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Published on: June 13, 2025
Immediate hemodynamic stabilization with positive airway pressure: PTT-derived nocturnal blood pressure fluctuations
Deepesh Vaidya1, Archita Joshi2, Saumy Johnson3
1Sleep Laboratory, Health City Cayman Islands, Grand Cayman, Cayman Islands. vaidyadeepeshvaidya@gmail.com.
Study Objectives:
To evaluate the immediate hemodynamic effect of positive airway pressure (PAP) therapy on pulse transit time (PTT)-derived nocturnal blood pressure fluctuation (NBPF) during split-night polysomnography and to determine whether this effect differs between hypertensive and non-hypertensive individuals.
Methods:
This retrospective cohort study included 464 adults undergoing split-night polysomnography between 2015 and 2023. NBPF was defined as the standard deviation of systolic blood pressure (SBP) derived from PTT calibrated using manufacturer-validated algorithms. Within-group changes were assessed using paired t-tests, between-group comparisons used independent t-tests, and multivariable linear regression adjusted for age and baseline NBPF. Effect sizes (Cohen's d) and 95% confidence intervals (CI) were calculated.
Results:
NBPF decreased significantly after PAP therapy in both hypertensive (mean reduction 20.71 ± 24.25 mmHg, p < 0.001) and non-hypertensive groups (18.97 ± 23.58 mmHg, p < 0.001). Effect sizes were large (Cohen's d = 0.96 and 0.90, respectively). The adjusted between-group difference in NBPF reduction was not significant (β = 1.42 mmHg; 95% CI - 3.21 to 6.05; p = 0.54).
Conclusions:
PAP therapy during split-night studies produces immediate hemodynamic stabilization, reflected by a large and significant reduction in nocturnal BP variability in both hypertensive and non-hypertensive patients. These findings support early PAP initiation to mitigate nocturnal BP lability regardless of baseline hypertension status.
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