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Reduced habituation of auditory evoked potentials indicate cortical hyper-excitability in Fragile X Syndrome

机译:听觉诱发电位的习惯性降低表明脆性X综合征的皮质超兴奋性

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Sensory hypersensitivities are common, clinically distressing features of Fragile X Syndrome (FXS). Preclinical evidence suggests this abnormality may result from synaptic hyper-excitability in sensory systems. This model predicts reduced sensory habituation to repeated stimulus presentation. Fourteen adolescents and adults with FXS and 15 age-matched controls participated in a modified auditory gating task using trains of 4 identical tones during dense array electroencephalography (EEG). Event-related potential and single trial time–frequency analyses revealed decreased habituation of the N1 event-related potential response in FXS, and increased gamma power coupled with decreases in gamma phase-locking during the early-stimulus registration period. EEG abnormalities in FXS were associated with parent reports of heightened sensory sensitivities and social communication deficits. Reduced habituation and altered gamma power and phase-locking to auditory cues demonstrated here in FXS patients parallels preclinical findings with Fmr1 KO mice. Thus, the EEG abnormalities seen in FXS patients support the model of neocortical hyper-excitability in FXS, and may provide useful translational biomarkers for evaluating novel treatment strategies targeting its neural substrate.
机译:感觉超敏反应是脆性X综合征(FXS)的常见临床困扰特征。临床前证据表明,这种异常可能是由于感觉系统中的突触过度兴奋引起的。该模型预测减少的感觉习惯到重复的刺激表现。十四岁的青少年和成人的FXS和15个年龄匹配的控件在密集阵列脑电图(EEG)期间使用4个相同音调的火车参加了改进的听觉门控任务。事件相关电位和单次试验时频分析显示,在早期刺激注册期间,FXS中N1事件相关电位响应的习惯性降低,γ功率增加,γ锁相降低。 FXS中的EEG异常与父母关于感觉敏感性增强和社交沟通不足的报道有关。在FXS患者中,习惯性的降低和伽马功率的改变以及与听觉线索的锁相在此处证明与Fmr1 KO小鼠的临床前发现相似。因此,在FXS患者中看到的EEG异常支持FXS中的新皮质超兴奋性模型,并可能提供有用的翻译生物标记物,以评估针对其神经基质的新型治疗策略。

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