Linked from
The 69 pages that link to Electroencephalography, each with the reason it gives.
Signal-to-noise ratioRelated: Brain signals are weak relative to muscular, electrical, and instrumental interference.
Neurological examinationRelated: It measures brain activity directly, unlike examination findings inferred from observed responses.
EpilepsyRelated: EEG can reveal epileptiform patterns and help characterize seizure activity.
NeuroscienceRelated: EEG reveals population-level brain rhythms and is used in both research and clinical care.
SleepRelated: It reveals the changing brain-wave patterns used to classify sleep stages.
SeizureRelated: It can reveal electrical patterns associated with seizures.
DeliriumRelated: Electroencephalography can reveal diffuse brain slowing or identify seizures that resemble delirium.
ElectrodeRelated: Recording electrodes detect voltage differences generated by neural activity.
NeuroimagingRelated: It measures brain electrical activity directly, with millisecond-scale timing.
Electroconvulsive therapyRelated: EEG monitoring helps clinicians assess seizure activity during an ECT treatment.
NeurologyRelated: EEG helps evaluate seizures and other disturbances of brain function.
Status epilepticusRelated: EEG can detect ongoing nonconvulsive seizures when outward signs are absent.
ArousalRelated: EEG patterns provide an indirect measure of changes in arousal and vigilance.
ComaRelated: It can reveal seizures or patterns of brain activity that examination alone may miss.
Focal SeizureRelated: EEG can reveal patterns that support focal onset, although a normal recording does not exclude it.
EncephalitisRelated: It can detect seizures and abnormal brain activity during encephalitis.
PropofolRelated: Brain-wave patterns can help characterize and monitor propofol-induced unconsciousness.
Sleep architectureRelated: Its signals help distinguish sleep stages by their characteristic patterns.
Brain–computer interfaceRelated: It is a common noninvasive way to capture signals for brain–computer interfaces.
Cognitive neuroscienceRelated: Its millisecond timing helps link brain signals to stages of mental processing.
Lucid dreamingRelated: EEG helps identify sleep stages and study brain activity during lucid dreams.
BrainRelated: EEG reveals patterns of brain activity, including seizures and sleep stages.
Herpes simplex encephalitisRelated: EEG can detect seizures and support diagnosis when temporal-lobe abnormalities are present.
Locked-in syndromeRelated: EEG can support assessment of brain function when behavioral responses are difficult to interpret.
Rapid eye movement sleepRelated: EEG reveals REM's low-amplitude, mixed-frequency activity.
Creutzfeldt–Jakob diseaseRelated: Periodic EEG patterns can support diagnosis, though they are not present in every case.
Drug-Resistant EpilepsyRelated: EEG can help classify seizures and identify patterns that guide treatment.
Multiple Sleep Latency TestRelated: EEG signals help technicians identify when sleep begins and classify its stages.
Angelman syndromeRelated: Characteristic EEG patterns can support clinical assessment, though they do not establish the genetic cause.
Absence seizureRelated: EEG can reveal seizure activity even when outward behavior shows only a brief pause.
Neurological disorderRelated: It can identify abnormal brain activity relevant to seizures and other conditions.
Febrile seizureRelated: It is generally not needed after a typical simple febrile seizure in a healthy child.
Psychogenic non-epileptic seizureRelated: EEG helps assess whether a recorded episode has an epileptic electrical correlate.
WaveformRelated: Brain rhythms are recorded as changing voltage waveforms.
Behavioral neuroscienceRelated: Its timing precision helps relate rapid neural changes to behavior.
WakefulnessRelated: EEG patterns help distinguish waking from sleep and altered states.
Depolarization (neuroscience)Related: Its signals reflect coordinated electrical activity involving neuronal membrane currents.
Dravet syndromeRelated: EEG findings can support evaluation, though early results may be normal or nonspecific.
Edgar AdrianRelated: Adrian helped bring attention to brain rhythms through early electroencephalographic research.
NeurolinguisticsRelated: Its millisecond timing reveals when brain responses to linguistic events occur.
Sturge–Weber syndromeRelated: EEG helps assess seizures and identify abnormal electrical activity.
Transmissible spongiform encephalopathyRelated: Characteristic EEG patterns can support diagnosis in some forms of Creutzfeldt–Jakob disease.
1p36 deletion syndromeRelated: It helps evaluate seizures, which can occur in the syndrome.
Human brainRelated: It tracks brain activity with millisecond-scale timing.
Subacute sclerosing panencephalitisRelated: Periodic complexes on EEG are a characteristic clue in diagnosis.
22q13 deletion syndromeRelated: Clinicians may use it when seizures or unusual episodes are suspected.
Aicardi syndromeRelated: EEG patterns help characterize the seizures associated with the syndrome.
Alice in Wonderland syndromeRelated: It may help investigate episodes when seizures are a possible cause.
Anti-NMDA receptor encephalitisRelated: EEG can reveal abnormal brain activity during seizures or altered consciousness.
BiomechatronicsRelated: Brain activity can serve as an alternative control signal when muscle output is limited.