Key result
The mean index (Mx) and systolic index (Sx) derived from spontaneous fluctuations in blood pressure and flow velocity correlated well with the rate of regulation (R2 = 0.65 and 0.58, respectively).
Why the study?
Does continuous assessment of cerebrovascular reactivity using moving correlation between arterial blood pressure and blood flow velocity correlate with Aaslid's cuff tests in healthy volunteers?
Observational (n=14)
Does continuous assessment of cerebrovascular reactivity using moving correlation between arterial blood pressure and blood flow velocity correlate with Aaslid's cuff tests in healthy volunteers?
Effect estimate: R2 = 0.65 and 0.58
p-value: p=<0.00001
Indices derived from the correlation between spontaneous fluctuations of blood flow velocity and arterial blood pressure can be used for noninvasive continuous monitoring of cerebrovascular reactivity.
Supports continuous cerebrovascular reactivity monitoring in volunteers; leaves open validation and outcome studies before clinical adoption.
Using transcranial Doppler ultrasonography, we investigated the moving correlation between slow waves in arterial blood pressure (ABP) and blood flow velocity (FV) at different levels of cerebrovascular vasodilation provoked by changing PETCO2. Fourteen healthy volunteers were examined. The FV in middle cerebral arteries, PETCO2, and ABP were recorded during normocapnia, hypercapnia, and hypocapnia. The moving correlation coefficients between ABP and mean FV (FVm) or systolic FV (FVs) during spontaneous fluctuations in ABP were calculated for 3-min epochs and averaged for each investigation, thus yielding the mean index (Mx) and systolic index (Sx). As a reference method, Aaslid’s cuff tests were performed to obtain the rate of regulation (RoR). RoR, Mx, and Sx significantly depended on PETCO2 (analysis of variance, P< 0.00001). At high PETCO2, cerebrovascular reactivity was disturbed as reflected in RoR values of <0.17/s for all volunteers and increased values of Mx (>0.4 in 86% of volunteers) and Sx (>0.2 in 79% of volunteers). Overall, there was a reasonably good correlation of both Mx and Sx with RoR (R2 = 0.65 and 0.58, respectively). Implications Indices derived from the correlation between spontaneous fluctuations of blood flow velocity wave form and arterial blood pressure may be used for the noninvasive continuous monitoring of cerebrovascular reactivity.
No takes yet. Share an insight, caveat, or question.
Piechnik et al. (1999) conducted an observational in Healthy volunteers (n=14). Moving correlation between slow waves in arterial blood pressure and blood flow velocity (Mx and Sx indices) vs. Aaslid's cuff tests (rate of regulation, RoR) was evaluated on Correlation of Mx and Sx with RoR (R2 = 0.65 and 0.58, p=<0.00001). The mean index (Mx) and systolic index (Sx) derived from spontaneous fluctuations in blood pressure and flow velocity correlated well with the rate of regulation (R2 = 0.65 and 0.58, respectively).
Synapse has enriched 3 closely related papers on similar clinical questions. Consider them for comparative context: