A new approach to complicated and noisy physiological waveforms analysis: peripheral venous pressure waveform as an example.

We introduce a recently developed nonlinear-type time-frequency analysis tool, synchrosqueezing transform (SST), to quantify complicated and noisy physiological waveform that has time-varying amplitude and frequency. We apply it to analyze a peripheral venous pressure (PVP) signal recorded during a...

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Publicado en:Journal of Clinical Monitoring & Computing Vol. 35; no. 3; pp. 637 - 654
Autores principales: Wu, Hau-Tieng, Alian, Aymen, Shelley, Kirk
Formato: Journal Article
Publicado: Springer Nature May2021
Acceso en línea:Ver este registro en EBSCOhost
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        atl: A new approach to complicated and noisy physiological waveforms analysis: peripheral venous pressure waveform as an example.
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          Wu, Hau-Tieng
          Alian, Aymen
          Shelley, Kirk
        affil: Department of Mathematics and Department of Statistical Science, Duke University, 140 Science Drive, 27705, Durham, NC, USA
      sug:
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          Heart Rate
          Venous Pressure
      ab: We introduce a recently developed nonlinear-type time-frequency analysis tool, synchrosqueezing transform (SST), to quantify complicated and noisy physiological waveform that has time-varying amplitude and frequency. We apply it to analyze a peripheral venous pressure (PVP) signal recorded during a seven hours aortic valve replacement procedure. In addition to showing the captured dynamics, we also quantify how accurately we can estimate the instantaneous heart rate from the PVP signal.
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      doctype: Journal Article
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    language: English
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