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Detection of a Stroke Volume Decrease by Machine-Learning Algorithms Based on Thoracic Bioimpedance in Experimental Hypovolaemia

delete2022-07-06
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M
Matthias Stetzuhn
T
Timo Tigges
A
Alexandru Pielmuş
C
Claudia Spies
C
Charlotte Middel
M
Michael Klum
S
Sebastian Zaunseder
R
Reinhold Orglmeister
A
Aarne Feldheiser *
DOI:10.3390/s22145066delete
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摘要

摘要

En 中文
Compensated shock and hypovolaemia are frequent conditions that remain clinically undetected and can quickly cause deterioration of perioperative and critically ill patients. Automated, accurate and non-invasive detection methods are needed to avoid such critical situations. In this experimental study, we aimed to create a prediction model for stroke volume index (SVI) decrease based on electrical cardiometry (EC) measurements. Transthoracic echo served as reference for SVI assessment (SVI-TTE). In 30 healthy male volunteers, central hypovolaemia was simulated using a lower body negative pressure (LBNP) chamber. A machine-learning algorithm based on variables of EC was designed. During LBNP, SVI-TTE declined consecutively, whereas the vital signs (arterial pressures and heart rate) remained within normal ranges. Compared to heart rate (AUC: 0.83 (95% CI: 0.73-0.87)) and systolic arterial pressure (AUC: 0.82 (95% CI: 0.74-0.85)), a model integrating EC variables (AUC: 0.91 (0.83-0.94)) showed a superior ability to predict a decrease in SVI-TTE >= 20% (p = 0.013 compared to heart rate, and p = 0.002 compared to systolic blood pressure). Simulated central hypovolaemia was related to a substantial decline in SVI-TTE but only minor changes in vital signs. A model of EC variables based on machine-learning algorithms showed high predictive power to detect a relevant decrease in SVI and may provide an automated, non-invasive method to indicate hypovolaemia and compensated shock.
Keyword:
compensated shock
electrical cardiometry
hypovolaemia
lower body negative pressure chamber
machine learning
prediction model
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Sensors 封面图
Sensors
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3.5
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被引数:
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Berlin Institute of Health
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3.9W
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被引数: 6.6K
F
Free University of Berlin
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被引数: 51
H
Humboldt University of Berlin
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3.2W
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被引数: 47
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