Abstract
Adaptive identification systems focus on dynamical approaches based on the observed data from an experiment and/or clinical data. These systems establish a relationship between an input (arterial or vein instantaneous pressure) and an output (instantaneous arterial or vein diameter). Several dynamics relationships and applications can be established because of this adaptive identification as an arterial dynamic range (frequency response), biomechanical behavior of cryopreserved arteries, regional differences in veins as artery substitution, role of vascular smooth muscle in human hypertension and time invariance in the biomechanics of wall arteries. The aim of this review is to summarize some of those relevant results obtained from adaptive filter identification in cardiovascular dynamics research and clinical evaluation.
Keywords: Adaptive filtering, system identification, arteries, veins, circulation, cryopreservation, hypertension.
Graphical Abstract
Current Hypertension Reviews
Title:Adaptive Filtering of the Arterial Wall: Frequency Response and Dynamical Parameters: Clinical Evaluation
Volume: 14 Issue: 2
Author(s): Franco Pessana*Ramiro Sanchez
Affiliation:
- Information Technology Department, Engineering and Exact Sciences Faculty, Favaloro University, Buenos Aires,Argentina
Keywords: Adaptive filtering, system identification, arteries, veins, circulation, cryopreservation, hypertension.
Abstract: Adaptive identification systems focus on dynamical approaches based on the observed data from an experiment and/or clinical data. These systems establish a relationship between an input (arterial or vein instantaneous pressure) and an output (instantaneous arterial or vein diameter). Several dynamics relationships and applications can be established because of this adaptive identification as an arterial dynamic range (frequency response), biomechanical behavior of cryopreserved arteries, regional differences in veins as artery substitution, role of vascular smooth muscle in human hypertension and time invariance in the biomechanics of wall arteries. The aim of this review is to summarize some of those relevant results obtained from adaptive filter identification in cardiovascular dynamics research and clinical evaluation.
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Cite this article as:
Pessana Franco*, Sanchez Ramiro , Adaptive Filtering of the Arterial Wall: Frequency Response and Dynamical Parameters: Clinical Evaluation, Current Hypertension Reviews 2018; 14 (2) . https://dx.doi.org/10.2174/1573402114666180703164409
DOI https://dx.doi.org/10.2174/1573402114666180703164409 |
Print ISSN 1573-4021 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-6506 |

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