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Monitoring the Depth of Anesthesia through the Use of Cerebral Hemodynamic Measurements Based on Sample Entropy Algorithm.

08:00 EDT 6th June 2019 | BioPortfolio

Summary of "Monitoring the Depth of Anesthesia through the Use of Cerebral Hemodynamic Measurements Based on Sample Entropy Algorithm."

The aim of this study is to explore the relationship between the depth of anesthesia and the cerebral hemodynamic variables during the complete anesthesia process.

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This article was published in the following journal.

Name: IEEE transactions on bio-medical engineering
ISSN: 1558-2531
Pages:

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Medical and Biotech [MESH] Definitions

Continuous measurement of the movement and forces of blood in the CARDIOVASCULAR SYSTEM.

An extremely stable inhalation anesthetic that allows rapid adjustments of anesthesia depth with little change in pulse or respiratory rate.

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Gases or volatile liquids that vary in the rate at which they induce anesthesia; potency; the degree of circulation, respiratory, or neuromuscular depression they produce; and analgesic effects. Inhalation anesthetics have advantages over intravenous agents in that the depth of anesthesia can be changed rapidly by altering the inhaled concentration. Because of their rapid elimination, any postoperative respiratory depression is of relatively short duration. (From AMA Drug Evaluations Annual, 1994, p173)

Hospital unit providing continuous monitoring of the patient following anesthesia.

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