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Schmid, M; Prettenthaler, H; Weger, C; Smolle, KH.
Evaluation of a novel automated non-invasive pulse pressure variation algorithm.
Comput Biol Med. 2013; 43(10):1583-1589
Doi: 10.1016/j.compbiomed.2013.07.020
Web of Science
PubMed
FullText
FullText_MUG
- Führende Autor*innen der Med Uni Graz
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Smolle Karl-Heinz
- Co-Autor*innen der Med Uni Graz
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Prettenthaler Helga
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Weger Christian
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- Abstract:
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In mechanically ventilated patients, Pulse Pressure Variation (PPV) has been shown to be a useful parameter to guide fluid management. We evaluated a real-time automated PPV-algorithm by comparing it to manually calculated PPV-values. In 10 critically ill patients, blood pressure was measured invasively (IBP) and non-invasively (CNAP(®) Monitor, CNSystems Medizintechnik, Austria). PPV was determined manually and compared to automated PPV values: PPVmanIBP vs. PPVautoIBP was -0.19 ± 1.65% (mean bias ± standard deviation), PPVmanCNAP vs. PPVautoCNAP was -1.02 ± 2.03% and PPVautoCNAP vs. PPVmanIBP was -2.10 ± 3.14%, suggesting that the automated CNAP(®) PPV-algorithm works well on both blood pressure waveforms but needs further clinical evaluation.
© 2013 Elsevier Ltd. All rights reserved.
- Find related publications in this database (using NLM MeSH Indexing)
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Adult -
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Algorithms -
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Automation - instrumentation Automation - methods
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Blood Pressure - physiology
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Blood Pressure Determination - instrumentation Blood Pressure Determination - methods
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Critical Illness -
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Female -
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Fingers - blood supply Fingers - physiology
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Humans -
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Male -
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Middle Aged -
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Monitoring, Physiologic - instrumentation Monitoring, Physiologic - methods
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Reproducibility of Results -
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Respiration, Artificial -
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Signal Processing, Computer-Assisted -
- Find related publications in this database (Keywords)
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Pulse pressure variation
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Fluid management
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Continuous non-invasive arterial blood
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pressure monitoring
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Mechanical ventilation
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Vascular unloading
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CNAP (R) Monitor 500