Smartphone-based carotid waveform analysis measured aortic arch pulse-wave velocity and total arterial compliance with Pearson correlations of 0.81 and 0.80, respectively.
Does a smartphone-based intrinsic frequency analysis of carotid pressure waveforms accurately measure aortic arch pulse-wave velocity and total arterial compliance compared to MRI and tonometry in healthy adults and those with cardiovascular disease?
A novel smartphone-based method using intrinsic frequency analysis of carotid waveforms can accurately estimate local and global arterial stiffness, offering an accessible tool for vascular health monitoring.
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Background Clinical studies have shown that aortic arch pulse‐wave velocity (PWV aa ), a measure of local aortic stiffness, is a strong independent predictor of subsequent white matter hyperintensity volume and white matter integrity, both associated with cognitive decline, elevated stroke risk, vascular dementia, and neurodegenerative diseases. Total arterial compliance (TAC), a measure of global arterial stiffness, has been recognized as a marker of preclinical vascular disease. This study introduces a smartphone‐based method for the noninvasive measurement of PWV aa and TAC using carotid pressure waveforms acquired via smartphone. Methods This method uses intrinsic frequency analysis of smartphone‐acquired (iPhone) carotid pressure waveforms to assess PWV aa and TAC. The method was trained, validated, and blind‐tested on a cohort of 132 participants aged 20 to 90 years, including both healthy individuals and those with cardiovascular disease, all of whom underwent cardiac magnetic resonance imaging, tonometry, and iPhone waveform measurements. Results In the blind test set, our method achieved Pearson correlations of 0.81 and 0.80 for PWV aa and TAC, with biases of −0.20 m/s and −0.06 mL/mm Hg and limits of agreement of −4.09 to 3.68 m/s and −0.52 to 0.40 mL/mm Hg, respectively. In the heart failure population, correlations were 0.81 for both, with a PWV aa a bias of −1.07 m/s and TAC bias of −0.06 mL/mm Hg. Conclusions Our smartphone‐based method enables accurate assessment of local and global arterial stiffness metrics (PWV aa and TAC). It offers easy‐to‐use monitoring of vascular aging and arterial health, with important implications for identifying patients at higher risk of neurodegenerative and cardiovascular diseases. Registration URL: clinicaltrials.org ; Unique Identifier: NCT02240979.
Niroumandi et al. (Wed,) reported a other. Smartphone-based carotid waveform analysis measured aortic arch pulse-wave velocity and total arterial compliance with Pearson correlations of 0.81 and 0.80, respectively.