Implementación de un electromiógrafo con interfaz USB

This paper describes the design and implementation of electromyographic equipment that permits capturing and processing the muscle-electric signals sensed on skin surface. This equipment consists of a signal-conditioning stage (amplification and filtering), followed by analog-to-digital conversion,...

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Main Authors: Wilson Fabián Urbina Rojas, Fernando Martínez Santa
Format: Article
Language:Spanish
Published: Universidad Distrital Francisco Jose de Caldas 2012-09-01
Series:Tecnura
Subjects:
Online Access:http://tecnura.udistrital.edu.co/ojs/index.php/revista/article/view/430/434
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author Wilson Fabián Urbina Rojas
Fernando Martínez Santa
author_facet Wilson Fabián Urbina Rojas
Fernando Martínez Santa
author_sort Wilson Fabián Urbina Rojas
collection DOAJ
description This paper describes the design and implementation of electromyographic equipment that permits capturing and processing the muscle-electric signals sensed on skin surface. This equipment consists of a signal-conditioning stage (amplification and filtering), followed by analog-to-digital conversion, signal processing and data transmission using a USB port. Finally, there is a recording system that allows signal visualization through a software application designed using LabView. This device has the advantage of using PSoC microcontrollers, which reduce the use of external components due their “on line” reconfiguration and their capability to process analog and digital signals. As a result, practical and low-cost electromyographic equipment is obtained, achieving the aims set by DIGITI Research Group. These results will be of use in future projects that are expected to result in a user's interface for quadriplegic people.
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spelling doaj.art-b7bfe66ef51f4e7dbe78088f3d0198cb2022-12-22T02:12:28ZspaUniversidad Distrital Francisco Jose de CaldasTecnura0123-921X2248-76382012-09-011633117130Implementación de un electromiógrafo con interfaz USBWilson Fabián Urbina RojasFernando Martínez SantaThis paper describes the design and implementation of electromyographic equipment that permits capturing and processing the muscle-electric signals sensed on skin surface. This equipment consists of a signal-conditioning stage (amplification and filtering), followed by analog-to-digital conversion, signal processing and data transmission using a USB port. Finally, there is a recording system that allows signal visualization through a software application designed using LabView. This device has the advantage of using PSoC microcontrollers, which reduce the use of external components due their “on line” reconfiguration and their capability to process analog and digital signals. As a result, practical and low-cost electromyographic equipment is obtained, achieving the aims set by DIGITI Research Group. These results will be of use in future projects that are expected to result in a user's interface for quadriplegic people.http://tecnura.udistrital.edu.co/ojs/index.php/revista/article/view/430/434reconfigurable architecturesbiomedicalelectrodeselectromyographyfiltersignal processing
spellingShingle Wilson Fabián Urbina Rojas
Fernando Martínez Santa
Implementación de un electromiógrafo con interfaz USB
Tecnura
reconfigurable architectures
biomedical
electrodes
electromyography
filter
signal processing
title Implementación de un electromiógrafo con interfaz USB
title_full Implementación de un electromiógrafo con interfaz USB
title_fullStr Implementación de un electromiógrafo con interfaz USB
title_full_unstemmed Implementación de un electromiógrafo con interfaz USB
title_short Implementación de un electromiógrafo con interfaz USB
title_sort implementacion de un electromiografo con interfaz usb
topic reconfigurable architectures
biomedical
electrodes
electromyography
filter
signal processing
url http://tecnura.udistrital.edu.co/ojs/index.php/revista/article/view/430/434
work_keys_str_mv AT wilsonfabianurbinarojas implementaciondeunelectromiografoconinterfazusb
AT fernandomartinezsanta implementaciondeunelectromiografoconinterfazusb