0000000000264105

AUTHOR

Javier Garcia-monreal

showing 7 related works from this author

Validation of a novel contact-free heart and respiratory rate monitor.

2021

There is a growing need for remote monitoring of patients due to a lack of resources and infection control. Current systems use sensors that require constant physical contact with the user, which may result in discomfort or lack of adherence. In the present study, we evaluated the accuracy of a new contact-free system to monitor heart and respiratory rate. Study participants were measured simultaneously using two devices: a contact-free optical system that measures nano-vibrations and movements (investigational device, "Gili Pro BioSensor") and a standard reference bed-side monitor, inclusive of an electrocardiogram and capnograph modules (Mindray

Malemedicine.medical_specialtyRespiratory rate0206 medical engineeringBiomedical EngineeringVital signs02 engineering and technology01 natural sciencesWearable Electronic DevicesRespiratory RateHeart RateInternal medicineHeart rateMedicineHumansAgedMonitoring PhysiologicAged 80 and overContact freebusiness.industry010401 analytical chemistryArrhythmias CardiacGeneral MedicineMiddle Aged020601 biomedical engineering0104 chemical sciencesCardiologyFemaleCurrent (fluid)businessConstant (mathematics)Journal of medical engineeringtechnology
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Phase-shifting digital lensless Fourier holography for high numerical aperture in-line interferometric microscopy

2012

A new common-path and phase-shifting digital lensless Fourier architecture for high numerical aperture (NA) imaging in lensless in-line holographic microscopy based on the use of a spatial light modulator (SLM) is presented and experimentally validated.

Materials scienceSpatial light modulatorbusiness.industryHolographyPhysics::OpticsInterferometric microscopylaw.inventionsymbols.namesakeFourier transformOpticslawComputer Science::Computer Vision and Pattern RecognitionMicroscopysymbolsDigital holographic microscopybusinessPhase modulationDigital holographyFrontiers in Optics 2012/Laser Science XXVIII
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Interferometric Phase Retrieval in Optical Transient Detection

2021

A transient detection imaging system (TDI), also known as optical novelty filter, is an adaptive interferometric device that detects temporal changes in a scene while suppressing its static parts. Removal of background improves contrast and helps visualizing and measuring intensity and phase. Following the first TDI proposal by Cudney et al. [1] , most TDI systems are based on photorefractive two-wave mixing [2] . Previous works rely on conventional intensity measurements, where partial information about input signal phase changes are obtained by previous calibration using an input phase-output intensity transfer function of the particular system.

PhysicsInterferometryOpticsbusiness.industryPhase (waves)Photorefractive effectFilter (signal processing)businessOptical filterPhase retrievalSignalTransfer function2021 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC)
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Interferometric measurement of complex-field changes in transient detection imaging.

2020

We report an experimental method that combines nonlinear-crystal-based transient detection imaging (TDI) with interferometric complex-field retrieval. The system allows measuring both phase and amplitude of a dynamic scene while suppressing stationary background. Theoretical and experimental results prove the linear relation existing between input and output phases, as well as the benefits of phase analysis for both detection and measurement with high resolutions of λ/30, even under noisy conditions. Additionally, we present experimental evidence of the remarkable ability of the technique to detect phase sign changes in the scene —what we call differential-phase TDI— showing great detection…

Computer sciencebusiness.industryPhase (waves)02 engineering and technologyÒptica021001 nanoscience & nanotechnology01 natural sciencesAtomic and Molecular Physics and Optics010309 opticsInterferometryAmplitudeOptics0103 physical sciencesCalibrationSensitivity (control systems)Transient (oscillation)0210 nano-technologyPhase retrievalbusinessPhase modulationOptics express
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In Depth Flow Inspection based on Spatial Analysis of Dynamic Laser Speckle

2018

A novel optical approach based on statistical analysis of spatial laser speckle pattern for tissue in-depth flow characteristics is presented. Properties such as flow orientation and speed can be estimated. In-vitro experimental results are demonstrated.

Materials sciencebusiness.industryOrientation (computer vision)Laser01 natural scienceslaw.invention010309 opticsSpeckle patternOpticsFlow (mathematics)law0103 physical sciencesStatistical analysisbusinessAdaptive opticsConference on Lasers and Electro-Optics
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Lensless Object Scanning Holography

2012

Lensless object scanning holography (LOSH), a method for improving image quality in digital holography by combination of a set of digital holograms for different object positions is presented.

Image qualitybusiness.industryComputer scienceHolographyObject (computer science)law.inventionOpticslawPhase imagingDigital image processingDigital holographic microscopybusinessImage resolutionDigital holographyFrontiers in Optics 2012/Laser Science XXVIII
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Validation of a novel contact-free heart and respiratory rate monitor

2022

There is a growing need for remote monitoring of patients due to a lack of resources and infection control. Current systems use sensors that require constant physical contact with the user, which may result in discomfort or lack of adherence. In the present study, we evaluated the accuracy of a new contact-free system to monitor heart and respiratory rate. Study participants were measured simultaneously using two devices: a contact-free optical system that measures nano-vibrations and movements (investigational device, “Gili Pro BioSensor”) and a standard reference bed-side monitor, inclusive of an electrocardiogram and capnograph modules (Mindray®). Co-primary endpoints included HR and RR …

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