| Literature DB >> 31722598 |
Tomas Vikner1, Lars Nyberg1,2,3, Madelene Holmgren1, Jan Malm4, Anders Eklund1,2, Anders Wåhlin1,2.
Abstract
Recent reports have suggested that age-related arterial stiffening and excessive cerebral arterial pulsatility cause blood-brain barrier breakdown, brain atrophy and cognitive decline. This has spurred interest in developing non-invasive methods to measure pulsatility in distal vessels, closer to the cerebral microcirculation. Here, we report a method based on four-dimensional (4D) flow MRI to estimate a global composite flow waveform of distal cerebral arteries. The method is based on finding and sampling arterial waveforms from thousands of cross sections in numerous small vessels of the brain, originating from cerebral cortical arteries. We demonstrate agreement with internal and external reference methods and show the ability to capture significant increases in distal cerebral arterial pulsatility as a function of age. The proposed approach can be used to advance our understanding regarding excessive arterial pulsatility as a potential trigger of cognitive decline and dementia.Keywords: 4D flow MRI; aging; arterial pulsatility; cerebral cortical arteries; cerebral hemodynamics
Year: 2019 PMID: 31722598 PMCID: PMC7820688 DOI: 10.1177/0271678X19886667
Source DB: PubMed Journal: J Cereb Blood Flow Metab ISSN: 0271-678X Impact factor: 6.200