Noninvasive assessment of blood pressure in rotary blood pump recipients using a novel ultrasonic Doppler method.


Journal

The International journal of artificial organs
ISSN: 1724-6040
Titre abrégé: Int J Artif Organs
Pays: United States
ID NLM: 7802649

Informations de publication

Date de publication:
May 2019
Historique:
pubmed: 12 3 2019
medline: 18 6 2019
entrez: 12 3 2019
Statut: ppublish

Résumé

In rotary blood pump recipients with low blood pressure pulsatility, current oscillometric methods to measure blood pressure are not applicable. The aim of this study was to use ultrasonic Doppler flow measurements to determine blood pressure in this patient population noninvasively. In 28 rotary blood pump recipients, blood pressure was measured three times with the developed Doppler method and compared to the invasive arterial line (n = 15) or to the oscillometric Terumo Elemano BP monitor (n = 13). Blood velocities in the radial artery were recorded by the new Doppler sensor during cuff deflation. A sigmoid curve was fitted to a preprocessed velocity signal and the systolic and mean arterial pressures were determined. A total of 84 measurements were performed, and 17 recordings were visually excluded from further analysis due to obvious artifacts. Both the systolic and mean pressures derived by the Doppler method were in good accordance with the invasively measured pressure (3.7 ± 6.6 mmHg for the systolic and -2.1 ± 7.3 mmHg for the mean pressure). A good agreement between the oscillometric monitor and the Doppler method for the systolic (0.0 ± 6.0 mmHg) and mean (1.0 ± 5.9 mmHg) pressures was observed. In this study, a new Doppler blood pressure measurement system was developed and clinically validated. The novel sensor allows easier placement above the radial artery compared to commercial probes. An algorithm was developed which processes the Doppler signal robustly and is able to determine the systolic as well as the mean arterial blood pressure.

Identifiants

pubmed: 30854909
doi: 10.1177/0391398819833371
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

226-232

Auteurs

Marcus Granegger (M)

1 Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.
2 Biofluid Mechanics Laboratory, Institute for Imaging Science and Computational Modelling in Cardiovascular Medicine, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Bente Thamsen (B)

2 Biofluid Mechanics Laboratory, Institute for Imaging Science and Computational Modelling in Cardiovascular Medicine, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Francesco Moscato (F)

1 Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

Thomas Schlöglhofer (T)

1 Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.
4 Division of Cardiac Surgery, Medical University Vienna, Vienna, Austria.

Christoph Gross (C)

1 Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

Sarah Schneider (S)

2 Biofluid Mechanics Laboratory, Institute for Imaging Science and Computational Modelling in Cardiovascular Medicine, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Michael Röhrich (M)

3 Department of Anaesthesia, Intensive Care Medicine and Pain Medicine, Medical University of Vienna, Vienna, Austria.

Ulrich Kertzscher (U)

2 Biofluid Mechanics Laboratory, Institute for Imaging Science and Computational Modelling in Cardiovascular Medicine, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Daniel Zimpfer (D)

4 Division of Cardiac Surgery, Medical University Vienna, Vienna, Austria.

Klaus Affeld (K)

2 Biofluid Mechanics Laboratory, Institute for Imaging Science and Computational Modelling in Cardiovascular Medicine, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Heinrich Schima (H)

1 Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria.

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Classifications MeSH