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Volumn 30, Issue 4, 2002, Pages 555-565
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Modeling of nonlinear physiological systems with fast and slow dynamics. II. Application to cerebral autoregulation
a b b a |
Author keywords
Cerebral autoregulation; Cerebral hemodynamics; Lagurre Volterra network; Nonlinear modeling; Nonstationary systems; Volterra kernels
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Indexed keywords
BIOMEDICAL ENGINEERING;
BLOOD;
FREQUENCY DOMAIN ANALYSIS;
FREQUENCY RESPONSE;
MATHEMATICAL MODELS;
METABOLISM;
PHYSIOLOGY;
TIME DOMAIN ANALYSIS;
TISSUE;
TRANSFER FUNCTIONS;
CEREBRAL AUTOREGULATION;
CEREBRAL HEMODYNAMICS;
HEMODYNAMICS;
ADULT;
ARTICLE;
ARTIFICIAL NEURAL NETWORK;
BIOLOGICAL MODEL;
BLOOD FLOW VELOCITY;
BLOOD PRESSURE;
BRAIN CIRCULATION;
COMPARATIVE STUDY;
COMPUTER SIMULATION;
FEMALE;
FOURIER ANALYSIS;
HEMODYNAMICS;
HOMEOSTASIS;
HUMAN;
MALE;
NON-PROGRAMMATIC;
NONLINEAR SYSTEM;
PHYSIOLOGY;
REPRODUCIBILITY;
SENSITIVITY AND SPECIFICITY;
TIME;
NON-PROGRAMMATIC;
ADULT;
BLOOD FLOW VELOCITY;
BLOOD PRESSURE;
CEREBROVASCULAR CIRCULATION;
COMPUTER SIMULATION;
FEMALE;
FOURIER ANALYSIS;
HEMODYNAMIC PROCESSES;
HOMEOSTASIS;
HUMANS;
MALE;
MODELS, CARDIOVASCULAR;
NEURAL NETWORKS (COMPUTER);
NONLINEAR DYNAMICS;
REPRODUCIBILITY OF RESULTS;
SENSITIVITY AND SPECIFICITY;
TIME FACTORS;
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EID: 0035988864
PISSN: 00906964
EISSN: None
Source Type: Journal
DOI: 10.1114/1.1477448 Document Type: Article |
Times cited : (95)
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References (21)
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