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Abstract #1260

Vessel-Encoded Arterial Spin Labeling at 7 Tesla

Hongwei Li1, Yang Ji2, He Wang1,3, Zhensen Chen1,3, Joseph G. Woods2, and Thomas W. Okell2
1Institute of Science and Technology for Brain-inspired Intelligence, Fudan University, Shanghai, China, 2University of Oxford, Wellcome Centre for Integrative Neuroimaging, FMRIB Division, Nuffield Department of Clinical Neurosciences, Oxford, United Kingdom, 3Key Laboratory of Computational Neuroscience and Brain-Inspired Intelligence (Fudan University), Ministry of Education, Shanghai, China

Synopsis

Keywords: Arterial Spin Labelling, Arterial spin labelling, ultra-high field

Motivation: Vessel-encoded arterial spin labeling (VEASL) allows the visualization of collateral blood flow and blood supply to lesions, but has limited SNR. At ultra-high field, ASL benefits from significantly improved SNR and longer blood T1 relaxation time. However, B0 field inhomogeneity can reduce labeling efficiency and disrupt encoding patterns.

Goal(s): Implementing VEASL robustly at 7 Tesla.

Approach: Optimized ASL parameters, dynamic B0 shimming and OES-based correction methods were used to mitigate the impact of B0 field inhomogeneity.

Results: Good vascular territory maps, labeling both the neck and above the circle of Willis, were achieved, including at high spatial resolution.

Impact: We demonstrate the first vessel-encoded ASL perfusion maps at ultra-high field, and the vascular territory maps significantly improved after applying B0 correction techniques, with the potential to push for even higher spatial resolution.

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Keywords