Velocity‐selective arterial spin labeling perfusion MRI: a review of the state of the art and recommendations for clinical implementation

Q Qin, DC Alsop, DS Bolar… - Magnetic resonance …, 2022 - Wiley Online Library
This review article provides an overview of the current status of velocity‐selective arterial
spin labeling (VSASL) perfusion MRI and is part of a wider effort arising from the …

Hyperpolarized 129Xe imaging of the brain: Achievements and future challenges

Y Shepelytskyi, V Grynko, MR Rao, T Li… - Magnetic …, 2022 - Wiley Online Library
Hyperpolarized (HP) xenon‐129 (129Xe) brain MRI is a promising imaging modality
currently under extensive development. HP 129Xe is nontoxic, capable of dissolving in …

[HTML][HTML] Test-retest reliability of 3D velocity-selective arterial spin labeling for detecting normal variations of cerebral blood flow

F Xu, D Liu, D Zhu, AE Hillis, A Bakker, A Soldan… - Neuroimage, 2023 - Elsevier
Velocity-selective inversion (VSI) based velocity-selective arterial spin labeling (VSASL) has
been developed to measure cerebral blood flow (CBF) with low susceptibility to the …

Evaluation of 3D stack‐of‐spiral turbo FLASH acquisitions for pseudo‐continuous and velocity‐selective ASL–derived brain perfusion mapping

D Zhu, F Xu, D Liu, AE Hillis, D Lin… - Magnetic resonance …, 2023 - Wiley Online Library
Purpose The most‐used 3D acquisitions for ASL are gradient and spin echo (GRASE)–and
stack‐of‐spiral (SOS)–based fast spin echo, which require multiple shots. Alternatively, turbo …

Perfusion measurement in brain gliomas using velocity-selective arterial spin labeling: comparison with pseudo-continuous arterial spin labeling and dynamic …

Y Qu, D Kong, H Wen, X Ou, Q Rui, X Wang, DD Lin… - European …, 2022 - Springer
Objectives To evaluate the performance of velocity-selective (VS) ASL among patients with
untreated gliomas by comparing with both pseudo-continuous (PC) ASL and dynamic …

Prostate perfusion mapping using Fourier‐transform based velocity‐selective arterial spin labeling: Choice of cutoff velocity and comparison with brain

D Liu, D Zhu, F Xu, F Sedaghat… - Magnetic resonance in …, 2023 - Wiley Online Library
Purpose To develop velocity selective arterial spin labeling (VSASL) protocols for prostate
blood flow (PBF) and prostate blood volume (PBV) mapping. Methods Fourier‐transform …

Three‐dimensional whole‐brain mapping of cerebral blood volume and venous cerebral blood volume using Fourier transform–based velocity‐selective pulse trains

W Li, D Liu, PCM van Zijl, Q Qin - Magnetic resonance in …, 2021 - Wiley Online Library
Purpose To develop 3D MRI methods for cerebral blood volume (CBV) and venous cerebral
blood volume (vCBV) estimation with whole‐brain coverage using Fourier transform–based …

Diffusion‐prepared 3D gradient spin‐echo sequence for improved oscillating gradient diffusion MRI

D Wu, D Liu, YC Hsu, H Li, Y Sun… - Magnetic resonance …, 2021 - Wiley Online Library
Purpose Oscillating gradient (OG) enables the access of short diffusion times for time‐
dependent diffusion MRI (dMRI); however, it poses several technical challenges for clinical …

T2‐oximetry–based cerebral venous oxygenation mapping using Fourier‐transform–based velocity‐selective pulse trains

W Li, F Xu, D Zhu, PCM van Zijl… - Magnetic resonance in …, 2022 - Wiley Online Library
Purpose To develop a T2‐oximetry method for quantitative mapping of cerebral venous
oxygenation fraction (Yv) using Fourier‐transform–based velocity‐selective (FT‐VS) pulse …

Ensuring both velocity and spatial responses robust to field inhomogeneities for velocity‐selective arterial spin labeling through dynamic phase‐cycling

D Liu, W Li, F Xu, D Zhu, T Shin… - Magnetic resonance in …, 2021 - Wiley Online Library
Purpose To evaluate both velocity and spatial responses of velocity‐selective arterial spin
labeling (VS‐ASL), using velocity‐insensitive and velocity‐compensated waveforms for …