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Article

Plethysmography System to Monitor the Jugular Venous Pulse: A Feasibility Study

1
Department of Cybernetics and Biomedical Engineering, VSB–Technical University of Ostrava, 17. Listopadu 2172/15, 70800 Ostrava, Czech Republic
2
Department of Physics and Earth Sciences, University of Ferrara, Via Saragat 1, 44122 Ferrara, Italy
3
Vascular Diseases Center, Department of Translational Medicine, University of Ferrara, Via Aldo Moro 4, 44124 Ferrara, Italy
4
Section of Ferrara, National Institute for Nuclear Physics (INFN), Via Saragat 1, 44122 Ferrara, Italy
*
Author to whom correspondence should be addressed.
Diagnostics 2021, 11(12), 2390; https://doi.org/10.3390/diagnostics11122390
Submission received: 12 November 2021 / Revised: 6 December 2021 / Accepted: 14 December 2021 / Published: 18 December 2021
(This article belongs to the Special Issue Biomarkers of Vascular Diseases 2.0)

Abstract

Cerebral venous outflow is investigated in the diagnosis of heart failure through the monitoring of jugular venous pulse, an indicator to assess cardiovascular diseases. The jugular venous pulse is a weak signal stemming from the lying internal jugular vein and often invasive methodologies requiring surgery are mandatory to detect it. Jugular venous pulse can also be extrapolated via the ultrasound technique, but it requires a qualified healthcare operator to perform the examination. In this work, a wireless, user-friendly, wearable device for plethysmography is developed to investigate the possibility of monitoring the jugular venous pulse non-invasively. The proposed device can monitor the jugular venous pulse and the electrocardiogram synchronously. To study the feasibility of using the proposed device to detect physiological variables, several measurements were carried out on healthy subjects by considering three different postures: supine, sitting, and upright. Data acquired in the experiment were properly filtered to highlight the cardiac oscillation and remove the breathing contribution, which causes a considerable shift in the amplitude of signals. To evaluate the proper functioning of the wearable device for plethysmography, a comparison with the ultrasound technique was carried out. As a satisfactory result, the acquired signals resemble the typical jugular venous pulse waveforms found in literature.
Keywords: jugular venous pulse; internal jugular vein; capacitive strain gauge; plethysmography; electrocardiography; wearable device jugular venous pulse; internal jugular vein; capacitive strain gauge; plethysmography; electrocardiography; wearable device

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MDPI and ACS Style

Proto, A.; Conti, D.; Menegatti, E.; Taibi, A.; Gadda, G. Plethysmography System to Monitor the Jugular Venous Pulse: A Feasibility Study. Diagnostics 2021, 11, 2390. https://doi.org/10.3390/diagnostics11122390

AMA Style

Proto A, Conti D, Menegatti E, Taibi A, Gadda G. Plethysmography System to Monitor the Jugular Venous Pulse: A Feasibility Study. Diagnostics. 2021; 11(12):2390. https://doi.org/10.3390/diagnostics11122390

Chicago/Turabian Style

Proto, Antonino, Daniele Conti, Erica Menegatti, Angelo Taibi, and Giacomo Gadda. 2021. "Plethysmography System to Monitor the Jugular Venous Pulse: A Feasibility Study" Diagnostics 11, no. 12: 2390. https://doi.org/10.3390/diagnostics11122390

APA Style

Proto, A., Conti, D., Menegatti, E., Taibi, A., & Gadda, G. (2021). Plethysmography System to Monitor the Jugular Venous Pulse: A Feasibility Study. Diagnostics, 11(12), 2390. https://doi.org/10.3390/diagnostics11122390

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