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1.
Psicol. rev ; 32(2): 322-343, 31/12/2023.
Article in Portuguese | LILACS, INDEXPSI | ID: biblio-1552099

ABSTRACT

O objetivo deste trabalho foi discutir acerca da utilização de um dispositivo de pesquisa: o caderno digital itinerante, a partir do qual foi possível promover a construção conjunta de uma pesquisa, partindo do método cartográfico. A pesquisa de campo que deu origem a esta reflexão metodológica teve por objetivo principal cartografar experiências sapatão na cidade, por meio da construção conjunta de um caderno digital itinerante no qual as participantes, juntamente com a pesquisadora, escreviam sobre suas experiências como mulheres lésbicas e/ou pessoas que se reconheciam enquanto sapatão. Tendo como um dos instrumentos a análise do diário de campo, produzido durante a pesquisa, foi possível discutir em profundidade o enfoque metodológico adotado e questionar a dicotomia pesquisadora-objeto, provocando algumas reflexões acerca da temática da participação e do desenvolvimento de pesquisas on-line, sobretudo no período pandêmico. Por fim, apostar na cartografia enquanto método de pesquisa com e não sobre permitiu a produção de uma pesquisadora sapatão que pudesse se ocupar da escuta, lendo sobre diferentes processos de subjetivação e, com isso, produzindo outros sentidos para seu objeto de pesquisa. (AU)


The aim of this study was to discuss the use of a research tool: the itinerant digital notebook, which facilitated the collaborative construction of research based on the cartographic method. The field research that gave rise to this methodological reflection aimed to map dyke experiences in the city through the collaborative construction of an itinerant digital notebook. In this note-book, participants, alongside the researcher, wrote about their experiences as lesbian women and/or individuals who identified as dykes. Using the analysis of the field diary produced during the research as one of the instruments, it was possible to deeply discuss the adopted methodological approach and question the researcher-object dichotomy, prompting reflections on the theme of participation and the development of online research, especially during the pandemic period. Ultimately, embracing cartography as a research method with, not on, participants allowed the production of a dyke researcher who could engage in listening, reading about different processes of subjectivation, and thereby generating alternative meanings for her object of study. (AU)


El objetivo de este trabajo fue discutir el uso de un dispositivo de investigación: el cuaderno digital itinerante, a partir del cual fue posible promover la cons-trucción conjunta de una investigación, a partir del método cartográfico. La investigación de campo que dio origen a esta reflexión metodológica tuvo como objetivo principal mapear las experiencias lesbianas en la ciudad, a través de la construcción conjunta de un cuaderno digital itinerante en el que las parti-cipantes, junto con la investigadora, escribieron sobre sus experiencias como lesbianas y/o personas que se reconocían como bolleras/camioneras. Teniendo como uno de los instrumentos el análisis del diario de campo producido durante la investigación, fue posible discutir en profundidad el abordaje metodológico adoptado y cuestionar la dicotomía investigadora-objeto, provocando algunas reflexiones sobre el tema de la participación y el desarrollo de investigación, especialmente en el período de pandemia. Finalmente, apostar por la carto-grafía como método de investigación con participantes y no sobre las partici-pantes permitió producir una investigadora lesbiana que podía ocuparse de escuchar, leer sobre diferentes procesos de subjetivación y, con eso, producir otros significados para su objeto de investigación. (AU)


Subject(s)
Humans , Female , Adult , Middle Aged , Young Adult , Research/instrumentation , Methodology as a Subject , Psychology, Social , Researcher-Subject Relations , Sexual and Gender Minorities , Internet of Things , COVID-19
2.
Chinese Journal of Industrial Hygiene and Occupational Diseases ; (12): 467-471, 2023.
Article in Chinese | WPRIM | ID: wpr-986053

ABSTRACT

At present, there are disadvantages with the detection for occupational hazard factors, such as insufficient monitoring data, poor timeliness, weak representativeness, long detection cycles, and inability to continuously monitor. Taking advantages of internet of things technology, an online monitoring platform for occupational hazard factors has been designed. The platform collects the concentration (intensity) of hazard factors through sensors, transmits the occupational hazards data collected online in realtime. The online monitoring cloud center for occupational hazard factors processes and analyzes online monitoring data in realtime, stores the hazard factors data to form database management, and provides user application services to form an intelligent online monitoring service model for occupational hazard factors. Based on the online monitoring platform of occupational hazard factors, multi-level government health supervision departments and employers can grasp the status of hazard factors in real time, which is conducive to improving the level of occupational hazard supervision.


Subject(s)
Internet of Things , Internet
3.
Journal of Biomedical Engineering ; (6): 103-109, 2023.
Article in Chinese | WPRIM | ID: wpr-970679

ABSTRACT

Internet of Things (IoT) technology plays an important role in smart healthcare. This paper discusses IoT solution for emergency medical devices in hospitals. Based on the cloud-edge-device architecture, different medical devices were connected; Streaming data were parsed, distributed, and computed at the edge nodes; Data were stored, analyzed and visualized in the cloud nodes. The IoT system has been working steadily for nearly 20 months since it run in the emergency department in January 2021. Through preliminary analysis with collected data, IoT performance testing and development of early warning model, the feasibility and reliability of the in-hospital emergency medical devices IoT was verified, which can collect data for a long time on a large scale and support the development and deployment of machine learning models. The paper ends with an outlook on medical device data exchange and wireless transmission in the IoT of emergency medical devices, the connection of emergency equipment inside and outside the hospital, and the next step of analyzing IoT data to develop emergency intelligent IoT applications.


Subject(s)
Internet of Things , Reproducibility of Results , Internet , Machine Learning , Technology
4.
Rev. tecnol. (St. Tecla, En línea) ; (15): 13-18, ene.-dic. 2022. ilus.^c28 cm., tab.
Article in Spanish | BISSAL, LILACS | ID: biblio-1412580

ABSTRACT

Este proyecto de investigación 2021 desarrollado por la Escuela de Ingeniería en Computación de ITCA-FEPADE, tuvo como objetivo usar las tecnologías para ayudar a mejorar el comportamiento de la comunidad educativa en pandemia Covid-19. Es un sistema inteligente para la medición del comportamiento humano con relación al cumplimiento del protocolo de bioseguridad Covid-19, implementando tecnologías de Internet del Comportamiento IoB, Internet de las Cosas IoT, Business Intelligence, Big Data y reconocimiento facial. La primera fase consistió en la toma de requerimientos y el estudio de investigaciones previas. Posteriormente se diseñó la interfaz del aplicativo que interpreta los datos colectados y la estructura de un dispensador inteligente de alcohol gel para ser impreso en 3D. Finalmente se realizó la programación del sistema y del circuito que conforman el dispositivo. Como resultado se construyó un dispositivo inteligente que mide y alerta la temperatura, dispensa alcohol gel y toma de fotografía para reconocimiento facial en la portación correcta de mascarilla. Incorpora un sistema informático que procesa los datos colectados que son utilizados por la aplicación de Inteligencia de Negocios para analizar el comportamiento de las personas ante el cumplimiento del protocolo de bioseguridad para Covid-19. El resultado del proyecto es un dispositivo inteligente y automatizado, que dotará a la institución de una herramienta innovadora de bajo costo para medir el comportamiento de la población que hace uso de las instalaciones de ITCA-FEPADE Sede Central y contribuirá a prevenir contagios por Covid-19, dando mayor seguridad a un retorno presencial al campus.


This research project was carried out in 2021 by the Escuela de Ingeniería en Computación of ITCA-FEPADE and aimed to use technologies to improve the behavior of the educational community in the context of Covid-19 pandemic. A smart system was development for measuring human behavior in relation to compliance with the Covid-19 biosafety protocol, implementing Internet of Behavior (IoB), Internet of Things (IoT), Business Intelligence, Big Data and facial recognition technologies. The first phase consisted on the identification of requirements and previous investigations. Subsequently, the application interface that interprets the collected data and the structure of a smart hand sanitizer dispenser to be printed in 3D was designed. Finally, the programming of the system and the circuit that make up the device was carried out. As a result, a smart device that measures and alerts the body temperature, dispenses hand sanitizer and applies facial recognition for the detection of proper face mask wearing was built. The device also incorporates a computer system that processes the collected data that to analyze the behavior of people in compliance with the biosafety protocol for Covid-19 through the Business Intelligence application. The result of the project was a smart and automated device that will provide the institution an innovative, low-cost tool to measure the behavior of the population that makes use of the ITCA-FEPADE Sede Central facilities and will contribute to preventing Covid-19 infections by giving greater safety to a face-to-face return to the facilities.


Subject(s)
Equipment and Supplies , Automated Facial Recognition , COVID-19 , Hand Sanitizers , Data Warehousing/trends , Internet of Things
5.
Santa Tecla, La Libertad; ITCA Editores; 20220100. 56 p. ilus.^c28 cm..
Monography in Spanish | BISSAL, LILACS | ID: biblio-1399983

ABSTRACT

Este proyecto fue desarrollado por la Escuela de Ingeniería en Computación de ITCA-FEPADE y tuvo como objetivo usar las tecnologías para ayudar a mejorar el comportamiento de la comunidad educativa en pandemia Covid-19. Es un sistema inteligente para la medición del comportamiento humano con relación al cumplimiento del protocolo de bioseguridad Covid-19, implementando tecnologías de Internet del Comportamiento IoB, Internet de las Cosas IoT, Business Intelligence, Big Data y reconocimiento facial. La primera fase consistió en la toma de requerimientos e investigaciones previas. Posteriormente se diseñó la interfaz del aplicativo que interpreta los datos colectados y la estructura de un dispensador inteligente de alcohol gel para ser impreso en 3D. Finalmente se realizó la programación del sistema y del circuito que conforman el dispositivo. Como resultado se construyó un dispositivo inteligente que mide y alerta la temperatura, dispensa alcohol gel y toma de fotografía para reconocimiento facial en la portación correcta de mascarilla.


This research project was carried out in 2021 by the Escuela de Ingeniería en Computación of ITCA-FEPADE and aimed to use technologies to improve the behavior of the educational community in the context of Covid-19 pandemic. A smart system was development for measuring human behavior in relation to compliance with the Covid-19 biosafety protocol, implementing Internet of Behavior (IoB), Internet of Things (IoT), Business Intelligence, Big Data and facial recognition technologies. The first phase consisted on the identification of requirements and previous investigations. Subsequently, the application interface that interprets the collected data and the structure of a smart hand sanitizer dispenser to be printed in 3D was designed. Finally, the programming of the system and the circuit that make up the device was carried out. As a result, a smart device that measures and alerts the body temperature, dispenses hand sanitizer and applies facial recognition for the detection of proper face mask wearing was built.


Subject(s)
Containment of Biohazards/trends , Internet of Things/instrumentation , COVID-19/prevention & control , Data Warehousing , Automated Facial Recognition/instrumentation
6.
Article in Spanish | LILACS, CUMED | ID: biblio-1408537

ABSTRACT

El nuevo coronavirus denominado SARS-COV2 causa diversas manifestaciones clínicas englobadas bajo el término COVID-19. El sistema de informe y datos conocidos por sus siglas en inglés como RADS, determinadas a partir del consenso de expertos producido por un grupo de trabajo multidisciplinario con el objetivo de mejorar la comunicación de los resultados, establece un enfoque estándar para la notificación de manifestaciones imagenológicas. El presente trabajo presenta el prototipo de aplicación CO-RADS que propone una herramienta digital sobre la base de una revisión actualizada del papel y la idoneidad de los estudios de imagenología para el diagnóstico y seguimiento de pacientes con sospecha o infección conocida de COVID-19, proporcionando terminología estandarizada de imágenes para lograr comunicar los resultados al médico de asistencia de manera clara y consistente. CO-RADS es una aplicación gratuita que se encuentra disponible en: htttps://www.aplikis.cu/es/application/cu.sld.hlucia.corads(AU)


The new coronavirus called SARS-COV2 causes various clinical manifestations encompassed under the term COVID-19. The data and reporting system known by its acronym in English as RADS, establishes a standard approach for the notification of imaging manifestations with the aim of improving the communication of results; was determined from the consensus of experts produced by a multidisciplinary working group. This paper presents the CO-RADS application prototype that proposes a digital tool based on an updated review of the role and suitability of imaging studies for the diagnosis and follow-up of patients with suspected or known COVID-19 infection, providing standardized imaging terminology to achieve clear and consistent communication of results to the attending physician. CO-RADS is a free application that is available at: htttps://www.aplikis.cu/es/application/cu.sld.hlucia.corads(AU)


Subject(s)
Humans , Male , Female , Tomography, X-Ray Computed/methods , Mobile Applications , Internet of Things , COVID-19/epidemiology , Radiology/methods
7.
Article in Spanish | LILACS, CUMED | ID: biblio-1408535

ABSTRACT

La internet de las cosas ha mantenido un crecimiento continuo en los últimos años. Las potencialidades de uso que muestra en diferentes campos han sido ampliamente documentadas. Su utilización efectiva en el campo de la salud puede traer consigo mejoras en la eficiencia de los tratamientos médicos, prevenir situaciones de riesgo, ayudar a elevar la calidad del servicio y proporcionar soporte a la toma de decisiones. La presente revisión profundiza en aspectos medulares de su utilización con el objetivo de explorar las principales tendencias y desafíos relacionados con la creciente utilización de la internet de las cosas en la salud, prestando mayor atención a los aspectos relacionados con las arquitecturas utilizadas para el despliegue de sistemas de internet de las cosas en ese ámbito, el manejo de la seguridad de estos sistemas y las herramientas para el apoyo a la toma de decisiones empleadas. Mediante el análisis documental se logra mostrar las principales características de estos sistemas, así como su arquitectura, herramientas utilizadas para la gestión de los datos capturados y mecanismos de seguridad. La utilización de la internet de las cosas en el campo de la salud tiene gran impacto, mejorando la vida de millones de personas en todo el mundo y brindando grandes oportunidades para el desarrollo de sistemas inteligentes de salud(AU)


The internet of things has maintained continuous growth in recent years. The potentialities of use that it shows in different fields have been widely documented. Its effective use in the field of health can bring improvements in the efficiency of medical treatments, prevention of risky situations, help raising the quality of service and provide support for decision-making. The present review explores into core aspects of its use in order to analyze trends, challenges and strengths. Document analysis was used to show the main characteristics of these systems, as well as their architecture, tools used for the management of the captured data and security mechanisms. The use of the internet of things in the health field has a great impact, improving the lives of millions of people around the world and providing great opportunities for the development of intelligent health systems(AU)


Subject(s)
Humans , Male , Female , Medical Informatics , Health Systems , Cloud Computing/trends , Blockchain/trends , Internet of Things/trends
8.
Chinese Journal of Medical Instrumentation ; (6): 114-118, 2022.
Article in Chinese | WPRIM | ID: wpr-928870

ABSTRACT

OBJECTIVE@#To discuss how to implement and promote the lean management of medical devices life cycle through establishing medical device UDI.@*METHODS@#Discuss the application of UDI on medical consumables lean management by relying on the construction of medical device UDI system in our country, and summarize the pilot experience of implanted medical devices in Shanghai.@*RESULTS@#Improve the application value of UDI in medical device Internet of Things through analyzing the present situation of implanted medical device and further strengthen the UDI application standardization.@*CONCLUSIONS@#Form the interconnection and mutual recognition during medical device life cycle and reduce the input of product cost and resource consumption in our country through establishing a more standardized and effective UDI circulation system.


Subject(s)
China , Internet , Internet of Things , Prostheses and Implants
9.
Acta Paul. Enferm. (Online) ; 35: eAPE003142, 2022. tab, graf
Article in Portuguese | LILACS, BDENF | ID: biblio-1364232

ABSTRACT

Resumo Objetivo Identificar na literatura as gerontecnologias Internet das Coisas desenvolvidas para prevenção de acidentes por quedas em idosos. Métodos Revisão integrativa, realizada de janeiro a maio de 2020. Foram critérios de inclusão artigos, sem restrição de período ou idioma com indivíduos de 60 anos ou mais, que abordem a utilização de gerontecnologia Internet das Coisas para prevenção de quedas. Excluíram-se artigos duplicados. A busca foi realizada pela estratégia PIE (População, Intervenção, Efeito/Avaliação), resultando na pergunta: "Quais as gerontecnologias Internet das Coisas desenvolvidas para prevenção de acidentes por quedas em idosos disponíveis na literatura?". Foi realizada nas bases de dados MEDLINE/PubMed, LILACS, CINAHL, Scopus e Web of Science. Identificaram-se ano, tipo de estudo, país, profissionais envolvidos, desfecho, local de desenvolvimento e classificação em gerontecnologia Internet das Coisas e protótipos. Resultados Identificaram-se 23 gerontecnologias Internet das Coisas. Os anos de 2018 e 2019 apresentaram maiores números de publicações. Ocorreu predominância de estudos descritivos, por profissionais da ciência da computação e engenheiros e desenvolvidos na Europa, Ásia, América do Norte e Oceania. Encontraram-se oito gerontecnologias Internet das Coisas e 15 protótipos, sendo sete sensores, cinco dispositivos, três jogos sérios e sistemas, dois robôs e um exergames, realidade virtual e aplicativo. A maioria das gerontecnologias buscava melhora da mobilidade e equilíbrio, sendo cinco desenvolvidas em ambiente hospitalar e domiciliar, respectivamente. Conclusão As gerontecnologias Internet das Coisas podem ser utilizadas como recursos para auxiliar na prevenção de quedas e no fortalecimento da capacidade funcional. Todavia, fazem-se necessárias pesquisas futuras para analisar a eficácia deste tipo de tecnologia para prevenção de quedas em idosos.


Resumen Objetivo Identificar en la literatura las gerontecnologías internet de las cosas desarrolladas para la prevención accidentes por caídas en adultos mayores. Métodos Revisión integradora, realizada de enero a mayo de 2020. Los criterios de inclusión fueron artículos, sin restricción de período o idioma, con individuos de 60 años o más, que abordaran la utilización de gerontecnologías internet de las cosas para la prevención de caídas. Se excluyeron artículos duplicados. La búsqueda fue realizada mediante la estrategia PIE (población, intervención, efecto/evaluación), que dio como resultado la pregunta "¿Cuáles son las gerontecnologías internet de las cosas desarrolladas para la prevención de accidentes por caídas en adultos mayores disponibles en la literatura?". Se realizó en las bases de datos MEDLINE/PubMed, LILACS, CINAHL, Scopus y Web of Science. Se identificó el año, tipo de estudio, país, profesionales involucrados, resultado, lugar de desarrollo y clasificación en gerontecnologías internet de las cosas. Resultados Se identificaron 23 gerontecnologías internet de las cosas. Los años 2018 y 2019 presentaron mayores números de publicaciones. Hubo predominancia de estudios descriptivos, por profesionales de ciencias de la comunicación e ingenieros y desarrollados en Europa, Asia, América del Norte y Oceanía. Se encontraron ocho gerontecnologías internet de las cosas y 15 prototipos, de los cuales siete eran sensores, cinco dispositivos, tres juegos serios y sistemas, dos robots y un exergames, realidad virtual y aplicación. La mayoría de los gerontecnologías buscaba una mejora de la movilidad y el equilibrio, de las cuales cinco fueron desarrolladas en ambiente hospitalario y domiciliario. Conclusión Las gerontecnologías internet de las cosas pueden ser utilizadas como recurso para ayudar en la prevención de caídas y en el fortalecimiento de la capacidad funcional. Sin embargo, es necesario llevar a cabo estudios futuros para analizar la eficacia de este tipo de tecnología para la prevención de caídas en adultos mayores.


Abstract Objective To identify in the literature the Internet of Things gerontechnology developed to prevent accidents by falls in older adults. Methods This integrative review was carried out from January to May 2020. Articles without period or language restriction with individuals aged 60 years or older addressing the use of Internet of Things gerontechnology for fall prevention were included. Duplicate articles were excluded. The search was performed by the PIE strategy (Population, Intervention, Effect/Assessment), resulting in the question: "What Internet of Things gerontechnology developed for accident prevention by falls in older adults available in the literature?". It was performed in the MEDLINE/PubMed, LILACS, CINAHL, Scopus and Web of Science databases. Year, type of study, country, professionals involved, outcome, development site and classification in Internet of Things gerontechnology and prototypes were identified. Results Twenty-three Internet of Things gerontechnology were identified. The years 2018 and 2019 had higher numbers of publications. There was a predominance of descriptive studies by computer science professionals and engineers and developed in Europe, Asia, North America and Oceania. Eight Internet of Things gerontechnology and 15 prototypes were found, seven sensors, five devices, three serious games and systems, two robots and one exergames, virtual reality and application. Most gerontechnology sought to improve mobility and balance, five of which were developed in the hospital and home environments, respectively. Conclusion The Internet of Things gerontechnology can be used as resources to assist in fall prevention and strengthening functional capacity. However, future research is needed to analyze the effectiveness of this type of technology for fall prevention in older adults.


Subject(s)
Middle Aged , Technology , Accidental Falls/prevention & control , Internet of Things , Geriatrics , Accident Prevention
10.
Rev. bras. med. esporte ; 27(spe2): 62-65, Apr.-June 2021. tab, graf
Article in English | LILACS | ID: biblio-1280078

ABSTRACT

ABSTRACT Special physical fitness plays an important role in sports skills, improving athletic performance and preventing injuries. Based on the Internet of Things (IoT), the method of assessing athletes' specific physical fitness is studied using the linear acceleration energy estimation model. After relevant research on the athletes' real training environment, a real-time monitoring platform is designed. Besides, the MQVA algorithm is proposed, and the simulation experiment is designed. Finally, the accuracy of several algorithms is verified by the practical method of evaluating the application. The verification results show that the precision of the algorithm and the model achieve the expected results. An evaluation model is proposed for individual athletes of the training effect based on the energy consumption rate; for multi-athletes, the indicators used are the progress of energy transfer. This model is compared and verified employing examples. The results show that the evaluation model is accurate and reliable. This investigation is part of the contents of the investigation of the physical fitness training system of the potential advantage project in China. It can provide a theoretical basis for coaches to adopt effective special physical training approaches and methods.


RESUMO A aptidão física especial tem um papel importante no domínio das habilidades esportivas, melhorando o desempenho atlético e prevenindo as lesões. Baseado na Internet das Coisas (IoT), o método de avaliação de aptidão física específica dos atletas é estudado usando o modelo de estimativa de energia de aceleração linear. Após uma pesquisa relevante sobre o ambiente de treinamento real dos atletas, é projetada uma plataforma de monitoramento em tempo real adequada para treinamento de atletas. Além disso, o algoritmo MQVA é proposto e é projetado o experimento de simulação. Finalmente, a precisão de vários algoritmos é verificada pelo método prático de avaliação da aplicação. Os resultados da verificação mostram que a precisão do algoritmo e o modelo alcançam os resultados esperados. Propõe-se um modelo de avaliação do efeito de formação baseado na taxa de consumo de energia para atletas individuais. Para multi-atletas se usam os indicadores de avaliação do progresso da transferência de Energia. Este modelo é comparado e verificado por meio de exemplos. Os resultados mostram que o modelo de avaliação é preciso e confiável. Esta investigação faz parte dos conteúdos da investigação do sistema de formação de aptidão física do projeto potencial de vantagem na China. O mesmo pode fornecer uma base teórica para que os treinadores adoptem abordagens e métodos de formação física especial eficazes.


RESUMEN La aptitud física especial tiene un papel importante en el dominio de las habilidades deportivas, mejorando el desempeño atlético y previniendo las lesiones. Basado en la Internet de las Cosas (IoT), el método de evaluación de aptitud física específica de los atletas es estudiado usando el modelo de estimativa de energía de aceleración lineal. Después de una importante investigación sobre el ambiente de entrenamiento real de los atletas, es proyectada una plataforma de monitoreo em tiempo real adecuada para entrenamiento de atletas. Además de eso, el algoritmo MQVA es propuesto y es proyectado el experimento de simulación. Finalmente, la precisión de varios algoritmos es verificada por el método práctico de evaluación de la aplicación. Los resultados de la verificación muestran que la precisión del algoritmo y el modelo alcanzan los resultados esperados. Se propone un modelo de evaluación del efecto de formación basado en la tasa de consumo de energía para atletas individuales. Para multi-atletas se usan los indicadores de evaluación del progreso de la transferencia de energía. Este modelo es comparado y verificado por medio de ejemplos. Los resultados muestran que el modelo de evaluación es preciso y confiable. Esta investigación hace parte de los contenidos de la investigación del sistema de formación de aptitud física del proyecto potencial de ventaja en la China. El mismo puede proporcionar una base teórica para que los entrenadores adopten abordajes y métodos de formación física especial eficaces.


Subject(s)
Humans , Male , Female , Physical Fitness/physiology , Energy Consumption , Athletes , Internet of Things , Algorithms
11.
Chinese Journal of Medical Instrumentation ; (6): 266-270, 2021.
Article in Chinese | WPRIM | ID: wpr-880464

ABSTRACT

Based on the existing information construction foundation of the isolation ward of the hospital, according to the relevant guidelines issued by the National Health Commission, the management of environmental isolation, disinfection, medical staff management and patient management are discussed, combining the application of Internet of things technology in hospital management, a series of new applications with distinctive features of Internet of Things (IoT) are built, and advanced technology and equipment such as Internet of Things are introduced. Realize the application scenario, implementation method and business mode of intelligent IoT in isolation ward, form an integrated data management center and monitoring system through data intelligent IoT, aggregation and operation, and realize the digital collection, processing, storage, transmission and analysis of medical information, equipment information, personnel information and management information, so as to realize medical closed-loop management, reduce the hidden danger of medical safety in isolated wards and improve the level of medical quality.


Subject(s)
Humans , Hospitals , Internet , Internet of Things , Monitoring, Physiologic , Technology
12.
Chinese Journal of Medical Instrumentation ; (6): 650-654, 2021.
Article in Chinese | WPRIM | ID: wpr-922077

ABSTRACT

This research is based on data from clinical information systems such as HIS, EMR, LIS, etc, based on the functions of the traditional paper bedside card, relying on wired network technology, using the Internet of Things technology to design and develop a multi-functional intelligent interactive electronic bedside card system for inpatients. The functional framework of the system is introduced and discussed in detail, and the design is carried out from several aspects of system architecture, network architecture, software architecture, database and software system. The results show that the system has stable performance and can ensure the real-time and accuracy of medical information. The implementation of the system can fully meet the needs of clinical first-line ward management, reduce the workload of nursing staff, improve work efficiency, and reduce the possibility of medical accidents. At the same time, it can facilitate patients to see their own health information, improve patient experience. It has important guiding significance for the development of ward management and hospital information construction.


Subject(s)
Humans , Electronics , Hospitals , Inpatients , Internet of Things , Technology
13.
Chinese Journal of Medical Instrumentation ; (6): 641-644, 2021.
Article in Chinese | WPRIM | ID: wpr-922075

ABSTRACT

This research is based on data from clinical information systems such as HIS, EMR, LIS, etc, based on the functions of the traditional paper bedside card, relying on wired network technology, using the Internet of Things technology to design and develop a multi-functional intelligent interactive electronic bedside card system for inpatients. The functional framework of the system is introduced and discussed in detail, and the design is carried out from several aspects of system architecture, network architecture, software architecture, database and software system. The results show that the system has stable performance and can ensure the real-time and accuracy of medical information. The implementation of the system can fully meet the needs of clinical first-line ward management, reduce the workload of nursing staff, improve work efficiency, and reduce the possibility of medical accidents. At the same time, it can facilitate patients to see their own health information, improve patient experience. It has important guiding significance for the development of ward management and hospital information construction.


Subject(s)
Humans , Electronics , Hospitals , Inpatients , Internet , Internet of Things , Technology
14.
Santa Tecla, La Libertad; ITCA Editores; 2021. 52 p. ilus.^c28 cm., tab..
Monography in Spanish | BISSAL, LILACS | ID: biblio-1352860

ABSTRACT

La presente propuesta de diseño busca la interoperabilidad de datos en salud por medio de la integración de un sistema de comunicación a equipos especializados, utilizando las TI (Tecnologías de la Información) y el IoT (Internet de las Cosas) en los equipos biomédicos especializados o monitor que está siendo utilizado actualmente en los centros hospitalarios público a nivel nacional para la medición de signos vitales, con el objetivo de poder brindar una atención sanitaria a pacientes con padecimientos médicos y que necesitan de una constante supervisión y vigilancia. En los centros hospitalarios se cuenta con equipo biomédico especializado que carece de dichas funcionalidades. Esto repercute u obliga al responsable especialista a tener que estar frente al monitor y paciente para poder observar las mediciones o lecturas que presenta un paciente.


This design proposal seeks the interoperability of health data through the integration of a communication system to specialized equipment, using IT (Information Technology) and IoT (Internet of Things) in specialized biomedical equipment or monitor that is currently being used in public hospitals nationwide for the measurement of vital signs, in order to provide health care to patients with medical conditions and who need constant surveillance. Hospitals have specialized biomedical equipment that lacks these functionalities. This forces the responsible specialist to have to be in front of the monitor and the patient to be able to observe the measurements or readings that a patient presents.


Subject(s)
Equipment and Supplies, Hospital/trends , Vital Signs , Health Information Interoperability/trends , Internet of Things , Patients , Surveillance in Disasters , Equipment and Supplies , Information Technology , Hospitals
15.
Santa Tecla, La Libertad; ITCA Editores; ene. 2020. 76 p. ^c28 cm.ilus., tab., graf..
Monography in Spanish | LILACS, BISSAL | ID: biblio-1222441

ABSTRACT

Se desarrolló el prototipo y pruebas de verificación del funcionamiento necesarias en un equipo médico, con el fin de obtener información confiable de dicho dispositivo. Se enfocó la investigación en el área de la tecnología aplicada en el sector de la salud, desarrollando un sistema de monitoreo local y remoto de signos vitales de pacientes utilizando como base la tecnología IoT y dispositivos inteligentes Smartphone. Para ello se diseñó una App Android, un dispositivo electrónico biomédico a partir de la tarjeta electrónica MySignals HW, así como la integración y programación de sensores biométricos con el controlador y periféricos de visualización de la información. El sistema cuenta con la capacidad necesaria de comunicación para que, a través de la red se envíen los datos obtenidos como resultado del proceso de lectura de los sensores a la base de datos en el servidor IoT, lo que permite saber desde cualquier lugar, las lecturas medicas tomadas del paciente por medio de dispositivos inteligentes a través de la App o portal web. Los sensores utilizados y probados en esta investigación son: Oximetría (SpO2 y Pulso), Temperatura corporal, frecuencia respiratoria y tensión o presión arterial.


The prototype and verification tests of the necessary operation in a medical equipment were developed, in order to obtain reliable information from said device. Research was focused on the area of ​​applied technology in the health sector, developing a local and remote monitoring system of vital signs of patients using IoT technology and Smartphone smart devices as a basis. For this, an Android App was designed, a biomedical electronic device based on the MySignals HW electronic card, as well as the integration and programming of biometric sensors with the controller and information display peripherals. The system has the necessary communication capacity so that, through the network, the data obtained as a result of the sensor reading process are sent to the database on the IoT server, which allows to know from anywhere, the Medical readings taken from the patient through smart devices through the App or web portal. The sensors used and tested in this investigation are: Oximetry (SpO2 and Pulse), Body temperature, respiratory rate and blood pressure or pressure.


Subject(s)
Blood Pressure , Arterial Pressure , Internet of Things , Patients , Pressure , Pulse , Body Temperature , Oximetry , Equipment and Supplies , Vital Signs , Respiratory Rate , Telemonitoring
16.
E-Cienc. inf ; 9(1): 152-182, ene.-jun. 2019. tab, graf
Article in English | LILACS, SaludCR | ID: biblio-1089861

ABSTRACT

ABSTRACT Over the years, technological advancements have led to rapid growth of smart environments (offices, homes, cities, etc.). The increase of intelligent environments suggests the interconnectivity of applications and the use of the Internet. For this reason, arise what is known as the Internet of Things (IoT). The expansion of the IoT concept gives access to the Internet of Nano Things (IoNT). A new communication networks paradigm based on nanotechnology and IoT, in other words, a paradigm with the capacity to interconnect nano-scale devices through existing networks. This new paradigm so-called IoNT is presented to the world as an option for various fields of application. Therefore, new challenges and research opportunities have arisen. Consequently, this work aims to investigate state of the art and analyze trends for the use of IoNT, its application and future challenges in different fields of social interest, because IoNT is presented as an option for research with the capacities needed to get involved in many fields of social welfare. It is concluded that technologies prevail current IoNT literature, applications are focused on health care, and there is no international standardization regarding privacy, security or architecture of nano-networks.


RESUMEN A través de los años, los avances tecnológicos han llevado a un rápido crecimiento de entornos inteligentes (oficinas, hogares, ciudades, etc.). El aumento de entornos inteligentes sugiere la interconectividad de las aplicaciones y el uso de la Internet. Por esta razón, surge lo que se conoce como Internet de las cosas (IoT, por sus siglas en inglés). La ampliación del concepto IoT brinda acceso a la Internet de las nano cosas (IoNT, por sus siglas en inglés), un nuevo paradigma de redes de comunicación basado en nanotecnología y IoT, en otras palabras, un paradigma con la capacidad de interconectar dispositivos a nano escala a través de redes existentes. Este nuevo paradigma denominado IoNT se presenta al mundo como una opción para diversos campos de aplicación. Por lo tanto, surgen nuevos desafíos y oportunidades de investigación. En consecuencia, este trabajo tiene como objetivo investigar el estado del arte y analizar las tendencias para el uso de IoNT, su aplicación y los desafíos futuros en diferentes campos de interés social, debido a que IoNT se presenta como una opción para la investigación con las capacidades necesarias para involucrarse en muchos campos del bienestar social. Se concluye que la literatura actual de IoNT está prevalecida por las tecnologías, las aplicaciones se enfocan en el cuidado de la salud y no se dispone de una estandarización internacional en cuanto a la privacidad, seguridad o la arquitectura de las nano redes.


Subject(s)
Computer Communication Networks , Enacted Statutes , Nanotechnology , Internet of Things/trends , Health , Nanostructures , Internet Access , Internet Use
17.
Rev. Kairós ; 21(3): 373-388, set. 2018. ilus
Article in English | LILACS, INDEXPSI | ID: biblio-1021677

ABSTRACT

The aging process is becoming a reality worldwide. This process affects society in many levels, including the development of new products, services and healthcare solutions. Initiatives such as the Active and Assisted Living Programme in Europe develop state of the art research and solutions to address age-related issues and serve as example to countries like Brazil, which experience an accelerated aging process and need to develop agerelated solutions at an even faster rhythm.


El proceso de envejecimiento se está convirtiendo en una realidad a nivel mundial. Este proceso afecta a la sociedad en muchos niveles, incluido el desarrollo de nuevos productos, servicios y soluciones de atención médica. Iniciativas como el Programa de Vida Activa y Asistida en Europa desarrollan investigaciones y soluciones de vanguardia para abordar problemas relacionados con la edad y sirven como ejemplo para países como Brasil, que experimentan un proceso de envejecimiento acelerado y necesitan desarrollar soluciones relacionadas con la edad a nivel global. Ritmo aún más rápido.


O processo de envelhecimento está se tornando uma realidade em todo o mundo. Este processo afeta a sociedade em muitos níveis, incluindo o desenvolvimento de novos produtos, serviços e soluções de saúde. Iniciativas como o Programa Viver Ativo e Assistido na Europa desenvolvem pesquisas e soluções de ponta para abordar questões relacionadas à idade e servem como exemplo para países como o Brasil, que experimentam um processo acelerado de envelhecimento e precisam desenvolver soluções relacionadas à idade em um nível mais avançado e em ritmo ainda mais rápido.


Subject(s)
Humans , Male , Female , Healthy Aging , Health Services Needs and Demand , Delivery of Health Care , Health Sciences, Technology, and Innovation Management , Internet of Things
18.
E-Cienc. inf ; 8(1): 83-100, ene.-jun. 2018. graf
Article in English | LILACS, SaludCR | ID: biblio-1089838

ABSTRACT

Abstract Currently, the Information and Communication Technology (ICT) and related topics such as Internet of Things (IoT) have an essential influence on all elements of human life. IoT as a prevalent phenomenon is transforming daily life by the usage of the smart features of Radio Frequency Identification (RFID) and Wireless Sensor Network (WSN) technologies. As IoT progresses, it has extended in size and dimension, improving many contexts of the society; such as, the traditional library system. This research proposes an implementation framework for employing the IoT in renovating the conventional library systems to become smart online library schemes. The IoT enables connectivity of a physical object (such as a book or other text typologies) with the real-time communication technology by using the RFID tags and tiny sensors. The continuous monitoring of books in real time and the tracking of labeled objects geographically are some desirable characteristics that result from the use of the IoT tags. These characteristics of IoT allow implementing an online library supply chain, integrating it with different types of technologies such as data bases, data gathering, and cloud systems. The Internet of Things can also provide a global linking of a huge number of libraries and universities in real time, all the time. It is concluded that the IoT-based library management systems will be a promising structure that can play a vital role in the human data organization and knowledge access by helping researchers, designers, and administrators in a more efficient and smarter manner.


Resumen En la actualidad, las Tecnologías de Información y Comunicación (TIC) y asuntos relacionados, tales como el Internet de las Cosas (IoT, por sus siglas en inglés), tiene una influencia decisiva en todos los aspectos de la vida humana. IoT como fenómeno dominante es la transformación de la vida diaria mediante el uso de las funciones inteligentes como la de Identificación por Radio Frecuencia (RFID, por sus siglas en inglés) y las Redes de Tecnología de Sensores Inalámbricos (WSN, por sus siglas en inglés). Conforme el IoT avanza, se amplía en tamaño y dimensiones, mejorando muchos de los contextos de la sociedad; tales como, el sistema tradicional de biblioteca. Esta investigación propone un marco de ejecución sobre el empleo del IoT con el fin de renovar la estructura y esquema convencional de las bibliotecas a sistemas inteligentes en línea. El IoT permite la conectividad en tiempo real de un objeto físico (como un libro o cualquier otro tipo de texto) mediante el uso de las etiquetas RFID y sensores diminutos. El monitoreo continuo de los libros en tiempo real y la localización de objetos de manera geográfica son algunas de las características que se derivan del uso de las etiquetas de IoT. Estas características de IoT permiten la implementación de una línea de bibliotecas por medio de una cadena de suministros, la integración con diferentes tipos de tecnologías como la base de datos, la recopilación de datos y sistemas en la nube. El Internet de las Cosas también ofrece una panorámica de la vinculación entre el gran número de universidades y bibliotecas en el mundo en tiempo real, todo el tiempo. Se concluye que el implementar el IoT en sistemas de gestión de bibliotecas sería una estructura prometedora que puede jugar un papel vital en la organización de conocimientos del ser humano y en el acceso a informaciones para ayudar a investigadores, diseñadores y administradores en una manera más eficiente e inteligente.


Subject(s)
Library Automation , Access to Information , Libraries, Digital , Internet of Things , Information Services
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