Frontopolar多焦经颅直流电刺激降低消光训练中的条件性恐惧反应:一项飞行员随机对照试验

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-09-10 DOI:10.1016/j.nlm.2023.107825
Thomas G. Adams , Benjamin Kelmendi , Jamilah R. George , Jennifer Forte , Troy J.J. Hubert , Hannah Wild , Colton S. Rippey , Christopher Pittenger
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引用次数: 0

摘要

基于暴露的焦虑和相关疾病治疗被认为取决于恐惧消退学习和消退回路的相应变化。Frontopolar多焦经颅直流电刺激(tDCS)已被证明可以改善体内暴露期间的治疗安全性学习,并可能调节与恐惧处理和抑制有关的网络的功能连接。完成了一项先导性随机对照试验,以确定额颞叶tDCS对消光学习和记忆的影响。社区志愿者(n=35)完成了为期3天的恐惧消退范式,测量了皮肤电活动。在消光训练之前,参与者被随机(单盲)接受20分钟的假手术(n=17,30 s。斜进/斜出)或活动(n=18)额极(Fpz上的阳极,10–10 EEG)多焦tDCS(20分钟,1.5 mA)。混合方差分析显示,在消光训练过程中,组*试验对条件刺激(CS+)的皮肤电导反应(SCR)有显著影响(p=0.007,Cohen’s d=0.55)。前两次消光试验中,前额叶tDCS的影响最大,这表明tDCS可能在安全学习前促进了恐惧抑制。在测试过程中,恐惧对CS+的恢复在不同条件下具有可比性(ps>;0.50)。这些发现表明,额叶tDCS可能调节威胁线索和相关电路的处理,或促进恐惧的抑制。这对通过治疗暴露治疗焦虑和相关疾病具有明确的意义。
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Frontopolar multifocal transcranial direct current stimulation reduces conditioned fear reactivity during extinction training: A pilot randomized controlled trial

Exposure-based therapies for anxiety and related disorders are believed to depend on fear extinction learning and corresponding changes in extinction circuitry. Frontopolar multifocal transcranial direct current stimulation (tDCS) has been shown to improve therapeutic safety learning during in vivo exposure and may modulate functional connectivity of networks implicated in fear processing and inhibition. A pilot randomized controlled trial was completed to determine the effects of frontopolar tDCS on extinction learning and memory. Community volunteers (n = 35) completed a 3-day fear extinction paradigm with measurement of electrodermal activity. Participants were randomized (single-blind) to 20-min of sham (n = 17, 30 s. ramp in/out) or active (n = 18) frontopolar (anode over Fpz, 10–10 EEG) multifocal tDCS (20-min, 1.5 mA) prior to extinction training. Mixed ANOVAs revealed a significant group*trial effect on skin conductance response (SCR) to the conditioned stimulus (CS + ) during extinction training (p = 0.007, Cohen’s d = 0.55). The effects of frontopolar tDCS were greatest during the first two extinction trials, suggesting that tDCS may have promoted fear inhibition prior to safety learning. Return of fear to the CS + during tests were comparable across conditions (ps > 0.50). These findings suggest that frontopolar tDCS may modulate the processing of threat cues and associated circuitry or promote the inhibition of fear. This has clear implications for the treatment of anxiety and related disorders with therapeutic exposure.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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