Improving the performance of diffusion-weighted inner field-of-view echo-planar imaging based on 2D-selective radiofrequency excitations by tilting the excitation plane.

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Improving the performance of diffusion-weighted inner field-of-view echo-planar imaging based on 2D-selective radiofrequency excitations by tilting the excitation plane. / Finsterbusch, Jürgen.

In: J MAGN RESON IMAGING, Vol. 35, No. 4, 4, 2012, p. 984-992.

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@article{0060799db8d64258a3914daf7d904adc,
title = "Improving the performance of diffusion-weighted inner field-of-view echo-planar imaging based on 2D-selective radiofrequency excitations by tilting the excitation plane.",
abstract = "To improve the performance and flexibility of diffusion-weighted inner field-of-view (FOV) echo-planar imaging (EPI) based on 2D-selective radiofrequency (RF) excitations by 1) using higher gradient amplitudes for outer excitation lines, and 2) tilting the excitation plane such that the unwanted side excitations do not overlap with the current image slice or other slices to be acquired.",
author = "J{\"u}rgen Finsterbusch",
year = "2012",
language = "English",
volume = "35",
pages = "984--992",
journal = "J MAGN RESON IMAGING",
issn = "1053-1807",
publisher = "John Wiley and Sons Inc.",
number = "4",

}

RIS

TY - JOUR

T1 - Improving the performance of diffusion-weighted inner field-of-view echo-planar imaging based on 2D-selective radiofrequency excitations by tilting the excitation plane.

AU - Finsterbusch, Jürgen

PY - 2012

Y1 - 2012

N2 - To improve the performance and flexibility of diffusion-weighted inner field-of-view (FOV) echo-planar imaging (EPI) based on 2D-selective radiofrequency (RF) excitations by 1) using higher gradient amplitudes for outer excitation lines, and 2) tilting the excitation plane such that the unwanted side excitations do not overlap with the current image slice or other slices to be acquired.

AB - To improve the performance and flexibility of diffusion-weighted inner field-of-view (FOV) echo-planar imaging (EPI) based on 2D-selective radiofrequency (RF) excitations by 1) using higher gradient amplitudes for outer excitation lines, and 2) tilting the excitation plane such that the unwanted side excitations do not overlap with the current image slice or other slices to be acquired.

M3 - SCORING: Journal article

VL - 35

SP - 984

EP - 992

JO - J MAGN RESON IMAGING

JF - J MAGN RESON IMAGING

SN - 1053-1807

IS - 4

M1 - 4

ER -