop a novel distortion-free 3D-EPI acquisition and image reconstructi...
Purpose: EPI with blip-up/down acquisition (BUDA) can provide high-quality images with minimal disto...
Purpose To rapidly obtain high resolution T-2, T-2*, and quantitative susceptibility mapping (QSM) s...
© 2021 International Society for Magnetic Resonance in MedicinePurpose: Brain imaging exams typicall...
Three-dimensional (3D) encoding methods are increasingly being explored as alternatives to two-dimen...
Quantitative MRI (qMRI) provides accurate and direct information of biological or pathological chara...
In this work, we combine three-dimensional echo planar imaging (3D-EPI) with controlled aliasing to ...
PURPOSE: To introduce wave-encoded acquisition and reconstruction techniques for highly accelerated ...
Efficient GRAPPA or SENSE reconstruction is largely dependent on coil geometry in the direction in w...
AbstractFunctional magnetic resonance imaging (fMRI) studies that require high-resolution whole-brai...
PURPOSE: The combination of 3D echo planar imaging (3D-EPI) with a 2D-CAIPIRINHA undersampling schem...
Quantitative Susceptibility Mapping has the potential to provide additional insights into neurologic...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
In the tendency towards high-field imaging, three-dimensional (3D) acquisition has potential advanta...
PURPOSE Achieving higher spatial resolution and improved brain coverage while mitigating in-plane...
PURPOSE: This work aims to develop a novel distortion-free 3D-EPI acquisition and image reconstructi...
Purpose: EPI with blip-up/down acquisition (BUDA) can provide high-quality images with minimal disto...
Purpose To rapidly obtain high resolution T-2, T-2*, and quantitative susceptibility mapping (QSM) s...
© 2021 International Society for Magnetic Resonance in MedicinePurpose: Brain imaging exams typicall...
Three-dimensional (3D) encoding methods are increasingly being explored as alternatives to two-dimen...
Quantitative MRI (qMRI) provides accurate and direct information of biological or pathological chara...
In this work, we combine three-dimensional echo planar imaging (3D-EPI) with controlled aliasing to ...
PURPOSE: To introduce wave-encoded acquisition and reconstruction techniques for highly accelerated ...
Efficient GRAPPA or SENSE reconstruction is largely dependent on coil geometry in the direction in w...
AbstractFunctional magnetic resonance imaging (fMRI) studies that require high-resolution whole-brai...
PURPOSE: The combination of 3D echo planar imaging (3D-EPI) with a 2D-CAIPIRINHA undersampling schem...
Quantitative Susceptibility Mapping has the potential to provide additional insights into neurologic...
State-of-the-art simultaneous-multi-slice (SMS-)EPI and 3D-EPI share several properties that benefit...
In the tendency towards high-field imaging, three-dimensional (3D) acquisition has potential advanta...
PURPOSE Achieving higher spatial resolution and improved brain coverage while mitigating in-plane...