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Stochastic variational inference improves quantification of multiple timepoint arterial spin labelling perfusion MRI (2025)
Journal Article
Kirk, T. F., Kenyon, G. G., Craig, M. S., & Chappell, M. A. (2025). Stochastic variational inference improves quantification of multiple timepoint arterial spin labelling perfusion MRI. Frontiers in Neuroscience, 19, Article 1536752. https://doi.org/10.3389/fnins.2025.1536752

Multiple-timepoint arterial spin labelling MRI is a non-invasive imaging technique that permits measurement of both cerebral blood flow and arterial transit time, the latter of which is an emerging biomarker of interest for cerebrovascular health. Qu... Read More about Stochastic variational inference improves quantification of multiple timepoint arterial spin labelling perfusion MRI.

Arterial spin labelling perfusion MRI analysis for the Human Connectome Project Lifespan Ageing and Development studies (2025)
Journal Article
Kirk, T. F., McConnell, F. A. K., Toner, J., Craig, M. S., Carone, D., Li, X., Suzuki, Y., Coalson, T. S., Harms, M. P., Glasser, M. F., & Chappell, M. A. (2025). Arterial spin labelling perfusion MRI analysis for the Human Connectome Project Lifespan Ageing and Development studies. Imaging Neuroscience, https://doi.org/10.1162/imag_a_00444

The Human Connectome Project Lifespan studies cover the Development (5-21) and Aging (36-100+) phases of life. Arterial spin labelling (ASL) was included in the imaging protocol, resulting in one of the largest datasets collected to-date of high spat... Read More about Arterial spin labelling perfusion MRI analysis for the Human Connectome Project Lifespan Ageing and Development studies.