Allsop, T.

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orcid::0000-0001-8905-9014
  • Allsop, T. (1)
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Author's Bibliography

Fibre-grating sensors for the measurement of physiological pulsations

Petrović, M. D.; Danicić, A.; Atanasoski, V.; Radosavljević, S.; Prodanović, V.; Miljković, N.; Petrović, J.; Petrović, Dušan; Bojović, Božica; Hadzievski, Lj; Allsop, T.; Lloyd, G.; Webb, D. J.

(IOP Publishing Ltd, Bristol, 2013)

TY  - JOUR
AU  - Petrović, M. D.
AU  - Danicić, A.
AU  - Atanasoski, V.
AU  - Radosavljević, S.
AU  - Prodanović, V.
AU  - Miljković, N.
AU  - Petrović, J.
AU  - Petrović, Dušan
AU  - Bojović, Božica
AU  - Hadzievski, Lj
AU  - Allsop, T.
AU  - Lloyd, G.
AU  - Webb, D. J.
PY  - 2013
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/1702
AB  - Mechanical physiological pulsations are movements of a body surface incited by the movements of muscles in organs inside the body. Here we demonstrate the use of long-period grating sensors in the detection of cardio-vascular pulsations (CVP), in particular apex and carotid pulsations. To calibrate the sensors, we use a mechanical tool designed specifically to measure the sensor response to a localized perturbation at different grating curvatures as working points. From the data we infer the amplitude of the CVP. Together with the electrophysiological signals, the CVP signals obtained from the sensors can provide significant information on heart function which is inaccessible to the electrocardiogram. The low cost and easy handling of the fibre sensors increase their prospects to become the sensors of choice for novel diagnostic devices.
PB  - IOP Publishing Ltd, Bristol
T2  - Physica Scripta
T1  - Fibre-grating sensors for the measurement of physiological pulsations
VL  - T157
DO  - 10.1088/0031-8949/2013/T157/014022
ER  - 
@article{
author = "Petrović, M. D. and Danicić, A. and Atanasoski, V. and Radosavljević, S. and Prodanović, V. and Miljković, N. and Petrović, J. and Petrović, Dušan and Bojović, Božica and Hadzievski, Lj and Allsop, T. and Lloyd, G. and Webb, D. J.",
year = "2013",
abstract = "Mechanical physiological pulsations are movements of a body surface incited by the movements of muscles in organs inside the body. Here we demonstrate the use of long-period grating sensors in the detection of cardio-vascular pulsations (CVP), in particular apex and carotid pulsations. To calibrate the sensors, we use a mechanical tool designed specifically to measure the sensor response to a localized perturbation at different grating curvatures as working points. From the data we infer the amplitude of the CVP. Together with the electrophysiological signals, the CVP signals obtained from the sensors can provide significant information on heart function which is inaccessible to the electrocardiogram. The low cost and easy handling of the fibre sensors increase their prospects to become the sensors of choice for novel diagnostic devices.",
publisher = "IOP Publishing Ltd, Bristol",
journal = "Physica Scripta",
title = "Fibre-grating sensors for the measurement of physiological pulsations",
volume = "T157",
doi = "10.1088/0031-8949/2013/T157/014022"
}
Petrović, M. D., Danicić, A., Atanasoski, V., Radosavljević, S., Prodanović, V., Miljković, N., Petrović, J., Petrović, D., Bojović, B., Hadzievski, L., Allsop, T., Lloyd, G.,& Webb, D. J.. (2013). Fibre-grating sensors for the measurement of physiological pulsations. in Physica Scripta
IOP Publishing Ltd, Bristol., T157.
https://doi.org/10.1088/0031-8949/2013/T157/014022
Petrović MD, Danicić A, Atanasoski V, Radosavljević S, Prodanović V, Miljković N, Petrović J, Petrović D, Bojović B, Hadzievski L, Allsop T, Lloyd G, Webb DJ. Fibre-grating sensors for the measurement of physiological pulsations. in Physica Scripta. 2013;T157.
doi:10.1088/0031-8949/2013/T157/014022 .
Petrović, M. D., Danicić, A., Atanasoski, V., Radosavljević, S., Prodanović, V., Miljković, N., Petrović, J., Petrović, Dušan, Bojović, Božica, Hadzievski, Lj, Allsop, T., Lloyd, G., Webb, D. J., "Fibre-grating sensors for the measurement of physiological pulsations" in Physica Scripta, T157 (2013),
https://doi.org/10.1088/0031-8949/2013/T157/014022 . .
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