Development of EEG Response to Unpleasant, Pleasant, and Neutral Tactile Stimuli.

IF 2.5 4区 医学 Q3 NEUROSCIENCES Journal of integrative neuroscience Pub Date : 2024-08-16 DOI:10.31083/j.jin2308148
Galina Portnova, Larisa Mayorova
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Abstract

Background: The study of tactile perception during a childhood is extremely important for understanding the social and communicative aspects of the child's development. Tactile perception of stimuli with different valence can have different normative stages of development.

Methods: In the present study, we examined changes in linear and nonlinear electroencephalogram (EEG) parameters during the presentation of pleasant (C-tactile optimal stroking), unpleasant (ice stroking), and neutral tactile stimuli in three groups of healthy volunteers: preschoolers 4 and 5 years, school-age children from 8 to 10 years, and adults from 20 to 40 years.

Results: According to our findings, child maturation plays a significant role in the perception of pleasant and neutral tactile stimuli. Patterns of EEG dynamics related to tactile perception showed greater similarity between adult volunteers and school-aged children than preschoolers.

Conclusions: Non-linear EEG parameters such as fractal dimension (FD), envelope mean frequency (EMF), and power spectral density (PSD) dynamics of the theta-rhythm were particularly sensitive to developmental changes in tactile perception. Hjorth complexity and peak alpha frequency (PAF) scores may serve as indicators of mature perception of С-tactile (CT)-stimuli.

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对不愉快、愉快和中性触觉刺激的脑电图反应的发展。
背景:研究儿童时期的触觉感知对于了解儿童在社交和交流方面的发展极为重要。对不同价位刺激的触觉感知会有不同的规范发展阶段:在本研究中,我们检测了三组健康志愿者(4 至 5 岁的学龄前儿童、8 至 10 岁的学龄儿童以及 20 至 40 岁的成年人)在受到愉快(C-触觉最佳抚摸)、不愉快(冰抚摸)和中性触觉刺激时线性和非线性脑电图(EEG)参数的变化:根据我们的研究结果,儿童的成熟度在感知愉快和中性触觉刺激方面起着重要作用。与学龄前儿童相比,成年志愿者和学龄儿童与触觉感知相关的脑电图动态模式显示出更大的相似性:结论:非线性脑电图参数,如分形维度(FD)、包络平均频率(EMF)和θ节律的功率谱密度(PSD)动态对触觉感知的发育变化特别敏感。Hjorth复杂性和阿尔法频率峰值(PAF)评分可作为成熟的С-触觉(CT)刺激感知的指标。
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来源期刊
CiteScore
2.80
自引率
5.60%
发文量
173
审稿时长
2 months
期刊介绍: JIN is an international peer-reviewed, open access journal. JIN publishes leading-edge research at the interface of theoretical and experimental neuroscience, focusing across hierarchical levels of brain organization to better understand how diverse functions are integrated. We encourage submissions from scientists of all specialties that relate to brain functioning.
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