PubMed Health⌕ Search

PubMed · 11085551

The EEG in coma.

Abstract

The EEG allows insight into thalamocortical function in comatose patients when this is inaccessible clinically. A single EEG can help with broad diagnostic categorization whereas continuous or serial EEG provides monitoring for unstable and potentially treatable conditions and for monitoring the effects of therapy. The EEG plays a supplemental role in establishing the prognosis in disease states that are capable of causing neuronal death. The most prevalent and problematic of these conditions involves survivors of cardiac arrest who are initially in coma with intact brainstem reflexes. In such patients single EEGs are of 100% specificity for no possibility of recovery of consciousness only for essentially complete generalized suppression (<10 microV) after the first day of the arrest. Several other generalized patterns, including less marked suppression, burst-suppression, epileptiform activity, periodic complexes, and alpha-theta coma patterns, usually but not invariably indicate a poor outcome. Serial EEGs, continuous raw and automated "trending," testing of reactivity, and the inclusion of multiple variables hold promise for an improved role in the prognostic determination in these patients.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

G B Young. 2000. The EEG in coma.. https://doi.org/10.1097/00004691-200009000-00006

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Conceptual dilemmas in evaluating individuals with severely impaired consciousness.

States of severely impaired consciousness (SIC) are characterized by cognitive and motor limitations. This case report describes a 45-year-old female with impaired consciousness who began to 'walk'. She initially presented to the hospital unresponsive and was subsequently diagnosed with metabolic encephalopathy due to severe hypoglycaemia. Traditional indices of consciousness indicated a low level of responsiveness; however, during physical therapy, she displayed reciprocal walking movements when lifted to a standing position by two therapists. Despite her ability to walk increased distances during and after neurorehabilitation, she was unable to consistently demonstrate responses indicative of higher levels of consciousness. This case illustrates the challenge of rating patients with limited behavioural repertoire using established measures of impaired consciousness.

Brain Diseases, Metabolic↗

Neurologic complications in intensive care.

Neurologic complications in intensive care occur as the result of critical illness, intensive care therapies and procedures, or medical or surgical conditions; perioperatively; or because of underlying primary neurologic disease. These complications occur at greater frequency and are often unrecognized because critically ill patients are often intubated, sedated, and/or receiving neuromuscular blocking agents. Encephalopathy is the most common neurologic complication in the ICU and is usually multifactorial in origin. Sepsis is associated with the highest incidence of neurologic complications. Neurologic complications are associated with increased disability, longer hospital stay, and increased mortality. This review focuses on neurologic complications that are the result of critical illnesses and intensive care management.

Brain Diseases, Metabolic↗