Clinical Electrophysiology of Mental Disorders
QEEG & ERP Workshop with Prof. Juri D. Kropotov
ChatGPT Image Aug 6, 2025, 12_41_47 PM
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Learn to Use Brain-Based Markers in Clinical Practice

Join this in-depth online training program designed to equip clinicians and researchers with practical skills in applying the HBI methodology—an advanced framework for analyzing QEEG and ERP data to assess psychiatric and neurological conditions.


Attendees will have a unique opportunity to learn directly from Professor Juri D. Kropotov, Scientific Director of the HBImed company, and gain insights from his vast knowledge and experience.

October 2025 – January 2026
24 sessions · Weekly · Online via Zoom
€1680 / $1900 USD

Course completion certificate from Mitsar and Prof. Kropotov
About Professor Juri (Yury) D. Kropotov

Professor Kropotov is a globally renowned theoretical and clinical neuroscientist. He holds an M.S. in Theoretical Physics (Leningrad State University, 1972), a Ph.D. in Human Physiology (Institute of Experimental Medicine, Leningrad, 1975), and is a Professor of Neuroscience (Institute of the Human Brain, Saint Petersburg). He was awarded a Doctor Honoris Causa degree by the Academy of Sports in Gdańsk (2013) and is a co-founder of HBImed AG (Chur, Switzerland). He is the author of over 300 scientific publications, including 12 books. His awards include: USSR State Prize (1985) – the Soviet equivalent of the Nobel Prize, FNAN Award for the most significant neurofeedback publication of 2009, Copernicus Prize (2010), M.B. Sterman Career Achievement Award (2021). His recent books, Quantitative EEG, Event-Related Potentials and Neurotherapy (Elsevier, 2009) and Functional Neuromarkers for Psychiatry (Elsevier, 2016), are among the most widely cited in clinical neuroscience.

Professor Kropotov is internationally recognized for pioneering the use of functional brain markers in clinical diagnostics and treatment planning. His scientific contributions have laid the foundation for applying QEEG and ERP methods in psychiatry and neurology, combining academic rigor with real-world application. Today, his protocols are widely used in clinics and research centers across Europe and beyond.

What You’ll Learn

Over 24 live, interactive sessions, you’ll gain hands-on experience with:

  • Quantitative EEG (QEEG): Analyze brain rhythms, connectivity, ICA decomposition

  • Event-Related Potentials (ERP): Break down brain responses into functional components

  • Functional Neuromarkers: Identify neural signatures of ADHD, depression, anxiety, PTSD, autism, OCD, and more

  • Neuromodulation Planning: Design personalized protocols using neurofeedback, tDCS, TMS, and photobiomodulation

Why It Matters – Benefits for Your Practice
For clinicians:
  • Objective brain function assessment using QEEG & ERP tools, enabling deeper insight than traditional symptom-based methods.
  • Accurate subtype differentiation, empowering more precise diagnoses (e.g. ADHD, depression, schizophrenia and more).
  • Personalized neuromodulation planning — design individual protocols for Neurofeedback, tDCS, TMS, photobiomodulation based on real neurophysiological markers.
  • Hands-on experience with WinEEG software and HBI Database, leveraging cuttingedge tools trusted in research and clinical settings
  • Direct mentorship from a global expert, Professor Kropotov, with over 300 publications and multiple international awards
For researchers
  • Access a powerful and validated EEG/ERP data processing platform (WinEEG)

  • Perform group-level analyses, averaging, and ICA decomposition

  • Use normative and clinical databases to benchmark findings and extract functional biomarkers

  • Apply methodology aligned with over 100 peer-reviewed studies and clinical neuroscience standards

  • Collaborate across clinical and academic settings with consistent analytical pipelines

For patients:
  • Precise, fast diagnostics identifying brain functional abnormalities not visible on MRI/CT.

  • Tailored treatment, optimizing therapeutic impact and minimizing side effects.

  • Objective progress tracking, allowing real-time monitoring and adjustment of treatment plans.

Course Format
  • When:

Weekly sessions (Tuesdays), 2 hours

8:00–10:00 MST (USA) / 14:00–16:00 CET (Europe)

  • How:

Online Zoom meetings (recordings available)

  • Includes:

Case studies, downloadable course materials
WinEEG and HBI software setup support

  • Who should attend:

Psychiatrists, neurologists, psychologists, neurofeedback specialists, clinical researchers

Program Structure (24 sessions)

1. Introduction to the HBI Methodology (4 sessions)

  • Overview of WinEEG and HBIdb software for assessment individual behavioral, QEEG and ERP data
  • QEEG as indices of self-regulation
  • ERPs as indices of information processing stages in the brain
  • Functional neuromarkers of psychiatric/neurological conditions and neuromodulation methods

2. QEEG Series (5 sessions)

  • Thalamo-cortical networks and alpha rhythm family. Abnormal alpha rhythms and alpha slowing
  • Hippocampal and frontal midline theta rhythms. Abnormal theta rhythms
  • Individual vs. grand-average EEG spectra; ICA decomposition; coherence analysis; database comparison
  • Infra-slow fluctuations and ILF neurofeedback
  • Neurofeedback protocols

3. ERP Series (6 sessions)

  • Historical overview of ERP waveforms. Methods for ERP decomposition into latent components
  • ERP components in conflict detection and monitoring
  • ERP components in action suppression
  • ERP components in preparatory activities, predictive coding and prediction error
  • ERP components in stimulus-response integration
  • Neural basis and protocols for neuromodulation (TMS, tDCS, photobiomodulation)

4. Neuromarkers by Condition (9 sessions)

  • ADHD: Subtypes, circuits, QEEG/ERP biomarkers, treatment response, neuromodulation
  • Depression: Subtypes, circuits, QEEG/ERP biomarkers, neuromodulation protocols
  • Anxiety: Subtypes, circuits, QEEG/ERP biomarkers, neuromodulation
  • Dementia: Subtypes, circuits, QEEG/ERP biomarkers, neuromodulation
  • Autism Spectrum Disorder: Subtypes, circuits, biomarkers, neuromodulation
  • PTSD and Childhood Trauma: Subtypes, biomarkers, neuromodulation
  • Schizophrenia: Subtypes, biomarkers, neuromodulation
  • OCD: Subtypes, biomarkers, neuromodulation
  • Learning Disabilities: Subtypes, biomarkers, neuromodulation
Apply Now

Seats are limited to ensure personalized feedback.
Don’t miss this rare opportunity to learn directly from a world expert in applied clinical neurophysiology.

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    Questions?
    Contact us at info@mitsar.eu