Applied Mathematics

Volume 7, Issue 4 (March 2016)

ISSN Print: 2152-7385   ISSN Online: 2152-7393

Google-based Impact Factor: 0.58  Citations  

A Method for Quantifying the Emotional Intensity and Duration of a Startle Reaction with Customized Fractal Dimensions of EEG Signals

HTML  XML Download Download as PDF (Size: 1379KB)  PP. 355-364  
DOI: 10.4236/am.2016.74033    2,818 Downloads   4,310 Views  Citations

ABSTRACT

The assessment of emotions with fractal dimensions of EEG signals has been attempted before, but the quantification of the intensity and duration of sudden and short emotions remains a challenge. This paper suggests a method for this purpose, by using a new fractal dimension algorithm and by adjusting the amplitude of the EEG signal in order to obtain maximal separation of high and low fractal dimensions. The emotion was induced by embedding a scary image at 20 seconds in landscape videos of 60 seconds length. The new method did not only detect the onset of the emotion correctly, but also revealed its duration and intensity. The intensity is based on the magnitude and impulse of the fractal dimension signal. It is also shown that Higuchi’s method does not always detect emotion spikes correctly; on the contrary, the region of the expected emotional response can be represented by fractal dimensions smaller than the rest of the signal, whereas the new method directly reveals distinct spikes. The duration of these spikes was 10 - 11 seconds. The magnitude of these spikes varied across the EEG channels. The build-up and cool-down of the emotions can occur with steep and flat gradients.

Share and Cite:

Fuss, F. (2016) A Method for Quantifying the Emotional Intensity and Duration of a Startle Reaction with Customized Fractal Dimensions of EEG Signals. Applied Mathematics, 7, 355-364. doi: 10.4236/am.2016.74033.

Cited by

[1] Muscle and soft tissue monitoring via smart compression garments
2021
[2] Lack of a sense of threat and higher emotional lability in patients with chronic microvascular ischemia as measured by non-linear EEG parameters
2020
[3] The Relationship between Carotid Doppler Ultrasound and EEG Metrics in Healthy Preschoolers and Adults
2020
[4] EEG Complexity Analysis of ADS Risk
2020
[5] Residual and compensatory changes of resting‐state EEG in successful recovery after moderate TBI
2020
[6] Emotion recognition and brain activity synchronization across individuals
2018
[7] Muscle performance investigated with a novel smart compression garment based on pressure sensor force myography and its validation against EMG
Frontiers in Physiology, 2018
[8] Nonlinear EEG parameters of emotional perception in patients with moderate traumatic brain injury, coma, stroke and schizophrenia
AIMS Neuroscience, 2018

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.