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Textile Sensor Platform (TSP) - development of a textile real-time electrocardiogram

  • Being able to monitor the heart activity of patients during their daily life in a reliable, comfortable and affordable way is one main goal of the personalized medicine. Current wearable solutions lack either on the wearing comfort, the quality and type of the data provided or the price of the device. This paper shows the development of a Textile Sensor Platform (TSP) in the form of an electrocardiogram (ECG)-measuring T-shirt that is able to transmit the ECG signal to a smartphone. The development process includes the selection of the materials, the design of the textile electrodes taking into consideration their electrical characteristics and ergonomy, the integration of the electrodes on the garment and their connection with the embedded electronic part. The TSP is able to transmit a real-time streaming of the ECG-signal to an Android smartphone through Bluetooth Low Energy (BLE). Initial results show a good electrical quality in the textile electrodes and promising results in the capture and transmission of the ECG signal. This is still a working- progress and it is the result of an interdisciplinary master project between the School of Informatics and the School of Textiles & Design of the Reutlingen University.

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Metadaten
Name:Walzer, Thomas; Thies, Christian; Meier, Klaus; Martínez Madrid, Natividad
DOI:https://doi.org/10.1007/978-3-319-78759-6_33
ISBN:978-3-319-78759-6
Erschienen in:Bioinformatics and Biomedical Engineering : 6th International Work-Conference, IWBBIO 2018, Granada, Spain, April 25-27, 2018, proceedings. - Part II. - (Lecture notes in computer science ; 10814)
Publisher:Springer
Place of publication:Cham
Editor:Ignacio Rojas
Document Type:Conference Proceeding
Language:English
Year of Publication:2018
Pagenumber:12
First Page:359
Last Page:370
Catalogue entry:Im Katalog der Hochschule Reutlingen ansehen
Dewey Decimal Classification:004 Informatik
Open Access:Nein
Licence (German):License Logo  Lizenzbedingungen Springer