Dual-path TokenLearner for Remote Photoplethysmography-based Physiological Measurement with Facial Videos

08/15/2023
by   Wei Qian, et al.
0

Remote photoplethysmography (rPPG) based physiological measurement is an emerging yet crucial vision task, whose challenge lies in exploring accurate rPPG prediction from facial videos accompanied by noises of illumination variations, facial occlusions, head movements, \etc, in a non-contact manner. Existing mainstream CNN-based models make efforts to detect physiological signals by capturing subtle color changes in facial regions of interest (ROI) caused by heartbeats. However, such models are constrained by the limited local spatial or temporal receptive fields in the neural units. Unlike them, a native Transformer-based framework called Dual-path TokenLearner (Dual-TL) is proposed in this paper, which utilizes the concept of learnable tokens to integrate both spatial and temporal informative contexts from the global perspective of the video. Specifically, the proposed Dual-TL uses a Spatial TokenLearner (S-TL) to explore associations in different facial ROIs, which promises the rPPG prediction far away from noisy ROI disturbances. Complementarily, a Temporal TokenLearner (T-TL) is designed to infer the quasi-periodic pattern of heartbeats, which eliminates temporal disturbances such as head movements. The two TokenLearners, S-TL and T-TL, are executed in a dual-path mode. This enables the model to reduce noise disturbances for final rPPG signal prediction. Extensive experiments on four physiological measurement benchmark datasets are conducted. The Dual-TL achieves state-of-the-art performances in both intra- and cross-dataset testings, demonstrating its immense potential as a basic backbone for rPPG measurement. The source code is available at \href{https://github.com/VUT-HFUT/Dual-TL}{https://github.com/VUT-HFUT/Dual-TL}

READ FULL TEXT

page 1

page 4

page 6

page 10

page 11

research
11/23/2021

PhysFormer: Facial Video-based Physiological Measurement with Temporal Difference Transformer

Remote photoplethysmography (rPPG), which aims at measuring heart activi...
research
11/30/2022

Learning Motion-Robust Remote Photoplethysmography through Arbitrary Resolution Videos

Remote photoplethysmography (rPPG) enables non-contact heart rate (HR) e...
research
01/11/2022

Optimization Planning for 3D ConvNets

It is not trivial to optimally learn a 3D Convolutional Neural Networks ...
research
06/12/2022

DRNet: Decomposition and Reconstruction Network for Remote Physiological Measurement

Remote photoplethysmography (rPPG) based physiological measurement has g...
research
02/07/2023

PhysFormer++: Facial Video-based Physiological Measurement with SlowFast Temporal Difference Transformer

Remote photoplethysmography (rPPG), which aims at measuring heart activi...
research
07/04/2022

Identifying Rhythmic Patterns for Face Forgery Detection and Categorization

With the emergence of GAN, face forgery technologies have been heavily a...
research
05/18/2021

Non-contact Pain Recognition from Video Sequences with Remote Physiological Measurements Prediction

Automatic pain recognition is paramount for medical diagnosis and treatm...

Please sign up or login with your details

Forgot password? Click here to reset