Biomedical signal processing and modeling in cardiovascular systems

This article revisits the subject of short-term heart-rate and arterial-pressure variability from the perspective of model structures that can be useful in defining signal processing algorithms. We draw a general scheme of the oscillation sources and interactions that contribute to cardiovascular co...

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Published inCritical reviews in biomedical engineering Vol. 30; no. 1-3; p. 55
Main Authors Baselli, Giuseppe, Caiani, Enrico, Porta, Alberto, Montano, Nicola, Signorini, Maria Gabriella, Cerutti, Sergio
Format Journal Article
LanguageEnglish
Published United States 2002
Subjects
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ISSN0278-940X
DOI10.1615/CritRevBiomedEng.v30.i123.40

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Abstract This article revisits the subject of short-term heart-rate and arterial-pressure variability from the perspective of model structures that can be useful in defining signal processing algorithms. We draw a general scheme of the oscillation sources and interactions that contribute to cardiovascular control mechanisms and highlight the elements that were considered in different modeling works. The origin, superposition, and interaction of respiratory high-frequency (HF) and vasomotor low-frequency (LF) rhythms is presented as the integration of supraspinal and spinal circuits, vasomotor activity, and pressure control loops. We analyze in detail the necessity of considering all relevant interactions for the algorithms designed to estimate the baroreflex sensitivity. We also pinpoint the components of cardiorespiratory coupling in relation to the analysis of data from the acoustic quantification of the left ventricular volume. Finally, we analyze the tendency to produce complex behaviors even in extremely simplified systems involving interactions between oscillatory mechanisms.
AbstractList This article revisits the subject of short-term heart-rate and arterial-pressure variability from the perspective of model structures that can be useful in defining signal processing algorithms. We draw a general scheme of the oscillation sources and interactions that contribute to cardiovascular control mechanisms and highlight the elements that were considered in different modeling works. The origin, superposition, and interaction of respiratory high-frequency (HF) and vasomotor low-frequency (LF) rhythms is presented as the integration of supraspinal and spinal circuits, vasomotor activity, and pressure control loops. We analyze in detail the necessity of considering all relevant interactions for the algorithms designed to estimate the baroreflex sensitivity. We also pinpoint the components of cardiorespiratory coupling in relation to the analysis of data from the acoustic quantification of the left ventricular volume. Finally, we analyze the tendency to produce complex behaviors even in extremely simplified systems involving interactions between oscillatory mechanisms.
Author Montano, Nicola
Caiani, Enrico
Signorini, Maria Gabriella
Baselli, Giuseppe
Porta, Alberto
Cerutti, Sergio
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/12650286$$D View this record in MEDLINE/PubMed
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Snippet This article revisits the subject of short-term heart-rate and arterial-pressure variability from the perspective of model structures that can be useful in...
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StartPage 55
SubjectTerms Animals
Biomedical Engineering - instrumentation
Biomedical Engineering - methods
Biomedical Technology
Cardiovascular System
Humans
Models, Cardiovascular
Signal Processing, Computer-Assisted
Title Biomedical signal processing and modeling in cardiovascular systems
URI https://www.ncbi.nlm.nih.gov/pubmed/12650286
Volume 30
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