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Multi-modal, remote breathing monitor
Nir Regev
,
Dov Wulich
Department of Electrical & Computer Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Scopus citations
Overview
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Dive into the research topics of 'Multi-modal, remote breathing monitor'. Together they form a unique fingerprint.
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Keyphrases
Modal
100%
Breathing Rate
100%
Breathing Monitor
100%
Estimation Algorithms
33%
Received Signal
33%
Plethora
33%
Human Subjects
33%
RGB Image
33%
Maximum Absolute Errors
33%
RGB Sensor
33%
Human Body
33%
Sleep Monitoring
33%
Breathing Pattern
33%
Fundamental Frequency
33%
Maximum Likelihood
33%
Generalized Likelihood Ratio Test
33%
Elderly Care
33%
Signal Detector
33%
Vision-based
33%
Image Coordinates
33%
Spectral Estimation
33%
Harmonic Signal
33%
Depth Sensor
33%
Pisarenko
33%
Optical Flow Algorithm
33%
Baby Monitoring
33%
Intel RealSense
33%
Image-based Features
33%
Ultra-wideband Radar
33%
Computer Science
Estimation Algorithm
100%
maximum-likelihood
100%
generalized likelihood-ratio test
100%
Ultra-Wideband
100%
Spectral Estimation
100%
RGB Image
100%
Fundamental Frequency
100%
Earth and Planetary Sciences
Real Time
100%
Harmonics
100%
Likelihood Ratio
100%
Broadband
100%
Signal Detector
100%
Engineering
Breathing
100%
Breathing Rate
75%
Tasks
25%
RGB Image
25%
Maximum Likelihood
25%
Harmonics
25%
Generalized Likelihood Ratio Test
25%
Ultra-Wideband
25%
Image Coordinate
25%
Fundamental Frequency
25%
Spectral Estimation
25%
Received Radar Signal
25%
Medicine and Dentistry
Breathing
100%
Breathing Rate
100%
Human Subject
33%
Maximum Likelihood Method
33%
Spectral Estimation
33%
Breathing Pattern
33%
Optic Flow
33%
Material Science
Spectral Estimation
100%