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Concurrent CBF and BOLD FMRI with dual-echo spiral simultaneous multi-slice acquisitions at 7T.

Authors :
Kurban, Denizhan
Ivanov, Dimo
Kashyap, Sriranga
Huber, Laurentius
Liberman, Gilad
Poser, Benedikt A.
Source :
NeuroImage. Feb2022, Vol. 247, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

• Dual-echo out-in simultaneous multi-slice spiral readout was successfully implemented in an ASL sequence for concurrent measurements of CBF and BOLD contrasts at 7T. • In-vivo measurements resulted in robust detection of perfusion and BOLD activation, with no loss of sensitivity compared to Cartesian acquisitions. • For 7T fMRI applications at moderate spatial resolution (2 mm isotropic), dual-echo spiral acquisitions show promise for simultaneous acquisitions of non-BOLD and BOLD contrasts with no loss in temporal resolution. Measurement of cerebral blood flow (CBF) using the Arterial Spin Labeling (ASL) technique is a desirable fMRI approach due to the higher specificity of CBF to the site of neural activation. However, ASL has inherent limitations, such as a low signal-to-noise ratio (SNR) and low coverage/resolution due to the limited readout window following the labeling. Recently, ASL has been implemented at ultra-high field (UHF) strengths in an attempt to mitigate the SNR challenges. Even though ASL intrinsically allows concurrent acquisition of CBF and BOLD contrasts, a compromise in the echo time (TE) for either of the contrasts is inevitable with single-echo acquisitions. Long durations of the Cartesian EPI readout do not allow for multi-echo acquisitions for resolutions ≤2 mm where both contrasts can be acquired at their optimal TE at UHF. With its higher acquisition efficiency, single-shot spiral imaging provides a promising alternative to EPI, and with a dual-echo, out-in trajectory allows both CBF and BOLD contrasts to be acquired at their respective optimal TE. In this work, we implemented a dual-echo spiral out-in ASL sequence with simultaneous multi-slice (SMS) readout for increased coverage, and validated its application to fMRI with a visuomotor paradigm. Conventional Cartesian EPI acquisitions with matched parameters served as a reference. The dual-echo spiral ASL acquisitions resulted in robust CBF and BOLD activations maps. The absolute and relative CBF changes measured with the dual-echo spiral readout were in agreement with previous reports in the literature as well as the reference Cartesian acquisitions. The BOLD response amplitude was higher compared to the Cartesian acquisitions, attributable to a more optimal TE of the second echo. In conclusion, dual-echo spiral out-in SMS acquisition shows promise for concurrent acquisitions of BOLD and non-BOLD contrasts that require a short TE, with no loss in temporal resolution. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10538119
Volume :
247
Database :
Academic Search Index
Journal :
NeuroImage
Publication Type :
Academic Journal
Accession number :
154736997
Full Text :
https://doi.org/10.1016/j.neuroimage.2021.118820