Cerebrovascular Directional Coupling assessed via Causal Squared Coherence in Patients Presenting Silent Stroke after

Insights

Patients who had heart valve surgery may have impaired cerebral autoregulation (CA), affecting blood flow control to the brain. This impairment is linked to stroke risk after surgical aortic valve replacement (SAVR).

Area of Science:

  • Neuroscience
  • Cardiovascular Surgery
  • Medical Imaging

Background:

  • Surgical aortic valve replacement (SAVR) patients face stroke risks, often detected by diffusion-weighted magnetic resonance imaging (DW-MRI).
  • Cerebral autoregulation (CA) maintenance post-SAVR is suggested, but its link to recent ischemic lesions remains unclear.

Purpose of the Study:

  • To investigate closed-loop cerebrovascular control using causal cross-spectral analysis in recent SAVR patients.
  • To assess the association between CA markers and recent ischemic brain lesions detected by DW-MRI.

Main Methods:

  • Analyzed 23 SAVR patients (19 males, age 57±16) using causal cross-spectral analysis of mean arterial pressure (MAP) and mean cerebral blood velocity (MCBv).
  • Measurements were taken at rest (REST) and during an active standing test (STAND).
  • Calculated traditional coherence (K²), causal coherence from MAP to MCBv, and MCBv to MAP in CA-related frequency bands.

Main Results:

  • Patients with recent ischemic lesions (STROKE group) showed increased MCBv variability during STAND compared to REST.
  • STROKE patients exhibited an inability to decouple MAP and MCBv variability during STAND, suggesting CA impairment.
  • Trends in coupling strength were observed in the high-frequency band (0.15-0.4 Hz) irrespective of interaction direction.

Conclusions:

  • Cerebral autoregulation may be reduced in SAVR patients with recent ischemic brain lesions.
  • Causal cross-spectral analysis effectively investigates closed-loop MAP-MCBv relationships and microcirculation damage post-SAVR.

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