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1.
Biomed Opt Express ; 5(8): 2537-47, 2014 Aug 01.
Artigo em Inglês | MEDLINE | ID: mdl-25136484

RESUMO

In this paper, a textile-based sensing principle for long term photopletysmography (PPG) monitoring is presented. Optical fibers were embroidered into textiles such that out-coupling and in-coupling of light was possible. The "light-in light-out" properties of the textile enabled the spectroscopic characterization of human tissue. For the optimization of the textile sensor, three different carrier fabrics and different fiber modifications were compared. The sample with best light coupling efficiency was successfully used to measure heart rate and SpO2 values of a subject. The latter was determined by using a modified Beer-Lambert law and measuring the light attenuation at two different wavelengths (632 nm and 894 nm). Moreover, the system was adapted to work in reflection mode which makes the sensor more versatile. The measurements were additionally compared with commercially available system and showed good correlation.

2.
Sensors (Basel) ; 14(7): 13088-101, 2014 Jul 21.
Artigo em Inglês | MEDLINE | ID: mdl-25051033

RESUMO

In this paper, a textile-based respiratory sensing system is presented. Highly flexible polymeric optical fibres (POFs) that react to applied pressure were integrated into a carrier fabric to form a wearable sensing system. After the evaluation of different optical fibres, different setups were compared. To demonstrate the feasibility of such a wearable sensor, the setup featuring the best performance was placed on the human torso, and thus it was possible to measure the respiratory rate. Furthermore, we show that such a wearable system enables to keep track of the way of breathing (diaphragmatic, upper costal and mixed) when the sensor is placed at different positions of the torso. A comparison of the results with the output of some commercial respiratory measurements devices confirmed the utility of such a monitoring device.


Assuntos
Tecnologia de Fibra Óptica/instrumentação , Monitorização Ambulatorial/instrumentação , Monitorização Fisiológica/instrumentação , Taxa Respiratória/fisiologia , Adulto , Desenho de Equipamento/instrumentação , Humanos , Masculino , Fibras Ópticas , Respiração , Têxteis
3.
Sensors (Basel) ; 13(9): 11956-68, 2013 Sep 09.
Artigo em Inglês | MEDLINE | ID: mdl-24021967

RESUMO

In this paper, different polymer optical fibres for applications in force sensing systems in textile fabrics are reported. The proposed method is based on the deflection of the light in fibre waveguides. Applying a force on the fibre changes the geometry and affects the wave guiding properties and hence induces light loss in the optical fibre. Fibres out of three different elastic and transparent copolymer materials were successfully produced and tested. Moreover, the influence of the diameter on the sensing properties was studied. The detectable force ranges from 0.05 N to 40 N (applied on 3 cm of fibre length), which can be regulated with the material and the diameter of the fibre. The detected signal loss varied from 0.6% to 78.3%. The fibres have attenuation parameters between 0.16-0.25 dB/cm at 652 nm. We show that the cross-sensitivies to temperature, strain and bends are low. Moreover, the high yield strength (0.0039-0.0054 GPa) and flexibility make these fibres very attractive candidates for integration into textiles to form wearable sensors, medical textiles or even computing systems.


Assuntos
Manometria/instrumentação , Fibras Ópticas , Polímeros/química , Refratometria/instrumentação , Transdutores , Módulo de Elasticidade , Desenho de Equipamento , Análise de Falha de Equipamento , Teste de Materiais , Estresse Mecânico , Resistência à Tração
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