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Updated: Sep 16, 2025

Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function
Published on: December 8, 2010
Photoplethysmography imaging to assess facial perfusion under simulated hypovolemia
Stefan Borik1,2, Marguerite L Gilmore1, Antonio Gonzalez-Fiol1
1Department of Anesthesiology, Yale University, New Haven, CT 06510, United States of America.
Abstract:
Objective.This study evaluates the potential of photoplethysmography imaging (PPGI) with automated facial tracking for detecting hemodynamic and autonomic changes induced by lower-body negative pressure (LBNP). The goal is to assess whether PPGI-derived facial perfusion variations are related with stroke volume (SV), systemic vascular resistance (SVR), heart rate variability (HRV), and autonomic responses to progressive hypovolemia.Approach.Twenty-four healthy adults (8 females, 16 males; aged 28.7 ± 3.5 years) underwent a seven-stage LBNP protocol (-15 to -60 mmHg, recovery). Facial perfusion was recorded using cross-polarized PPGI, along with SV, SVR, HR, and mean arterial pressure. Facial landmark tracking (MediaPipe) was used to extract region-specific PPGI signals. Wavelet synchrosqueezing transform enabled spectral analysis, and HRV was assessed with NeuroKit2.Main Results.At -60 mmHg, the LBNP-intolerant group showed a 25.2% decrease in SV (p< 0.0001) and a 19% increase in SVR (p= 0.041). At -30 mmHg recovery, SV remained reduced by 21% (p< 0.001), with SVR elevated by 30.1% (p= 0.002). In contrast, the tolerant group exhibited SV increases of 12% and 18% at these stages (bothp< 0.0001), and a HR reduction of up to 5% (p< 0.05), with a decreasing SVR trend. HRV analysis indicated greater sympathetic activation in the intolerant group, with reduced HF power (p= 0.037) and increased LF/HF ratio (3.5 at -60 mmHg,p= 0.020). First harmonic PPGI amplitudes significantly declined in the intolerant group, most notably in the cheeks (-44.2%,p= 0.005).Significance.These findings suggests that PPGI, combined with AI-based face tracking and wavelet analysis, enables non-invasive, spatially resolved monitoring of vascular and autonomic responses. PPGI differentiates tolerant and intolerant groups, supporting its potential for real-time cardiovascular assessment in critical care and emergency settings.
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