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失匹配负波揭示了听觉训练 1 小时后皮质动态的可塑性。

Mismatch negativity reveals plasticity in cortical dynamics after 1-hour of auditory training exercises.

机构信息

VA Desert Pacific Mental Illness Research, Education and Clinical Center (MIRECC), VA San Diego Healthcare System, San Diego, CA, United States; Department of Psychiatry, University of California San Diego, La Jolla, CA, United States; Department of Psychology, California School of Professional Psychology, Alliant International University, San Diego, CA, United States.

Swartz Center for Computational Neuroscience, Institute for Neural Computation, University of California San Diego, United States.

出版信息

Int J Psychophysiol. 2019 Nov;145:40-47. doi: 10.1016/j.ijpsycho.2019.06.003. Epub 2019 Jun 6.

Abstract

BACKGROUND

Impaired sensory processing contributes to deficits in cognitive and psychosocial functioning in individuals with schizophrenia (SZ). Mismatch Negativity (MMN), an event-related potential (ERP) index of sensory discrimination associated with cognitive and psychosocial functioning, is a candidate biomarker of auditory discrimination and thus possibly of changes following auditory-based Targeted Cognitive Training (TCT). Here we evaluated the acute effect of TCT on cortical processes supporting auditory discrimination.

METHODS

MMN was assessed in 28 SZ outpatients before and after a single 1-hour (hr) session of "Sound Sweeps," a pitch discrimination task that is a component of the TCT suite of exercises. Independent component (IC) analysis was applied to decompose 64-channel scalp-recorded electroencephalogram (EEG) activity into spatiotemporally stationary sources and their activities. ICs from all patients were pooled to find commonalities in their cortical locations. IC cluster-mean ERPs were evaluated to determine the clusters contributing to the (140-200 ms) MMN difference between responses to deviant and standard tone stimuli respectively.

RESULTS

Two frontal IC clusters centered in orbitofrontal cortex (OFC) and anterior cingulate cortex (ACC) accounted for >77% of MMN variance across all scalp channels. After 1-hr auditory training, significant suppression of ACC cluster contributions was detected, whereas the OFC cluster contribution was unchanged.

CONCLUSIONS

Prior to TCT, the MMN response was dominated by EEG effective sources in or near OFC and ACC. However, after 1-hr of auditory-based TCT, a significant attenuation of ACC was observed, whereas OFC contribution to MMN persisted. The present findings support further trials designed to test whether training-related MMN plasticity in the ACC after 1-hr may predict individual patient response to a full course of TCT.

摘要

背景

感觉处理受损会导致精神分裂症(SZ)患者认知和社会心理功能障碍。失匹配负波(MMN)是一种与认知和社会心理功能相关的事件相关电位(ERP)指数,是听觉辨别力的候选生物标志物,因此可能是听觉为基础的靶向认知训练(TCT)后变化的标志物。在这里,我们评估了 TCT 对支持听觉辨别力的皮质过程的急性影响。

方法

在单次 1 小时(hr)的“声音扫描”(一种音高辨别任务,是 TCT 练习套件的一部分)后,评估了 28 名 SZ 门诊患者的 MMN。独立成分(IC)分析用于将 64 通道头皮记录的脑电图(EEG)活动分解为时空静止源及其活动。所有患者的 IC 均被汇总,以找到其皮质位置的共同点。评估 IC 簇平均 ERP,以确定分别对偏离和标准音调刺激的反应中(140-200ms)MMN 差异做出贡献的簇。

结果

两个以眶额皮层(OFC)和前扣带回皮层(ACC)为中心的额部 IC 簇解释了所有头皮通道中超过 77%的 MMN 方差。在 1 小时听觉训练后,检测到 ACC 簇贡献的显著抑制,而 OFC 簇贡献保持不变。

结论

在 TCT 之前,MMN 反应主要由 OFC 和 ACC 内或附近的 EEG 有效源主导。然而,在 1 小时基于听觉的 TCT 后,观察到 ACC 的显著衰减,而 OFC 对 MMN 的贡献仍然存在。本研究结果支持进一步的试验,旨在测试 1 小时后 ACC 中与训练相关的 MMN 可塑性是否可以预测患者对 TCT 全过程的个体反应。

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