首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Frontal Alpha Asymmetry a Potential Biomarker for the Effect of Neuromodulation on Brain’s Affective Circuitry—Preliminary Evidence from a Deep Brain Stimulation Study
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Frontal Alpha Asymmetry a Potential Biomarker for the Effect of Neuromodulation on Brain’s Affective Circuitry—Preliminary Evidence from a Deep Brain Stimulation Study

机译:额叶不对称性神经调节作用对大脑情感回路的潜在生物标志物—来自深度脑刺激研究的初步证据

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摘要

Neuromodulation techniques targeting limbic circuits can be used to treat refractory psychiatric or neurological disorders. However, objective measure for the impact of neuromodulation on affective brain circuits is lacking. Deep brain stimulation at a key node of the limbic circuit, the anterior thalamic nuclei (ANT-DBS), is used to treat refractory epilepsy. While effective in reducing seizures, patients have reported subjective depressive symptoms as a side effect. In line with potential vulnerability to depression, we have previously shown ANT-DBS to increase attention allocation to threat evidenced by behavior and brain physiology. Rightward frontal alpha asymmetry with greater right hemispheric activation is thought to reflect brain physiology linked with depression and anxiety. To that end, we investigated whether high-frequency electric stimulation at ANT influences frontal alpha asymmetry. Furthermore, we explored the impact of DBS on emotional modulation of frontal alpha asymmetry and whether it is linked with emotional modulation of response speed. Electrical stimulation at ANT led to an increased rightward frontal alpha asymmetry compared to situations where stimulation was off (F(1,12) = 14.09, p = 0.003) or the thalamic control location was stimulated (F(1,12) = 10.19, p = 0.008), along with prolonged reaction times in the context of emotional distractors (F(1,7) = 16.66, p = 0.005). The change was specifically driven by increased activity in the right hemisphere. Furthermore, we found a correlation between the emotional modulation of frontal alpha asymmetry and emotional interference of response speed due to ANT stimulation (r = 0.78, p = 0.02). In conclusion, DBS at ANT increased relative right hemispheric activity and this was linked with emotional modulation of behavior. Previous studies have linked frontal alpha asymmetry with emotion related symptoms and furthermore, Vagus Nerve Stimulation (VNS) has been shown to modulate alpha asymmetry. Thus, in the light of the previous literature and the current findings, we suggest that frontal alpha asymmetry along with emotional interference of response speed might be a feasible biomarker for the effects of neuromodulation on brain’s affective circuitry in general.
机译:针对边缘回路的神经调节技术可用于治疗难治性精神病或神经系统疾病。然而,缺乏客观的方法来调节神经调节对情感性脑回路的影响。在边缘回路的关键节​​点即前丘脑核(ANT-DBS)处进行深层脑刺激,可用于治疗难治性癫痫。虽然有效减少癫痫发作,但患者已报告主观抑郁症状为副作用。与潜在的抑郁症易感性相一致,我们先前已经证明ANT-DBS可以增加对行为和大脑生理学所证明的威胁的注意力分配。右半球激活程度更高的右额额叶不对称被认为反映了与抑郁症和焦虑症有关的大脑生理。为此,我们研究了ANT的高频电刺激是否会影响额叶α不对称性。此外,我们探讨了DBS对额叶不对称情绪调节的影响以及它是否与反应速度的情绪调节有关。与停止刺激(F(1,12)= 14.09,p = 0.003)或丘脑控制位置受到刺激(F(1,12)= 10.19, p = 0.008),以及在情绪干扰因素下的反应时间延长(F(1,7)= 16.66,p = 0.005)。这种变化是由右半球活动的增加特别驱动的。此外,我们发现额叶α不对称的情绪调节与ANT刺激引起的反应速度的情绪干扰之间存在相关性(r = 0.78,p = 0.02)。总之,ANT的DBS增加了相对的右半球活动,这与行为的情绪调节有关。先前的研究已将额叶阿尔法不对称与情绪相关症状联系在一起,此外,迷走神经刺激(VNS)已被证明可调节阿尔法不对称。因此,根据先前的文献和当前的发现,我们建议额叶阿尔法不对称以及情绪反应速度的干扰可能是神经调节一般对大脑情感电路影响的可行生物标记。

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