Neural symphony of risky decision making in children with ADHD: Insights from transcranial alternating current stimulation and cognitive modeling

IF 2.7 4区 医学 Q2 CLINICAL NEUROLOGY Neurophysiologie Clinique/Clinical Neurophysiology Pub Date : 2023-10-01 DOI:10.1016/j.neucli.2023.102898
Vahid Nejati , Zahra Famininejad , Jamal Amani Rad
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Abstract

Background

The ventromedial prefrontal cortex (vmPFC) and dorsolateral prefrontal cortex (dlPFC) are key brain regions involved in risky decision making, affected in individuals with attention deficit hyperactivity disorder (ADHD). This study aims to examine how entrainment of these areas impacts the process and outcome of risky decision making in children with ADHD.

Methods

Eighteen children with ADHD performed the balloon analogue risk-taking task (BART) during five different sessions of tACS (1.5 mA, 6 Hz), separated by one-week intervals, via (1) two channels with synchronized stimulation over the left dlPFC and right vmPFC, (2) the same electrode placement with anti-phase stimulation, (3) stimulation over the left dlPFC only, (4) stimulation over right vmPFC only, and (5) sham stimulation. Four-parameter and constant-sensitivity models were used to model the data.

Results

The study showed that synchronized stimulation was associated with a reduction in positive prior belief, risk propensity, and deterministic selection. Desynchronized stimulation was associated with accelerated learning from initial selections. Isolated stimulation of the dlPFC leads to riskier decision enhanced learning updates and risk propensity, whereas isolated stimulation of the vmPFC facilitated faster learning and increased probabilistic selection.

Conclusion

The results highlight the important roles of the dlPFC and vmPFC and their communication in decision making, showcasing their impact on various aspects of the decision-making process. The findings provide valuable insights into the complex interplay between cognitive and emotional factors in shaping our choices.

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ADHD儿童风险决策的神经交响曲:来自经颅交流电刺激和认知模型的见解
背景腹内侧前额叶皮层(vmPFC)和背外侧前额叶皮质(dlPFC)是参与风险决策的关键大脑区域,在注意力缺陷多动障碍(ADHD)患者中受到影响。本研究旨在研究这些区域的夹带如何影响多动症儿童风险决策的过程和结果。方法18名ADHD儿童在5次不同的tACS(1.5mA,6Hz)期间,间隔一周,通过(1)左dlPFC和右vmPFC上同步刺激的两个通道,(2)反相位刺激的相同电极放置,(4)仅在右侧vmPFC上的刺激和(5)假刺激。使用四个参数和恒定灵敏度模型对数据进行建模。结果研究表明,同步刺激与积极先验信念、风险倾向和确定性选择的减少有关。去同步刺激与从初始选择中加速学习有关。dlPFC的孤立刺激导致风险更大的决策增强学习更新和风险倾向,而vmPFC的独立刺激促进了更快的学习和增加的概率选择。结论研究结果突出了dlPFC和vmPFC及其沟通在决策中的重要作用,展示了它们对决策过程各个方面的影响。这些发现为认知和情感因素在塑造我们的选择中的复杂相互作用提供了宝贵的见解。
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来源期刊
CiteScore
5.20
自引率
3.30%
发文量
55
审稿时长
60 days
期刊介绍: Neurophysiologie Clinique / Clinical Neurophysiology (NCCN) is the official organ of the French Society of Clinical Neurophysiology (SNCLF). This journal is published 6 times a year, and is aimed at an international readership, with articles written in English. These can take the form of original research papers, comprehensive review articles, viewpoints, short communications, technical notes, editorials or letters to the Editor. The theme is the neurophysiological investigation of central or peripheral nervous system or muscle in healthy humans or patients. The journal focuses on key areas of clinical neurophysiology: electro- or magneto-encephalography, evoked potentials of all modalities, electroneuromyography, sleep, pain, posture, balance, motor control, autonomic nervous system, cognition, invasive and non-invasive neuromodulation, signal processing, bio-engineering, functional imaging.
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