9.3. Beginner’s Guide9.3. Beginner’s Guide9.3. Beginner’s Guide9.3. Beginner’s Guide
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CleverPoint 4 User Manual

16
  • Introduction
    • Customer Support
    • Regulatory Compliance
    • Warranty and Copyright
  • Product Information
    • Product information
    • Technical specifications
    • Application compatibility
    • Safety precautions
    • Maintenance
  • Getting Started
    • Kit contains
    • Equipment Check
    • Types of CleverPoint 4 Indications
    • Charging your CleverPoint 4
    • Turning CleverPoint 4 on/off
    • First time Wi-Fi setup
    • Connecting CleverMask to the VR Headset
    • Connecting the ECG cable to CleverPoint 4

Stressonika - Guide for Working with raw ECG data

20
  • Introduction
  • Chapter 1. General points.
    • General points
  • Chapter 2. Cardio domain
    • Cardio domain
    • Sector. 1
    • Sector. 2
    • Sector. 3
    • Sector 4
    • Sector 5
    • Sector 6
    • Sector 7
    • Sector 8
  • Chapter 3. Cardio domain: examples
    • Cardio domain: examples
    • 3.1. ECG recording quality
    • 3.2. Preparing the “Cardio domain” page for consultation
    • 3.3 Viewing the “Cardio domain” page during consultation (Example 1)
    • 3.4 . Viewing the “Cardio domain” page during consultation (Example 2)
    • 3.5. Viewing the “Cardio domain” page during consultation (Example 3)
    • 3.6 . Viewing the “Cardio domain” page during consultation (Example 4)
    • 3.7. Viewing the “Cardio domain” page during consultation (Example 5)
    • 3.8. The “Cardio domain” page. Conclusion.

CleverPoint View Data v2.15 User Guide

55
  • Introduction
    • Introduction
  • 0. Fundamentals of Electrophysiology for Beginners
    • 0.1. What Are Physiological Signals?
    • 0.2. Autonomic Nervous System (ANS)
    • 0.3. Emotions and the Brain
    • 0.4. Electrodes and Their Placement in the CleverPoint Setup
  • 1. General Principles of Signal Processing
    • 1.1. Basic Transformations
    • 1.2. Marking and Trim
    • 1.3. CAR (Common Average Reference)
    • 1.4. Denoise (Blink Artifact Suppression)
    • 1.5. Normalize
    • 1.6. IMF (Empirical Mode Decomposition)
    • 1.7. Filtering
    • 1.8. Power vs Amplitude
    • 1.9. Epoch
  • 2. “Summary” Interface
    • 2.1. Purpose
    • 2.2. Controls
    • 2.3. Graphs
    • 2.4. Data Export
  • 3. “Time Domain” Interface
    • 3.1. Purpose
    • 3.2. Controls
    • 3.3. Signal Display
    • 3.4. Signal Transformations
  • 4. “Frequency Domain” Interface
    • 4.1. Purpose
    • 4.2. Interface Structure
    • 4.3. Controls
    • 4.4. Spectral Analysis Methods
    • 4.5. Channel Correlation
    • 4.6. Time Series
  • 5. “Power Domain” Interface
    • 5.1. Purpose
    • 5.2. “Power by sections” Mode
    • 5.3. “Between-channel interactions” Mode
    • 5.4. Frequency-Band Graphs
  • 6. “Coherence” Interface
    • 6.1. Purpose
    • 6.2. Controls
    • 6.3. Coherence Calculation Method
    • 6.4. Display
    • 6.5. Interpretation
    • 6.6. Use in Research
  • 7. “Emotional State” Interface
    • 7.1. Purpose
    • 7.2. Interface Structure
    • 7.3. Controls
    • 7.4. Emotion Calculation Method
    • 7.5. Display
    • 7.6. Section Selection
  • 8. “Cardio Domain” Interface
    • 8.1. Purpose
    • 8.2. Interface Structure
    • 8.3. Controls
    • 8.4. Extraction of RR Intervals
    • 8.5. HRV Parameters
    • 8.6. Visualization
    • 8.7. Data Export
  • 9. Conclusion
    • Conclusion
    • 9.1. Recommendations for Use
    • 9.2. Additional Resources
    • 9.3. Beginner’s Guide
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  • 9.3. Beginner’s Guide

9.3. Beginner’s Guide

1 min read

If you are new to electrophysiology, we recommend the following order of study:

1. Start with the basics (Section 0):

  • Learn what EEG, ECG, and EMG are.
  • Understand the meaning of frequency ranges (alpha, beta, theta, gamma).
  • Learn about the autonomic nervous system and HRV.

2. Study signal processing (Section 1):

  • Understand why each operation is needed (Trim, CAR, Denoise, etc.), especially Denoise for blinks.
  • Start with simple operations (Trim, Filter).
  • Gradually add more complex ones (CAR, Denoise, EMD), where Denoise is responsible for blink artifacts.

3. Practice with the interfaces:

  • Time domain: start here—signal visualization will help you understand what is happening.
  • Summary: use it for an overview—you will see all parameters at once.
  • Frequency domain: study spectrograms—you will understand frequency patterns.
  • Cardio domain: study HRV—an important indicator of health.
  • Emotional state: study emotions—an interesting application of EEG.

4. Interpret results:

  • Always consider the physiological meaning of parameters.
  • Compare with normal values.
  • Take context into account (rest vs. load).
  • Do not rush to conclusions—one parameter does not provide the full picture.

5. Study the literature:

  • Read scientific papers on psychophysiology.
  • Learn the normal values of parameters.
  • Understand the limitations of the methods.

Important to remember:

  • Electrophysiology is a complex science that requires time to learn.
  • Not all parameters can always be interpreted unambiguously.
  • Context is very important—the same values may mean different things in different situations.
  • Always critically evaluate results and compare them with the literature.
Updated on 21.03.2026

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9.2. Additional ResourcesConclusion

Our mission

Our mission is to develop products that heighten user awareness of the pivotal role physiology plays in personal and professional endeavors.

We strive to empower our users with the tools to effectively manage stress, prevent burnout, and optimize their well-being.

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