Olfactory EEG datasets: EegDot and EegDoc

Citation Author(s):
Qing-Hao
Meng
Institute of Robotics and Autonomous Systems, School of Electrical and Information Engineering, Tianjin University
Hui-Rang
Hou
Institute of Robotics and Autonomous Systems, School of Electrical and Information Engineering, Tianjin University
Submitted by:
Hui-Rang Hou
Last updated:
Sun, 01/15/2023 - 05:04
DOI:
10.21227/59nx-6g46
License:
0
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Abstract 

The EegDot data set  (EEG data evoked by Different Odor Types established by Tianjin University) collected using a Cerebus neural signal acquisition equipment involved thirteen odor stimulating materials, five of which (smelling like rose (A), caramel (B), rotten (C), canned peach (D), and excrement (E)) were selected from the T&T olfactometer (from the Daiichi Yakuhin Sangyo Co., Ltd., Japan) and the remaining eight from essential oils (i.e., mint (F), tea tree (G), coffee (H), rosemary (I), jasmine (J), lemon (K), vanilla (L) and lavender (M)).

The EegDoc data set (EEG data evoked by Different Odor Concentrations established by Tianjin University) collected using a Cerebus neural signal acquisition equipment involved 2 types of odors (smelling like roses and rotten odors), each with 5 concentrations. Five concentrations of the rose odor are expressed as A10-3.0 (A30), A10-3.5 (A35), A10-4.0 (A40), A10-4.5 (A45) and A10-5.0 (A50), and five concentrations of the rotten odor are expressed as C10-4.0 (C40), C10-4.5 (C45), C10-5.0 (C50), C10-5.5 (C55) and C10-6.0 (C60).

Instructions: 

Experimental Environment: Soundproof olfactory EEG Laboratory

EEG Signal Acquisition Equipment: Cerebus equipment

Electrode Cap: 32 channels. The electrodes are arranged according to the international 10-20 system. Except 2 reference electrodes at mastoid, 30 electrodes are used for data classification.

Sampling Rate: 1k Hz

Sampling Duration: 10 s

Comments

My name is Daniela Losada, a master's student in biomedical informatics at El Bosque University in Colombia.
I want to access this database in order to perform EEG signal processing for my research.

Submitted by Daniela Losada on Sat, 08/05/2023 - 11:54