CYCVLGIVSep 22, 2021

The First Vision For Vitals (V4V) Challenge for Non-Contact Video-Based Physiological Estimation

arXiv:2109.10471v153 citations
Originality Synthesis-oriented
AI Analysis

This addresses the need for standardized evaluation in telehealth applications, particularly during public health emergencies like COVID-19, but is incremental as it focuses on benchmarking rather than new methods.

The paper introduced the first Vision for Vitals (V4V) Challenge to compare remote photoplethysmography methods for non-contact heart rate estimation from video, providing a novel dataset with high-resolution videos and varied physiological signals from a diverse population.

Telehealth has the potential to offset the high demand for help during public health emergencies, such as the COVID-19 pandemic. Remote Photoplethysmography (rPPG) - the problem of non-invasively estimating blood volume variations in the microvascular tissue from video - would be well suited for these situations. Over the past few years a number of research groups have made rapid advances in remote PPG methods for estimating heart rate from digital video and obtained impressive results. How these various methods compare in naturalistic conditions, where spontaneous behavior, facial expressions, and illumination changes are present, is relatively unknown. To enable comparisons among alternative methods, the 1st Vision for Vitals Challenge (V4V) presented a novel dataset containing high-resolution videos time-locked with varied physiological signals from a diverse population. In this paper, we outline the evaluation protocol, the data used, and the results. V4V is to be held in conjunction with the 2021 International Conference on Computer Vision.

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