Intracranial vascular flow oscillations in Alzheimer's disease from 4D flow MRI
Leonardo A Rivera-Rivera1, Karly A Cody2, David Rutkowski3
1Department of Medical Physics, University of Wisconsin, School of Medicine and Public Health, Madison, WI, USA.
Abstract:
Recent modeling and experimental evidence suggests clearance of soluble metabolites from the brain can be driven by low frequency flow oscillations (LFOs) through the intramural periarterial drainage (IPAD) pathway. This study investigates the use of 4D flow MRI to derive LFOs from arterial and venous measures of blood flow. 3D radial 4D flow MRI data were acquired on a 3.0 T scanner and reconstructed using a low-rank constraint to produce time resolved measurements of blood flow. Physical phantom experiments were performed to validate the time resolved 4D flow against a standard 2D phase contrast (PC) approach. To evaluate the ability of 4D flow to distinguish physiologic flow changes from noise, healthy volunteers were scanned during a breath-hold (BH) maneuver and compared against 2D PC measures. Finally, flow measures were performed in intracranial arteries and veins of 112 participants including subjects diagnosed with Alzheimer's disease (AD) clinical syndrome (n = 23), and healthy controls (n = 89) on whom apolipoprotein ɛ4 positivity (APOE4+) and parental history of AD dementia (FH+) was known. To assess LFOs, flow range, standard deviation, demeaned temporal flow changes, and power spectral density were quantified from the time series. Group differences were assessed using ANOVA followed by Tukey-Kramer method for pairwise comparison for adjusted means (P < 0.05). Significantly lower LFOs as measured from flow variation range and standard deviations were observed in the arteries of AD subjects when compared to age-matched controls (P = 0.005, P = 0.011). Results suggest altered vascular function in AD subjects. 4D flow based spontaneous LFO measures might hold potential for longitudinal studies aimed at predicting cognitive trajectories in AD and study disease mechanisms.
Insights
Low frequency flow oscillations (LFOs) in brain arteries are reduced in Alzheimer's disease (AD) patients. This finding, measured using 4D flow MRI, suggests altered vascular function and may aid in predicting cognitive decline in AD.
Area of Science:
- Neuroimaging
- Vascular Biology
- Biophysics
Background:
- Soluble metabolite clearance from the brain is potentially driven by low frequency oscillations (LFOs) via the intramural periarterial drainage (IPAD) pathway.
- 4D flow MRI offers a non-invasive method to quantify blood flow dynamics.
Purpose of the Study:
- To investigate the utility of 4D flow MRI in measuring LFOs in intracranial arteries and veins.
- To compare LFOs in Alzheimer's disease (AD) patients and healthy controls.
Main Methods:
- 3D radial 4D flow MRI was acquired on a 3.0T scanner and reconstructed using low-rank constraints.
- Physical phantom experiments validated 4D flow against 2D phase contrast (PC) MRI.
- Flow measures, including LFOs, were quantified in 112 participants (23 AD, 89 controls).
Main Results:
- 4D flow MRI successfully derived time-resolved blood flow measurements.
- Significantly lower LFOs (flow variation range and standard deviation) were observed in the arteries of AD subjects compared to controls (P=0.005, P=0.011).
Conclusions:
- Altered vascular function, indicated by reduced LFOs, is suggested in AD subjects.
- 4D flow MRI-derived LFO measures show potential for longitudinal studies in AD prediction and disease mechanism research.


