
Electroencephalogram Course
Master the full scope of clinical EEG — from neurophysiology fundamentals and electrode setup to epilepsy syndromes and critical care monitoring. This comprehensive course equips neurology professionals and EEG technologists with the technical precision and interpretive confidence demanded in today's clinical settings.
What you will learn:
This course covers the neurophysiological basis of EEG signals, equipment setup, montage design, and the full spectrum of normal and abnormal patterns across the lifespan. You will learn to recognise epileptiform discharges, classify epilepsy syndromes, and apply standardised ACNS terminology in clinical reports. Advanced modules address continuous ICU monitoring, quantitative EEG, ambulatory recordings, and emerging technologies, including machine learning tools. You will also develop patient communication skills and understand the professional standards required in accredited EEG laboratories.
How you study practically Electroencephalogram Course
How you practise Electroencephalogram Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Brain Electrical Activity
Foundations of Brain Electrical Activity
Lesson 1 • Neuronal Basis of EEG Signals
Covers postsynaptic potentials, dipole formation, and volume conduction. Links cellular activity to scalp-recorded waveforms.
Lesson 2 • Brain Rhythms and Frequency Bands
Defines delta, theta, alpha, beta, and gamma bands with their physiological correlates. Provides the spectral framework used throughout the course.
Lesson 3 • Anatomy Relevant to EEG Interpretation
Reviews cortical lobes, sulci, and subcortical structures generating EEG patterns. Anchors electrode placement to underlying anatomy.
Lesson 4 • Principles of Electrical Signal Recording
Explains amplification, filtering, and analog-to-digital conversion in EEG systems. Prepares students for equipment operation in later chapters.
Chapter 2HideHide detailsSee detailsEEG Equipment and Setup
EEG Equipment and Setup
Lesson 1 • Electrode Application and Impedance Checks
Covers skin preparation, conductive gel application, and impedance verification. Directly impacts signal quality and artifact reduction.
Lesson 2 • System Calibration and Safety Checks
Details pre-recording calibration, electrical safety testing, and equipment maintenance. Ensures patient safety and data validity before every study.
Lesson 3 • The International 10-20 Electrode System
Teaches standardised scalp measurement and electrode placement using the 10-20 system. Ensures reproducible recordings across sessions and facilities.
Lesson 4 • Electrode Types and Materials
Compares cup, disk, needle, and subdermal electrodes by impedance and application. Guides material selection for routine and specialised recordings.
Lesson 5 • EEG Hardware Components
Identifies amplifiers, headboxes, analog-to-digital converters, and display units. Establishes equipment literacy needed for safe operation.
Chapter 3HideHide detailsSee detailsMontages and Reference Strategies
Montages and Reference Strategies
Lesson 1 • Principles of Montage Design
Explains electrode pairing logic, signal polarity conventions, and chain construction. Forms the conceptual basis for all montage types.
Lesson 2 • Bipolar Montages
Covers longitudinal, transverse, and circumferential bipolar arrangements and their localisation strengths. Teaches phase reversal identification for source localisation.
Lesson 3 • Referential Montages
Examines linked-ear, contralateral-ear, and vertex reference strategies with their respective biases. Prepares students to recognise reference contamination.
Lesson 4 • Montage Selection in Clinical Practice
Applies montage knowledge to routine, epilepsy, and ICU recording scenarios. Reinforces decision-making through case-based montage switching.
Lesson 5 • Average and Laplacian References
Introduces average reference computation and surface Laplacian derivation for improved spatial resolution. Connects to quantitative EEG methods introduced later.
Chapter 4HideHide detailsSee detailsNormal EEG Patterns Across the Lifespan
Normal EEG Patterns Across the Lifespan
Lesson 1 • Normal Sleep Architecture in EEG
Identifies vertex waves, sleep spindles, K-complexes, and slow-wave sleep features. Essential for interpreting prolonged and ambulatory recordings.
Lesson 2 • Neonatal EEG Specific Features
Covers trace alternant, delta brushes, and gestational age-dependent patterns. Requires knowledge of neonatal anatomy covered in Chapter 1.
Lesson 3 • Normal Variants and Benign Patterns
Identifies wicket spikes, 14-and-6 Hz positive bursts, SREDA, and other benign variants. Prevents over-reading and unnecessary clinical escalation.
Lesson 4 • Normal Adult Waking EEG
Describes posterior dominant rhythm, frontal beta, and mu rhythm in alert adults. Establishes the baseline against which abnormalities are judged.
Lesson 5 • Pediatric EEG Developmental Patterns
Tracks EEG maturation from infancy through adolescence including hypnagogic hypersynchrony. Prevents misidentification of normal developmental variants as pathology.
Chapter 5HideHide detailsSee detailsArtifacts: Recognition and Management
Artifacts: Recognition and Management
Lesson 1 • Artifact Differentiation from Pathology
Applies morphological and topographic criteria to distinguish artifacts from epileptiform discharges. Reduces false-positive interpretations in clinical reports.
Lesson 2 • Technical and Environmental Artifacts
Identifies electrode pop, 60 Hz interference, ventilator, and IV drip artifacts. Links artifact sources to equipment and environment factors.
Lesson 3 • Artifact Reduction Techniques
Teaches electrode repositioning, patient instruction, and digital filtering to minimize artifacts. Directly improves recording quality before interpretation.
Lesson 4 • Physiological Artifacts
Covers ECG, eye movement, muscle, and sweat artifacts with their characteristic morphologies. Builds pattern recognition essential for accurate interpretation.
Chapter 6HideHide detailsSee detailsAbnormal EEG Patterns and Epileptiform Activity
Abnormal EEG Patterns and Epileptiform Activity
Lesson 1 • Periodic and Rhythmic Patterns
Applies the ACNS standardized terminology to LPDs, GPDs, LRDA, and GRDA. Introduces the ictal-interictal continuum concept.
Lesson 2 • Interictal Epileptiform Discharges
Defines spikes, sharp waves, and spike-wave complexes with morphological criteria. Establishes the foundation for epilepsy syndrome classification.
Lesson 3 • Focal and Diffuse Slowing
Distinguishes focal from diffuse slow-wave abnormalities and correlates them with structural and metabolic etiologies. Builds on normal EEG baselines from Chapter 4.
Lesson 4 • Ictal EEG Patterns
Identifies electrographic seizure onset, evolution, and termination patterns. Prepares students for seizure detection in monitoring settings.
Lesson 5 • Status Epilepticus EEG Patterns
Covers convulsive, nonconvulsive, and subtle status epilepticus EEG features. Critical for ICU and emergency EEG interpretation covered in Chapter 8.
Chapter 7HideHide detailsSee detailsEEG in Epilepsy Syndromes
EEG in Epilepsy Syndromes
Lesson 1 • EEG-Guided Antiseizure Therapy Monitoring
Applies EEG findings to assess treatment response and medication effects on background activity. Integrates clinical and electrographic data for management decisions.
Lesson 2 • Neonatal and Infantile Epilepsy Syndromes
Covers hypsarrhythmia in infantile spasms, burst suppression, and neonatal seizure patterns. Builds on neonatal EEG features from Chapter 4.
Lesson 3 • Focal Epilepsy Syndromes
Identifies centrotemporal spikes, temporal lobe discharges, and frontal lobe patterns. Links focal discharge morphology to surgical candidacy evaluation.
Lesson 4 • Pre-Surgical Epilepsy Evaluation
Introduces scalp EEG role in localizing seizure onset zones for surgical planning. Connects to invasive monitoring concepts in supplementary chapters.
Lesson 5 • Generalized Epilepsy Syndromes
Covers 3 Hz spike-wave in absence epilepsy, polyspike-wave in juvenile myoclonic epilepsy, and related patterns. Requires mastery of generalized discharge recognition from Chapter 6.
Chapter 8HideHide detailsSee detailsCritical Care and Advanced EEG Applications
Critical Care and Advanced EEG Applications
Lesson 1 • Post-Cardiac Arrest EEG Monitoring
Covers burst suppression, malignant patterns, and EEG-guided prognostication after cardiac arrest. Integrates targeted temperature management effects on EEG.
Lesson 2 • Continuous EEG Monitoring in the ICU
Covers indications, electrode strategies, and staffing models for prolonged ICU EEG. Builds on montage and artifact skills from Chapters 3 and 5.
Lesson 3 • EEG in Brain Death Determination
Applies electrocerebral inactivity criteria, sensitivity settings, and confirmatory role of EEG. Requires understanding of calibration and artifact exclusion from Chapter 2.
Lesson 4 • EEG Report Writing and Communication
Structures standardized EEG reports using ACNS terminology and communicates urgent findings. Synthesizes interpretation skills from all prior chapters.
Lesson 5 • EEG in Coma and Disorders of Consciousness
Identifies EEG patterns predicting prognosis in coma, including reactivity and continuity measures. Applies periodic pattern terminology from Chapter 6.
Your valid completion certificate
This course is for you:
EEG technologist: seeking to deepen interpretive skills beyond routine recordings.
Neurology resident: building electrophysiology fluency to support clinical decision-making.
ICU or epilepsy nurse: needing structured EEG knowledge for bedside patient monitoring.
Neurophysiology student: entering the field and building a comprehensive professional foundation.
Allied health professional: transitioning into neurodiagnostics from a related clinical background.
Neuroscience enthusiast: pursuing a rigorous, clinically grounded understanding of brain monitoring.
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