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Updated: Jul 6, 2025

Assessing Cerebral Autoregulation via Oscillatory Lower Body Negative Pressure and Projection Pursuit Regression
Published on: December 10, 2014
Blood pressure variability, central autonomic network dysfunction and cerebral small vessel disease in APOE4 carriers
Trevor Lohman1, Isabel Sible2, Arunima Kapoor3
1University of Southern California Leonard Davis School of Gerontology, Los Angeles, CA, USA.
Insights
Increased blood pressure variability (BPV) is a risk factor for cerebral small vessel disease (CSVD) in older adults, particularly APOE4 carriers. Higher BPV is more likely a cause of CSVD, especially when central autonomic network connectivity is low.
Area of Science:
- Neurology
- Cardiology
- Genetics
Background:
- Increased blood pressure variability (BPV) is a risk factor for cerebral small vessel disease (CSVD) and neurodegeneration.
- The role of BPV as a cause or consequence of vascular brain injury, and the contribution of the central autonomic network (CAN) in APOE4 carriers, remain unclear.
Approach:
- Seventy independently living older adults underwent blood pressure monitoring, genetic testing, and brain MRI.
- Resting BPV, APOE genotype, CSVD burden, and resting state CAN connectivity were analyzed.
- Causal mediation and moderation analyses assessed BPV and CAN effects on CSVD in APOE4 carriers and non-carriers.
Key Points:
- Higher BPV correlated with greater CSVD in APOE4 carriers, independent of CAN connectivity.
- CAN connectivity did not mediate the relationship between BPV and CSVD.
- In APOE4 carriers, lower CAN connectivity amplified the effect of BPV on CSVD.
Conclusions:
- Higher BPV is associated with more extensive CSVD in older APOE4 carriers, suggesting BPV is a likely cause rather than a consequence.
- BPV's association with CSVD is stronger in APOE4 carriers with reduced CAN connectivity, indicating potential synergistic effects.
- Further research is needed to elucidate the interplay between BPV and CAN function in APOE4 carriers.
Background:
Increased blood pressure variability (BPV) is a risk factor for cerebral small vessel disease (CSVD) and neurodegeneration, independent of age and average blood pressure, particularly in apolipoprotein E4 (APOE4) carriers. However, it remains uncertain whether BPV elevation is a cause or a consequence of vascular brain injury, or to what degree injury to the central autonomic network (CAN) may contribute to BPV-associated risk in APOE4 carriers.
Methods:
Independently living older adults (n=70) with no history of stroke or dementia were recruited from the community and underwent 5 minutes of resting beat-to-beat blood pressure monitoring, genetic testing, and brain MRI. Resting BPV, APOE genotype, CSVD burden on brain MRI, and resting state CAN connectivity by fMRI were analyzed. Causal mediation and moderation analysis evaluated BPV and CAN effects on CSVD in APOE4 carriers (n=37) and non-carriers (n=33).
Results:
Higher BPV was associated with the presence and extent of CSVD in APOE4 carriers, but not non-carriers, independent of CAN connectivity (B= 18.92, P= .02), and CAN connectivity did not mediate the relationship between BPV and CSVD. In APOE4 carriers, CAN connectivity moderated the relationship between BPV and CSVD, whereby BPV effects on CSVD were greater in those with lower CAN connectivity (B= 36.43, P= .02).
Conclusions:
Older APOE4 carriers with higher beat-to-beat BPV exhibit more extensive CSVD, independent of average blood pressure, and the strength of CAN connectivity does not mediate these effects. Findings suggest increased BPV is more likely a cause, not a consequence, of CSVD. BPV is more strongly associated with CSVD in APOE4 carriers with lower rsCAN connectivity, suggesting CAN dysfunction and BPV elevation may have synergistic effects on CSVD. Further studies are warranted to understand the interplay between BPV and CAN function in APOE4 carriers.
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