Article (Scientific journals)
Physiological Signal Processing for Individualized Anti-nociception Management During General Anesthesia: a Review.
De Jonckheere, J.; Bonhomme, Vincent; Jeanne, M. et al.
2015In Yearbook of medical informatics, 10 (1), p. 95-101
Peer reviewed
 

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Keywords :
Physiologic monitoring; digital signal processing; general anesthesia; nociception; tranducers
Abstract :
[en] OBJECTIVE: The aim of this paper is to review existing technologies for the nociception / anti-nociception balance evaluation during surgery under general anesthesia. METHODS: General anesthesia combines the use of analgesic, hypnotic and muscle-relaxant drugs in order to obtain a correct level of patient non-responsiveness during surgery. During the last decade, great efforts have been deployed in order to find adequate ways to measure how anesthetic drugs affect a patient's response to surgical nociception. Nowadays, though some monitoring devices allow obtaining information about hypnosis and muscle relaxation, no gold standard exists for the nociception / anti-nociception balance evaluation. Articles from the PubMed literature search engine were reviewed. As this paper focused on surgery under general anesthesia, articles about nociception monitoring on conscious patients, in post-anesthesia care unit or in intensive care unit were not considered. RESULTS: In this article, we present a review of existing technologies for the nociception / anti-nociception balance evaluation, which is based in all cases on the analysis of the autonomous nervous system activity. Presented systems, based on sensors and physiological signals processing algorithms, allow studying the patients' reaction regarding anesthesia and surgery. CONCLUSION: Some technological solutions for nociception / antinociception balance monitoring were described. Though presented devices could constitute efficient solutions for individualized anti-nociception management during general anesthesia, this review of current literature emphasizes the fact that the choice to use one or the other mainly relies on the clinical context and the general purpose of the monitoring.
Disciplines :
Anesthesia & intensive care
Author, co-author :
De Jonckheere, J.;  Institut National de la Santé et de la Recherche Médicale - INSERM CHRU Llle
Bonhomme, Vincent  ;  Université de Liège - ULiège
Jeanne, M.;  CHRU de Lille > Anesthésie et Réanimation
Boselli, E.;  Hôpital Edouard Herriot > Anesthésie et Réanimation
Gruenewald, M.;  Universitätsklinikum Schleswig-Holstein > Anesthésie et Réanimation
Logier, R.;  Institut National de la Santé et de la Recherche Médicale - INSERM CHRU Lille
Richebe, P.;  Université de Montréal - UdeM > Anesthésie
Language :
English
Title :
Physiological Signal Processing for Individualized Anti-nociception Management During General Anesthesia: a Review.
Publication date :
2015
Journal title :
Yearbook of medical informatics
ISSN :
0943-4747
eISSN :
2364-0502
Volume :
10
Issue :
1
Pages :
95-101
Peer reviewed :
Peer reviewed
Available on ORBi :
since 04 September 2015

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