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Three dimensional echo-planar imaging at 7 Tesla.
Neuroimage. 2010 May 15;51(1):261-6. doi: 10.1016/j.neuroimage.2010.01.108. Epub 2010 Feb 6.
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Non-Cartesian 3D-SPARKLING vs Cartesian 3D-EPI encoding schemes for functional Magnetic Resonance Imaging at 7 Tesla.
PLoS One. 2024 May 13;19(5):e0299925. doi: 10.1371/journal.pone.0299925. eCollection 2024.
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Surface-based functional magnetic resonance imaging analysis of partial brain echo planar imaging data at 1.5 T.
Magn Reson Imaging. 2009 Jun;27(5):691-700. doi: 10.1016/j.mri.2008.09.002. Epub 2008 Nov 25.
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Signal fluctuations in fMRI data acquired with 2D-EPI and 3D-EPI at 7 Tesla.
Magn Reson Imaging. 2013 Feb;31(2):212-20. doi: 10.1016/j.mri.2012.07.001. Epub 2012 Aug 24.
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Fast 3D fMRI acquisition with high spatial resolutions over a reduced FOV.
Magn Reson Med. 2024 Nov;92(5):1952-1964. doi: 10.1002/mrm.30191. Epub 2024 Jun 18.
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Enhancement of temporal resolution and BOLD sensitivity in real-time fMRI using multi-slab echo-volumar imaging.
Neuroimage. 2012 May 15;61(1):115-30. doi: 10.1016/j.neuroimage.2012.02.059. Epub 2012 Feb 28.
9
Temporal SNR characteristics in segmented 3D-EPI at 7T.
Magn Reson Med. 2012 Feb;67(2):344-52. doi: 10.1002/mrm.23007. Epub 2011 Jun 7.
10
Data-driven optimization and evaluation of 2D EPI and 3D PRESTO for BOLD fMRI at 7 Tesla: I. Focal coverage.
Neuroimage. 2011 Apr 1;55(3):1034-43. doi: 10.1016/j.neuroimage.2010.12.086. Epub 2011 Jan 11.

引用本文的文献

1
Decoding of columnar-level organization across cortical depth using BOLD- and CBV-fMRI at 7 T.
bioRxiv. 2025 Aug 27:2023.09.28.560016. doi: 10.1101/2023.09.28.560016.
2
SNAKE: A modular realistic fMRI data simulator from the space-time domain to k-space and back.
Imaging Neurosci (Camb). 2025 Sep 2;3. doi: 10.1162/IMAG.a.121. eCollection 2025.
3
Blood nulling versus tissue suppression: Enhancing integrated VASO and perfusion (VAPER) contrast for laminar fMRI.
Imaging Neurosci (Camb). 2025 Jan 21;3. doi: 10.1162/imag_a_00453. eCollection 2025.
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Improving laminar fMRI specificity by reducing macrovascular bias revealed by respiration effects.
Imaging Neurosci (Camb). 2024 Aug 1;2. doi: 10.1162/imag_a_00249. eCollection 2024.
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Unlocking near-whole-brain, layer-specific functional connectivity with 3D VAPER fMRI.
Imaging Neurosci (Camb). 2024 Apr 18;2. doi: 10.1162/imag_a_00140. eCollection 2024.
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Cerebellar imaging for neuroscience at 9.4 T.
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10
Acquisition and processing methods of whole-brain layer-fMRI VASO and BOLD: The Kenshu dataset.
Apert Neuro. 2023 Sep;3. doi: 10.52294/001c.87961. Epub 2023 Sep 15.

本文引用的文献

1
Investigating the benefits of multi-echo EPI for fMRI at 7 T.
Neuroimage. 2009 May 1;45(4):1162-72. doi: 10.1016/j.neuroimage.2009.01.007. Epub 2009 Jan 21.
3
High resolution single-shot EPI at 7T.
MAGMA. 2008 Mar;21(1-2):73-86. doi: 10.1007/s10334-007-0087-x. Epub 2007 Nov 1.
4
Three-dimensional spiral technique for high-resolution functional MRI.
Magn Reson Med. 2007 Nov;58(5):947-51. doi: 10.1002/mrm.21328.
5
Effect of spatial smoothing on physiological noise in high-resolution fMRI.
Neuroimage. 2006 Aug 15;32(2):551-7. doi: 10.1016/j.neuroimage.2006.04.182. Epub 2006 Jun 30.
6
Accelerated parallel imaging for functional imaging of the human brain.
NMR Biomed. 2006 May;19(3):342-51. doi: 10.1002/nbm.1043.
8
Principles of magnetic resonance assessment of brain function.
J Magn Reson Imaging. 2006 Jun;23(6):794-807. doi: 10.1002/jmri.20587.
9
Comparison of physiological noise at 1.5 T, 3 T and 7 T and optimization of fMRI acquisition parameters.
Neuroimage. 2005 May 15;26(1):243-50. doi: 10.1016/j.neuroimage.2005.01.007.
10
Sensitivity-encoded (SENSE) echo planar fMRI at 3T in the medial temporal lobe.
Neuroimage. 2005 Apr 1;25(2):625-41. doi: 10.1016/j.neuroimage.2004.12.002.

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