Fonocardiógrafo com tecnologia móvel

Bibliographic Details
Main Author: Silva, Gisllaine Celina da
Publication Date: 2016
Format: Bachelor thesis
Language: por
Source: Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT))
Download full: http://repositorio.utfpr.edu.br/jspui/handle/1/16179
Summary: Cardiac auscultation is a technique widely used for state diagnosis of heart valves, helping to identify possible pathologies, but it has some limitations and because of this it has been used in conjunction with other techniques such as phonocardiogram and electrocardiogram. The phonocardiograph performs the monitoring of cardiac sounds, allowing the visualization of signals, and making possible to have a more precise diagnosis of the state of the heart valves. This project aims to develop a device that performs the acquisition and monitoring of cardiac signals. It was necessary to develop a circuit comprising a module for acquisition and conditioning of the signal, a control module, a communication module and the application to enable the visualization of cardiac signals. The signal acquisition is performed using an electret microphone followed by a filtration state, formed by a low-pass filter and high-pass to remove noise and to limit the frequency range of interest. Then the signal is amplified and then passes through an adder and inverter circuit, which aims to add an offset to the signal and cause it to be in the range of 0 to 5V, so it can be digitally processed the same way in ATMEGA328P. The microcontroller has two digital filters and signal encoding implemented, sending data to the Bluetooth module HC-05, which performs the communication between the microcontroller and application. The application was developed in the Android Studio software, using Java programming language. Simulations and tests were performed in all stages of development of the prototype. The results were satisfactory and meet what was expected. However, it was not possible to use the sampling frequency required to cover the full spectrum of heart sounds, which is restricted due to the real time exhibition of the graph, despite of that the frequency range used allows the identification of the first and second heart sound. The hardware worked properly and the cardiac signal displayed on the cell is similar to those found in the literature, being within the expected range and frequency.
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spelling Fonocardiógrafo com tecnologia móvelPhonocardiograph with mobile technologyCoração - SonsFonocardiografiaDiagnósticoHeart - SoundsPhonocardiographyDiagnosisCNPQ::ENGENHARIAS::ENGENHARIA ELETRICACardiac auscultation is a technique widely used for state diagnosis of heart valves, helping to identify possible pathologies, but it has some limitations and because of this it has been used in conjunction with other techniques such as phonocardiogram and electrocardiogram. The phonocardiograph performs the monitoring of cardiac sounds, allowing the visualization of signals, and making possible to have a more precise diagnosis of the state of the heart valves. This project aims to develop a device that performs the acquisition and monitoring of cardiac signals. It was necessary to develop a circuit comprising a module for acquisition and conditioning of the signal, a control module, a communication module and the application to enable the visualization of cardiac signals. The signal acquisition is performed using an electret microphone followed by a filtration state, formed by a low-pass filter and high-pass to remove noise and to limit the frequency range of interest. Then the signal is amplified and then passes through an adder and inverter circuit, which aims to add an offset to the signal and cause it to be in the range of 0 to 5V, so it can be digitally processed the same way in ATMEGA328P. The microcontroller has two digital filters and signal encoding implemented, sending data to the Bluetooth module HC-05, which performs the communication between the microcontroller and application. The application was developed in the Android Studio software, using Java programming language. Simulations and tests were performed in all stages of development of the prototype. The results were satisfactory and meet what was expected. However, it was not possible to use the sampling frequency required to cover the full spectrum of heart sounds, which is restricted due to the real time exhibition of the graph, despite of that the frequency range used allows the identification of the first and second heart sound. The hardware worked properly and the cardiac signal displayed on the cell is similar to those found in the literature, being within the expected range and frequency.A ausculta cardíaca é uma técnica muito utilizada para diagnósticos do estado das valvas cardíacas, auxiliando na identificação de possíveis patologias. Porém esta técnica possui algumas limitações. Devido a isso ela tem sido utilizada em conjunto com outras técnicas como o fonocardiograma e o eletrocardiograma. O fonocardiógrafo realiza o monitoramento dos sons cardíacos, possibilitando a visualização dos sinais correspondentes aos sons cardíacos. Com isso é possível ter um diagnóstico mais preciso do estado das valvas cardíacas. Este projeto tem como objetivo desenvolver um dispositivo que realize a aquisição e monitoramento dos sons cardíacos. Para isso foi necessário desenvolver um circuito constituído por um módulo de aquisição e condicionamento do sinal, um módulo de controle, um módulo de comunicação e o aplicativo para possibilitar a visualização dos sinais cardíacos. A aquisição do som é realizada através de um microfone de eletreto, seguindo para uma etapa de filtragem, formada por um filtro passa-baixa e um passa-alta para eliminar ruídos e limitar a faixa de frequência de interesse. Então, o som é amplificado e posteriormente passa por um circuito somador e inversor, que tem como objetivo adicionar um offset ao sinal e fazer com que ele fique na faixa de 0 a 5 V, para poder ser feito o processamento digital do mesmo no ATMEGA328P. No microcontrolador foi implementado dois filtros digitais e a codificação do sinal, então o mesmo é enviado para o módulo Bluetooth® HC-05, que realiza a comunicação entre o microcontrolador e o aplicativo. O aplicativo foi desenvolvido no software Android Studio, na linguagem de programação JAVA. Foram realizados simulações e testes em todas as etapas do desenvolvimento do protótipo. Os resultados obtidos foram satisfatórios e atendem o que foi esperado. Entretanto, não foi possível utilizar a frequência de amostragem necessária para abranger todo o espectro de sons cardíacos, sendo esta restringida pela exibição em tempo real do gráfico. Ainda assim, a faixa de frequência utilizada permite a identificação da primeira e segunda bulhas cardíacas. O hardware funcionou corretamente e o sinal cardíaco visualizado no celular é semelhante aos encontrados na bibliografia, estando dentro da amplitude e frequência esperados.Universidade Tecnológica Federal do ParanáPonta GrossaBrasilDepartamento Acadêmico de EletrônicaEngenharia EletrônicaUTFPROkida, SergioOkida, SergioStevan Junior, Sergio LuizAgostini Junior, EloiReis, Elise Souza dos SantosSilva, Gisllaine Celina da2020-11-19T19:34:06Z2020-11-19T19:34:06Z2016-11-16info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/bachelorThesisapplication/pdfSILVA, Gisllaine Celina da. Fonocardiógrafo com tecnologia móvel. 2016. 88 f. Trabalho de Conclusão de Curso (Graduação) - Universidade Tecnológica Federal do Paraná, Ponta Grossa, 2016.http://repositorio.utfpr.edu.br/jspui/handle/1/16179porinfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT))instname:Universidade Tecnológica Federal do Paraná (UTFPR)instacron:UTFPR2020-11-19T19:34:06Zoai:repositorio.utfpr.edu.br:1/16179Repositório InstitucionalPUBhttp://repositorio.utfpr.edu.br:8080/oai/requestriut@utfpr.edu.br || sibi@utfpr.edu.bropendoar:2020-11-19T19:34:06Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT)) - Universidade Tecnológica Federal do Paraná (UTFPR)false
dc.title.none.fl_str_mv Fonocardiógrafo com tecnologia móvel
Phonocardiograph with mobile technology
title Fonocardiógrafo com tecnologia móvel
spellingShingle Fonocardiógrafo com tecnologia móvel
Silva, Gisllaine Celina da
Coração - Sons
Fonocardiografia
Diagnóstico
Heart - Sounds
Phonocardiography
Diagnosis
CNPQ::ENGENHARIAS::ENGENHARIA ELETRICA
title_short Fonocardiógrafo com tecnologia móvel
title_full Fonocardiógrafo com tecnologia móvel
title_fullStr Fonocardiógrafo com tecnologia móvel
title_full_unstemmed Fonocardiógrafo com tecnologia móvel
title_sort Fonocardiógrafo com tecnologia móvel
author Silva, Gisllaine Celina da
author_facet Silva, Gisllaine Celina da
author_role author
dc.contributor.none.fl_str_mv Okida, Sergio
Okida, Sergio
Stevan Junior, Sergio Luiz
Agostini Junior, Eloi
Reis, Elise Souza dos Santos
dc.contributor.author.fl_str_mv Silva, Gisllaine Celina da
dc.subject.por.fl_str_mv Coração - Sons
Fonocardiografia
Diagnóstico
Heart - Sounds
Phonocardiography
Diagnosis
CNPQ::ENGENHARIAS::ENGENHARIA ELETRICA
topic Coração - Sons
Fonocardiografia
Diagnóstico
Heart - Sounds
Phonocardiography
Diagnosis
CNPQ::ENGENHARIAS::ENGENHARIA ELETRICA
description Cardiac auscultation is a technique widely used for state diagnosis of heart valves, helping to identify possible pathologies, but it has some limitations and because of this it has been used in conjunction with other techniques such as phonocardiogram and electrocardiogram. The phonocardiograph performs the monitoring of cardiac sounds, allowing the visualization of signals, and making possible to have a more precise diagnosis of the state of the heart valves. This project aims to develop a device that performs the acquisition and monitoring of cardiac signals. It was necessary to develop a circuit comprising a module for acquisition and conditioning of the signal, a control module, a communication module and the application to enable the visualization of cardiac signals. The signal acquisition is performed using an electret microphone followed by a filtration state, formed by a low-pass filter and high-pass to remove noise and to limit the frequency range of interest. Then the signal is amplified and then passes through an adder and inverter circuit, which aims to add an offset to the signal and cause it to be in the range of 0 to 5V, so it can be digitally processed the same way in ATMEGA328P. The microcontroller has two digital filters and signal encoding implemented, sending data to the Bluetooth module HC-05, which performs the communication between the microcontroller and application. The application was developed in the Android Studio software, using Java programming language. Simulations and tests were performed in all stages of development of the prototype. The results were satisfactory and meet what was expected. However, it was not possible to use the sampling frequency required to cover the full spectrum of heart sounds, which is restricted due to the real time exhibition of the graph, despite of that the frequency range used allows the identification of the first and second heart sound. The hardware worked properly and the cardiac signal displayed on the cell is similar to those found in the literature, being within the expected range and frequency.
publishDate 2016
dc.date.none.fl_str_mv 2016-11-16
2020-11-19T19:34:06Z
2020-11-19T19:34:06Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/bachelorThesis
format bachelorThesis
status_str publishedVersion
dc.identifier.uri.fl_str_mv SILVA, Gisllaine Celina da. Fonocardiógrafo com tecnologia móvel. 2016. 88 f. Trabalho de Conclusão de Curso (Graduação) - Universidade Tecnológica Federal do Paraná, Ponta Grossa, 2016.
http://repositorio.utfpr.edu.br/jspui/handle/1/16179
identifier_str_mv SILVA, Gisllaine Celina da. Fonocardiógrafo com tecnologia móvel. 2016. 88 f. Trabalho de Conclusão de Curso (Graduação) - Universidade Tecnológica Federal do Paraná, Ponta Grossa, 2016.
url http://repositorio.utfpr.edu.br/jspui/handle/1/16179
dc.language.iso.fl_str_mv por
language por
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Tecnológica Federal do Paraná
Ponta Grossa
Brasil
Departamento Acadêmico de Eletrônica
Engenharia Eletrônica
UTFPR
publisher.none.fl_str_mv Universidade Tecnológica Federal do Paraná
Ponta Grossa
Brasil
Departamento Acadêmico de Eletrônica
Engenharia Eletrônica
UTFPR
dc.source.none.fl_str_mv reponame:Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT))
instname:Universidade Tecnológica Federal do Paraná (UTFPR)
instacron:UTFPR
instname_str Universidade Tecnológica Federal do Paraná (UTFPR)
instacron_str UTFPR
institution UTFPR
reponame_str Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT))
collection Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT))
repository.name.fl_str_mv Repositório Institucional da UTFPR (da Universidade Tecnológica Federal do Paraná (RIUT)) - Universidade Tecnológica Federal do Paraná (UTFPR)
repository.mail.fl_str_mv riut@utfpr.edu.br || sibi@utfpr.edu.br
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