Search results for "Photoplethysmogram"

showing 10 items of 84 documents

Video-Based Heartbeat Rate Measuring Method Using Ballistocardiography

2017

International audience; Video-based heartbeat rate measurement is a rapidly growing application in remote health monitoring. Video-based heartbeat rate measuring methods operate mainly by estimating photoplethysmography or ballistocardiography signals. These methods operate by estimating the microscopic color change in the face or by estimating the microscopic rigid motion of the head/facial skin. However, the robustness to motion artifacts caused by illumination variance and motion variance of the subject poses main challenge. We present a video-based heartbeat rate measuring framework to overcome these problems by using the principle of ballistocardiography. In this paper, we proposed a b…

EngineeringMean squared errorvideo analyticsComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technology01 natural sciencesStandard deviationphotoplethysmography and ballistocardiographysymbols.namesakeFacial videoRobustness (computer science)Photoplethysmogram0202 electrical engineering electronic engineering information engineeringmedicineComputer vision[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Electrical and Electronic EngineeringNoncontact[ PHYS.PHYS.PHYS-INS-DET ] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Instrumentationmedicine.diagnostic_testbusiness.industry010401 analytical chemistryPearson product-moment correlation coefficient3. Good health0104 chemical sciencesRemote health monitoringnon-contactFeature (computer vision)BallistocardiographyFace (geometry)symbols020201 artificial intelligence & image processingArtificial intelligencebusinessIEEE Sensors Journal
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Wearable wireless photoplethysmography sensors

2008

Wearable health monitoring sensors may support early detection of abnormal conditions and prevention of their consequences. Recent designs of three wireless photoplethysmography monitoring devices embedded in hat, glove and sock, and connected to PC or mobile phone by means of the Bluetooth technology, are described. First results of distant monitoring of heart rate and pulse wave transit time using the newly developed devices are presented.

Engineeringbusiness.industryEarly detectionWearable computerlaw.inventionBluetoothMobile phonelawEmbedded systemPhotoplethysmogramPulse Wave Transit TimeWirelessbusinessComputer hardwareSPIE Proceedings
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Photoplethysmography for bovine heat detection: the preliminary results

2020

In this study, we applied photoplethysmography (PPG) as an alternative, convenient, and affordable method for bovine heat detection. Heat detection is an essential part of effective herd reproduction management. Currently, there are many different heat detection techniques, but they can be ineffective or impractical to use. Since heat affects local vulvar blood circulation (resulting in swelling and erythema), photoplethysmography could represent an affordable alternative to detect this bovine phenomenon. In this study, we enrolled 20 animals in heat and other stages of the bovine reproduction cycle. We analyzed the PPG signal in terms of baseline (DC component), power, kurtosis, and erythe…

ErythemaSignal quality indexErythema Index01 natural sciences010309 optics03 medical and health sciencesEstrusHeat detectionPhotoplethysmogram0103 physical sciencesMedicinePulse oximeterSignal quality indexPhotoplethysmography030304 developmental biology2. Zero hunger0303 health sciencesKurtosisbusiness.industryCowMeasurement siteBlood circulation:NATURAL SCIENCES::Physics::Atomic and molecular physics [Research Subject Categories]sense organsmedicine.symptomHeat detectionbusinessBiomedical engineering
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Remote heart rate variability for emotional state monitoring

2018

International audience; Several researches have been conducted to recognize emotions using various modalities such as facial expressions , gestures, speech or physiological signals. Among all these modalities, physiological signals are especially interesting because they are mainly controlled by the autonomic nervous system. It has been shown for example that there is an undeniable relationship between emotional state and Heart Rate Variability (HRV). In this paper, we present a methodology to monitor emotional state from physiological signals acquired remotely. The method is based on a remote photoplethysmography (rPPG) algorithm that estimates remote Heart Rate Variability (rHRV) using a …

Facial expressionModalities[ INFO.INFO-TS ] Computer Science [cs]/Signal and Image Processing[INFO.INFO-TS] Computer Science [cs]/Signal and Image ProcessingComputer scienceSpeech recognition020208 electrical & electronic engineering0206 medical engineering[INFO.INFO-CV]Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]02 engineering and technology[ INFO.INFO-CV ] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]020601 biomedical engineeringSignal[INFO.INFO-CV] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV][INFO.INFO-TS]Computer Science [cs]/Signal and Image ProcessingFeature (computer vision)Frequency domainPhotoplethysmogram0202 electrical engineering electronic engineering information engineeringHeart rate variabilityGesture
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The assessment of gingivitis using remote photoplethysmography

2020

Gum disease caused by bacterial infection, systemic conditions or neurogenic inflammation remains a prevalent and important concern of public health in both, developing and developed countries, potentially causing tooth loss if left untreated. Therefore, a simple, cost-effective, and contactless diagnostic tool is needed in dentistry. The present study aims to develop and investigate the feasibility of a motion artefact-free, miniature imaging photoplethysmography system which is dedicated for assessment of gingivitis in the dental office. The device comprised of a sub-miniature monochromatic camera equipped with miniature lens, 4-LED ring illuminator, cross polarizers and bandpass optical …

GingivitisNeurogenic inflammationGingival tissuebusiness.industryPhotoplethysmogrammedicineGingival inflammationmedicine.symptombusinessPerfusionBiomedical engineeringBiophotonics—Riga 2020
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Comparison of region of interest segmentation methods for video-based heart rate measurements

2018

International audience; Conventional contact photoplethysmography (PPG) sensors are not suitable in situations of skin damage or when unconstrained movement is required. As a consequence, remote photoplethysmography (rPPG) has recently emerged because it provides remote physiological measurements without expensive hardware and improves comfort for long-term monitoring. RPPG estimation methods use the spatially averaged RGB values of pixels in a Region Of Interest (ROI) to generate a temporal RGB signal. The selection of ROI is a critical first step to obtain reliable pulse signals and must contain as many skin pixels as possible with a low percentage of non-skin pixels. In this paper, we ex…

Heart Rate (HR)Computer science[INFO.INFO-TS] Computer Science [cs]/Signal and Image Processing0206 medical engineering02 engineering and technology01 natural sciencesSignal[INFO.INFO-CV] Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV][INFO.INFO-TS]Computer Science [cs]/Signal and Image ProcessingRegion of interestPhotoplethysmogramSegmentationComputer visionVideo basedPixelbusiness.industryremote photoplethysmography (rPPG)010401 analytical chemistryPerspective (graphical)[INFO.INFO-CV]Computer Science [cs]/Computer Vision and Pattern Recognition [cs.CV]Region of Interest (ROI)020601 biomedical engineering0104 chemical sciencesRGB color modelArtificial intelligencebusiness
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<title>Optical non-invasive monitoring of skin blood pulsations</title>

2005

Time resolved detection and analysis of the skin backscattered optical signals (remission photoplethysmography or PPG) provide rich information on skin blood volume pulsations and can serve for reliable cardiovascular assessment. The single- and multi-channel PPG concepts are discussed in this work. Simultaneous data flow from several body locations allows one to study the heartbeat pulse wave propagation in real time and evaluate the vascular resistance. Portable single-, dual- and four-channel PPG monitoring devices with special software have been designed for real-time data acquisition and processing. The clinical studies confirmed their potential in the monitoring of heart arrhythmias, …

Heartbeatbusiness.industryNon invasiveBlood volumemedicine.anatomical_structureData acquisitionArterial occlusionsPulse wave propagationPhotoplethysmogramVascular resistanceMedicinesense organsbusinessBiomedical engineeringSPIE Proceedings
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Remote Photoplethysmography for Evaluation of Cutaneous Sensory Nerve Fiber Function

2021

About 2% of the world’s population suffers from small nerve fiber dysfunction, neuropathy, which can result in severe pain. This condition is caused by damage to the small nerve fibers and its assessment is challenging, due to the lack of simple and objective diagnostic techniques. The present study aimed to develop a contactless photoplethysmography system using simple instrumentation, for objective and non-invasive assessment of small cutaneous sensory nerve fiber function. The approach is based on the use of contactless photoplethysmography for the characterization of skin flowmotions and topical heating evoked vasomotor responses. The feasibility of the technique was evaluated on volunt…

Laser Doppler ImagingPopulationSensationNerve fiber030204 cardiovascular system & hematologylcsh:Chemical technologyBiochemistryArticleAnalytical Chemistry03 medical and health sciencesNerve Fibers0302 clinical medicineremote photoplethysmographyPhotoplethysmogrampain assessmentHumansMedicinelcsh:TP1-1185Electrical and Electronic EngineeringPhotoplethysmographyeducationInstrumentationSkinneuropathic paineducation.field_of_studyVasomotorbusiness.industryCutaneous nervecutaneous perfusioncutaneous flowmotionstopical heatingAtomic and Molecular Physics and OpticsCutaneous sensory nervemedicine.anatomical_structureNeuropathic painvasomotor responsechronic painbusiness030217 neurology & neurosurgeryBiomedical engineeringSensors
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The analysis of blood flow changes under local anesthetic input using non-contact technique

2010

In this work photoplethysmography imaging (PPGI) technique was used to obtain blood flow changes in human skin under regional anesthesia (RA). PPGI was evaluated from video taken by video camera for 26 patients 2 minutes before and immediately after RA, using custom developed software. Results showed that blood flow obtained by PPGI increases immediately after RA effect and the amplitude of PPGI showed correlation with temperature changes in human skin (r=0.8±0.14, p<0.0001). We found that PPGI technique can be usable for non-contact monitoring of quality of RA.

Local anestheticmedicine.drug_classRegional anesthesiabusiness.industryRemote patient monitoringPhotoplethysmogramAnesthesiamedicinePlethysmographBlood flowbusinessBiomedical engineering2010 3rd International Conference on Biomedical Engineering and Informatics
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Comparison of short-term heart rate variability indexes evaluated through electrocardiographic and continuous blood pressure monitoring

2019

Heart rate variability (HRV) analysis represents an important tool for the characterization of complex cardiovascular control. HRV indexes are usually calculated from electrocardiographic (ECG) recordings after measuring the time duration between consecutive R peaks, and this is considered the gold standard. An alternative method consists of assessing the pulse rate variability (PRV) from signals acquired through photoplethysmography, a technique also employed for the continuous noninvasive monitoring of blood pressure. In this work, we carry out a thorough analysis and comparison of short-term variability indexes computed from HRV time series obtained from the ECG and from PRV time series …

MaleSupine positionTime FactorsAdolescent0206 medical engineeringBiomedical EngineeringPhotoplethysmography (PPG)Time series analysis02 engineering and technologySettore ING-INF/01 - Elettronica030218 nuclear medicine & medical imagingRobust regressionElectrocardiography (ECG)03 medical and health sciencesElectrocardiography0302 clinical medicineHeart RatePhotoplethysmogramStatisticsHeart rate variabilityHumansTime domainTime seriesPulseMathematicsConditional entropyBlood Pressure Determination020601 biomedical engineeringComputer Science ApplicationsPulse rate variability (PRV)Frequency domainSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaRegression AnalysisFemaleHeart rate variability (HRV)Continuous blood pressure (CBP)
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