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Clinical Electroencephalography for Anesthesiologists

Anesthesiology · 2015 · Vol. 123(4) · pp. 937–960
Patrick L. PurdonAaron L. SampsonKara J. PavoneEmery N. Brown

Abstract

The widely used electroencephalogram-based indices for depth-of-anesthesia monitoring assume that the same index value defines the same level of unconsciousness for all anesthetics. In contrast, we show that different anesthetics act at different molecular targets and neural circuits to produce distinct brain states that are readily visible in the electroencephalogram. We present a two-part review to educate anesthesiologists on use of the unprocessed electroencephalogram and its spectrogram to track the brain states of patients receiving anesthesia care. Here in part I, we review the biophysics of the electroencephalogram and the neurophysiology of the electroencephalogram signatures of three intravenous anesthetics: propofol, dexmedetomidine, and ketamine, and four inhaled anesthetics: sevoflurane, isoflurane, desflurane, and nitrous oxide. Later in part II, we discuss patient management using these electroencephalogram signatures. Use of these electroencephalogram signatures suggests a neurophysiologically based paradigm for brain state monitoring of patients receiving anesthesia care.

Anesthesia and Sedative AgentsAnesthesia and Neurotoxicity ResearchIntensive Care Unit Cognitive DisordersDesfluraneMedicineIsofluranePropofolElectroencephalographyUnconsciousnessAnesthesiaSevofluraneDexmedetomidineKetamine

MeSH terms

AnesthesiaAnestheticsBrainElectroencephalographyHumansUnconsciousness

Funding

  • Massachusetts General Hospital
  • Masimo
Citations
809
FWCI
45.74
field-weighted impact
References
132
Percentile
100%
vs. same field & year
Citations per year
Cited by
Multimodal General Anesthesia: Theory and Practice
Anesthesia & Analgesia · 2018 · 497 citations
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