# 37 - C. ERP

# C. ERP

© SPMM Course 
 Diffuse slowing of background is the most common EEG abnormality; it is nonspecific and 
signifies the presence of encephalopathy. Focal slowing suggests local mass lesions; e.g. edema, 
haematoma or focal seizure. 
 Epileptiform discharges when seen interictally, can be considered as hallmark of seizure 
disorder. But this is not a common finding. If this is lateralized and periodic, it may suggest an 
acute destructive brain lesion. 
 
Effect of drugs on EEG 
 
 
 
 
 
 
 
 
 
 
 
 
B. MEG 
 Magnetoencephalography (MEG) is used to measure the magnetic fields produced by electrical 
activity in the brain 
 In contrast to electric fields, magnetic fields are less distorted/impeded by the skull and scalp. 
 The scalp EEG is sensitive to both tangential and radial components of a current source in a spherical 
volume conductor, MEG detects only its tangential components. Thus, MEG may selectively measure 
the activity in the sulci, whereas scalp EEG measures activity both in the sulci and at the top of the 
cortical gyri. 
C. ERP 
 An ERP is a change in electrical brain activity stereotyped and time-locked to an event (e.g., stimulus), 
although it can also occur for the omission of an expected stimulus. ERPs allow the investigation of 
specific types of information processing by the brain. 
 ERPs are small relative to the spontaneous brain activity (background EEG) that is they have a low 
signal-to-noise ratio. To increase the signal-to-noise ratio, an often-used method is ERP averaging 
Psychotropics 
Antipsychotics 
Slowing of beta activity with increase in alpha, theta and delta activity 
Antidepressants 
Slowing of beta activity with increase in alpha, theta and delta activity 
Lithium 
Slowing of alpha or paroxysmal activity 
Anticonvulsants 
No effect on awake EEG 
Primarily sedating drugs – decrease alpha 
Barbiturates 
Effects are opposite to that of alcohol. Increased beta activity upon intoxication; 
generalized paroxysmal activity and spike discharges (even without overt fits) 
in withdrawal states. 
Benzodiazepines 
Increased beta; decreased alpha. Overdose leads to diffuse slowing 
Opioids 
Decreased alpha activity; increased voltage of theta and delta waves; in 
overdose, slow waves are seen. 
Primarily recreational drugs – increase alpha 
Alcohol 
Increased alpha activity; increased theta activity. Withdrawal increases beta. 
Delirium tremens has beta (fast) wave activity – other deliria have increased slow 
waves. 
Marijuana 
Increased alpha activity in frontal area of brain; overall slow alpha activity 
Cocaine 
Same as marijuana; longer lasting. 
Nicotine 
Increased alpha activity; in withdrawal, marked decrease in alpha activity 
Caffeine 
In withdrawal, increase in amplitude or voltage of theta activity

© SPMM Course 
 ERPs have polarity (positive [P] or negative [N]) and latency (the moment of peak occurrence after 
stimulus presentation, which is often indicated by the number attached to the labels of ERP activity). 
 The temporal resolution of EEG, MEG and ERP analysis is much higher than that of other 
neuroimaging methods like functional MRI, SPECT and PET, but these techniques lack the high spatial 
resolution of the MR techniques. 
 According to the time of occurrence ERPs, can be classified as early, mid latency and late. 
 The P300, a positive late ERP component around 
300 ms after stimulus presentation, is typically 
generated when a rare target stimulus is 
imbedded with more frequent stimuli e.g. 
(auditory ‘oddball’ protocol). The P300 is related 
to the maintenance of working memory. Decrease 
in P300 amplitude is well established as a 
biological trait marker in schizophrenia. 
 The Mismatch Negativity or MMN is a negative 
ERP component that is recorded between 100-200 
ms in response to low-probability deviant sounds 
(oddball) in a sequence of standard sound 
stimuli, when the participant is not actively 
attending to the deviants. The MMN is best seen 
in the difference wave between the ERP in 
response to the standard and deviant sounds. The 
MMN reflects involuntary information 
processing in auditory context, i.e. the mnemonic 
comparison of a given stimulus with a previous one that has already built up a trace in memory. The 
violation of the previously formed memory trace produces the MMN. Decreased MMN amplitude is 
noted in schizophrenia. 
 The Contingent Negative Variation (CNV) is a slow negative shift in the interval between two paired 
stimuli presented one after the other (S1 being the cue, S2 being the imperative stimulus prompting to 
respond). CNV reduction in central (midline) electrodes is noted in schizophrenia patients especially 
with long duration of illness with positive symptoms. 
 
 
 
 
 
 
•Basic sensory pathways can be studied by 
recording early ERPs. 
•These are also called ‘evoked potentials’ (EPs) or 
brain stem evoked responses (BAER) 
•They occur in response to sounds (Auditory EP, 
AEP), flashes (Visual EP, VEP) or electrical 
stimulation (Somatosensory EP, SEP). 
Early ERPs 
Early ERPs 
• These occur after BAER. 
•The three well known midlatency ERPs are N100, 
P50 and P200. 
•Their amplitudes reduce with repetition 
(habituation response / sensory gating). 
Midlatency ERPs 
Midlatency ERPs 
•Cognitive pathways can be studied by recording of 
ERPs related to the execution of psychological 
events such as attention, emotion or memory tasks. 
•P300 and MMN are late ERPs 
Late ERPs 
Late ERPs

© SPMM Course 
Notes prepared using excerpts from: 
 
 Seeman P. Pruning during development. Am J Psychiatry 1999’ 156:168. 
 Martin et al. Repetitive transcranial magnetic stimulation for the treatment of depression: 
systematic review and meta-analysis. British Journal of Psychiatry, 2003: 182, 480 -491. 
 The APA Task Force on Laboratory Tests in Psychiatry. The dexamethasone suppression test: an 
overview of its current status in psychiatry. Am J Psychiatry 1987; 144:1253-1262 
 http://www.emedicine.com/neuro/TOPIC275.HTM 
 http://emedicine.medscape.com/article/1139332-overview 
 Kaplan & Sadock's Synopsis of Psychiatry: Behavioral Sciences/Clinical Psychiatry, 10th Edition 
 George, MS et al. Vagus nerve stimulation: a new tool for brain research and therapy. Biological 
Psychiatry, 2000: 47, 287 -295 
 Kaplan & Sadock Comprehensive Textbook of Psychiatry 9th ed – Pages 199-200. 
 Boyd et al. The EEG in early diagnosis of the Angelman (happy puppet) syndrome. Eur J Pediatr
1988: 147; 508–513 
 Ohayon MM et al. Meta-analysis of quantitative sleep parameters from childhood to old age in 
healthy individuals: Developing normative sleep values across the human lifespan. Sleep. 2004; 
27[7]: 1255-1273. 
 Walter et al. Contingent Negative Variation: An Electric Sign of Sensori-Motor Association and 
Expectancy in the Human Brain. Nature 1964: 203, 380 - 384 
 
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acknowledgements have not been possible for every passage/fact that is common knowledge 
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no part of these notes should be used as prescribing information.