International audienceSegmentation is a critical step for many computer vision applications. Among them, the remote photoplethys-mography technique is significantly impacted by the quality of region of interest segmentation. With the heart-rate estimation accuracy, the processing time is obviously a key issue for real-time monitoring. Recent face detection algorithms can perform real-time processing, however for unsupervised algorithms, i.e. without any subject detection based on supervised learning, existing methods are not able to achieve real-time on regular platform. In this paper, we propose a new method to perform real-time un-supervised remote photoplethysmograhy based on efficient temporally propagated superpixels segmentation. The ...
Facial skin segmentation is an important preliminary task in many applications, including remote Pho...
La mesure cardiaque sans contact réalisée grâce aux méthodes de photopléthysmographie sans contact e...
Remote photoplethysmography (rPPG) techniques can measure cardiac activity by detecting pulse-induce...
International audienceSegmentation is a critical step for many computer vision applications. Among t...
International audienceSegmentation is a critical step for many algorithms, especially for remote pho...
Heart-rate estimation performed with remote photoplethysmography is a very active research field. Si...
Heart-rate estimation performed with remote photoplethysmography is a very active research field. Si...
International audienceRegion of interest selection is an essential part for remote photoplethysmogra...
Remote photoplethysmography (rPPG) enables contactless measurement of pulse-rate by detecting pulse-...
Remote photoplethysmography (rPPG) enables non-contact heart rate (HR) estimation from facial videos...
In this paper, we propose a conceptually novel algorithm, namely “Spatial Subspace Rotation” (2SR), ...
Abstract—Subject detection is a crucial task for camera-based remote healthcare monitoring. Most exi...
In this paper, we propose a conceptually novel algorithm, namely “Spatial Subspace Rotation” (2SR), ...
Facial skin segmentation is an important preliminary task in many applications, including remote Pho...
La mesure cardiaque sans contact réalisée grâce aux méthodes de photopléthysmographie sans contact e...
Remote photoplethysmography (rPPG) techniques can measure cardiac activity by detecting pulse-induce...
International audienceSegmentation is a critical step for many computer vision applications. Among t...
International audienceSegmentation is a critical step for many algorithms, especially for remote pho...
Heart-rate estimation performed with remote photoplethysmography is a very active research field. Si...
Heart-rate estimation performed with remote photoplethysmography is a very active research field. Si...
International audienceRegion of interest selection is an essential part for remote photoplethysmogra...
Remote photoplethysmography (rPPG) enables contactless measurement of pulse-rate by detecting pulse-...
Remote photoplethysmography (rPPG) enables non-contact heart rate (HR) estimation from facial videos...
In this paper, we propose a conceptually novel algorithm, namely “Spatial Subspace Rotation” (2SR), ...
Abstract—Subject detection is a crucial task for camera-based remote healthcare monitoring. Most exi...
In this paper, we propose a conceptually novel algorithm, namely “Spatial Subspace Rotation” (2SR), ...
Facial skin segmentation is an important preliminary task in many applications, including remote Pho...
La mesure cardiaque sans contact réalisée grâce aux méthodes de photopléthysmographie sans contact e...
Remote photoplethysmography (rPPG) techniques can measure cardiac activity by detecting pulse-induce...