Geir Ringstad
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Articles (11)
Human brain clearance imaging: Pathways taken by magnetic resonance imaging contrast agents after administration in cerebrospinal fluid and blood
Over the last decade, it has become evident that cerebrospinal fluid (CSF) plays a pivotal role in brain solute clearance through perivascular pathways and interactions between the brain and meningeal lymphatic vessels. Whereas most of this fundamental knowledge was gained from rodent models, human brain clearance imaging has provided important insights into the human system and highlighted the existence of important interspecies differences. Current gold standard techniques for human brain clearance imaging involve the injection of gadolinium‐based contrast agents and monitoring their distribution and clearance over a period from a few hours up to 2 days. With both intrathecal and intravenous injections being used, which each have their own specific routes of distribution and thus clearance of contrast agent, a clear understanding of the kinetics associated with both approaches, and especially the differences between them, is needed to properly interpret the results. Because it is known that intrathecally injected contrast agent reaches the blood, albeit in small concentrations, and that similarly some of the intravenously injected agent can be detected in CSF, both pathways are connected and will, in theory, reach the same compartments. However, because of clear differences in relative enhancement patterns, both injection approaches will result in varying sensitivities for assessment of different subparts of the brain clearance system. In this opinion review article, the “EU Joint Programme – Neurodegenerative Disease Research (JPND)” consortium on human brain clearance imaging provides an overview of contrast agent pharmacokinetics in vivo following intrathecal and intravenous injections and what typical concentrations and concentration–time curves should be expected. This can be the basis for optimizing and interpreting contrast‐enhanced MRI for brain clearance imaging. Furthermore, this can shed light on how molecules may exchange between blood, brain, and CSF.
Year:
2024
Collaborators (12)
Shinji Naganawa
Professor and chairman
Nagoya Daigaku
Henrik Zetterberg
Professor
University of Gothenburg
Joanna Wardlaw
Professor of Applied Neuroimaging and Honorary Consultant Neuroradiologist
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Kent-Andre Mardal
University of Oslo
Ryszard Gomolka
Assistant Professor
University of Copenhagen
Marcus Stoodley
Macquarie University
Lars Magnus Valnes
Oslo University Hospital
Swati Rane
Associate Professor and Director
University of Kentucky College of Medicine
Yuki Mori
Københavns Universitet
Costantino Iadecola
Weill Cornell Medical College
Lydiane Hirschler
Leiden University Medical Center
Espen Mariussen
Norwegian Institute of Public Health

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