Search results for "Biomedical device"

showing 7 items of 7 documents

Biopolyester-based systems containing naturally occurring compounds suitable for biomedical devices

2016

Biopolyester-based systems naturals compounds biomedical devices
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Production and physicochemical characterization of a new amine derivative of gellan gum and rheological study of derived hydrogels

2020

The production of an amine derivative of gellan gum, named GG-EDA, was here obtained by functionalizing the polysaccharide backbone with pendant ethylenediamine moieties. The obtained derivative was characterized by spectroscopic, colorimetric, chromatographic and rheological analyses to study the effect of the free amino groups on the physicochemical properties of the macromolecule. A titration experiment was conducted to study the acid-base dissociation constants in aqueous media for the carboxylic and amino groups in the GG-EDA and to shed light on the possibility that the derivative shows a polyampholyte structure under physiological conditions. The rheological analysis conducted on bot…

Polymers and PlasticsEthylenediamine02 engineering and technology010402 general chemistryPolysaccharide01 natural sciencesBiomedical deviceGellan gumPolyampholyte polymerschemistry.chemical_compoundBiomedical devicesMaterials ChemistryOrganic chemistryAmine derivatized gellan gumchemistry.chemical_classificationOrganic ChemistryHydrogels021001 nanoscience & nanotechnologyGellan gum0104 chemical sciencesHydrogelchemistrySelf-healing hydrogelsAmine gas treatingTitrationPOLYMERS0210 nano-technologyDerivative (chemistry)MacromoleculeCarbohydrate Polymers
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Wearable Multisensor Ring-Shaped Probe for Assessing Stress and Blood Oxygenation: Design and Preliminary Measurements

2023

The increasing interest in innovative solutions for health and physiological monitoring has recently fostered the development of smaller biomedical devices. These devices are capable of recording an increasingly large number of biosignals simultaneously, while maximizing the user’s comfort. In this study, we have designed and realized a novel wearable multisensor ring-shaped probe that enables synchronous, real-time acquisition of photoplethysmographic (PPG) and galvanic skin response (GSR) signals. The device integrates both the PPG and GSR sensors onto a single probe that can be easily placed on the finger, thereby minimizing the device footprint and overall size. The system enables the e…

Settore ING-INF/05 - Sistemi Di Elaborazione Delle InformazioniClinical BiochemistryBiomedical Engineeringoxygen saturation (SpO2)General Medicinewearable health devices (WHD); photoplethysmography (PPG); galvanic skin response (GSR); oxygen saturation (SpO<sub>2</sub>); biomedical devicesSettore ING-INF/01 - ElettronicaAnalytical Chemistryphotoplethysmography (PPG)Settore ING-INF/06 - Bioingegneria Elettronica E Informaticabiomedical deviceswearable health devices (WHD)InstrumentationEngineering (miscellaneous)Biotechnologygalvanic skin response (GSR)
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PROCEDIMENTO DI PREPARAZIONE DI SCAFFOLD POLIMERICI PREANGIOGENIZZATI

2009

Tissue Engineering TIPS DIPS Phase Separation Biomedical Devices
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A portable multisensor system to assess cardiorespiratory interactions through photoplethysmography

2022

Nowadays, the ever-growing interest to health and quality of life of individuals and the advancements in electronic devices technology are pushing the development of portable and wearable biomedical devices able to pursue a minimally invasive monitoring of physiological parameters in daily-life conditions. Such devices can now carry out a real-time assessment of the subjects’ overall health status and possibly even detect ongoing diseases. In this context, we have designed and implemented a multisensor portable system able to perform synchronous real-time acquisitions of electrocardiographic (ECG), photoplethysmographic (PPG) and airflow breathing signals. We investigated cardiorespiratory …

electrocardiography (ECG)photoplethysmography (PPG)Granger causality.breathing signalPortable biomedical deviceSettore ING-INF/06 - Bioingegneria Elettronica E Informaticacardiorespiratory interactionSettore ING-INF/01 - Elettronica2022 IEEE International Symposium on Medical Measurements and Applications (MeMeA)
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Low-invasive multisensor real-time acquisition system for the assessment of cardiorespiratory and skin conductance parameters

2022

In recent years, the attention to the health and comfort of the individual, together with the electronic miniaturization progress, have led to an increased interest in the development of biomedical devices that are able to acquire a multitude of biomedical signals. Such devices should be wearable and comfortable during daily use, to be thus suitable for continuously monitoring psychophysical health states. In this context, we have designed and realized a portable biomedical device capable of real-time acquisition of electrocardiographic (ECG), photoplethysmographic (PPG), breathing and galvanic skin response (GSR) signals, for a noninvasive monitoring of multiple physiological parameters. T…

electrocardiography (ECG)photoplethysmography (PPG)Portable biomedical deviceSettore ING-INF/06 - Bioingegneria Elettronica E InformaticaInternet of Medical Things (IoMT)Settore ING-INF/01 - Elettronicagalvanic skin response (GSR)2022 IEEE 21st Mediterranean Electrotechnical Conference (MELECON)
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Deposition and characterization of coatings of Hydroxyapatite, Chitosan, and Hydroxyapatite-Chitosan on 316L for biomedical devices

2018

In the last decades, the scientific community has turned on great interest towards the development of increasingly performing biomedical systems. In the orthopedic field, biomedical devices are made up by metallic materials (mainly steel and titanium alloys), which have low/medium resistance to corrosion and a low osteointegration capacity when implanted inside the human body. This can lead to infection or inflammation that can damage the tissues surrounding the implant. The use of biocompatible coatings allows cancelling or mitigating these phenomena. The coating interposing between aggressive environment and biomedical device inhibits corrosion so limiting the metal ions release into the …

orthopedic devicebiomedical devicecorrosionSettore ING-IND/23 - Chimica Fisica Applicatabiocompatible coatingchitosanhydroxylapatite
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