Center for Neuropsychiatric Schizophrenia Research (CNSR), Faculty of Health Sciences, University of Copenhagen, Glostrup, Denmark.
Neuroimage. 2011 Feb 14;54(4):2711-8. doi: 10.1016/j.neuroimage.2010.11.039. Epub 2010 Nov 23.
Reduced sensory gating appears to be among the core features in schizophrenia. The sources of sensory gating however are largely unknown. The aim of the current study was to identify these sources, with concurrent EEG and fMRI methodology. Twenty healthy male volunteers were tested with identical P50 suppression paradigms in two separate sessions: an EEG setting, and an EEG concurrent with fMRI setting. The stimuli in the P50 paradigm consisted of weak electrical stimulation of the left median nerve. The stimuli were presented in pairs with either 500 ms or 1000 ms interstimulus intervals (ISI). No difference was found between the EEG setting and the concurrent EEG and fMRI setting. P50 suppression was, in both settings, found only in the 500 ms trials, not in the 1000 ms trials. EEG-dipole modeling resulted in 4 sources located in the medial frontal gyrus, the insula, the hippocampus, and primary somatosensory cortex. These sources corresponded to significant fMRI clusters located in the medial frontal gyrus, the insula, the claustrum, and the hippocampus. Activity in the hippocampus and the claustrum was higher in the trials with suppression, suggesting that these brain areas are involved in the inhibitory processes of P50 suppression. The opposite was found for activity in the medial frontal gyrus and the insula, suggesting that these brain areas are involved in the generation of the P50 amplitude. To our knowledge, this is the first study demonstrating that P50 suppression can be reliably assessed inside an MRI scanner.
感觉门控减少似乎是精神分裂症的核心特征之一。然而,感觉门控的来源在很大程度上是未知的。本研究的目的是使用同时进行的 EEG 和 fMRI 方法来确定这些来源。二十名健康男性志愿者在两个单独的会话中接受了相同的 P50 抑制范式测试:一个 EEG 设置和一个 EEG 与 fMRI 同时设置。P50 范式中的刺激由左侧正中神经的弱电刺激组成。刺激以对的形式呈现,对间间隔(ISI)为 500 毫秒或 1000 毫秒。在 EEG 设置和同时进行的 EEG 和 fMRI 设置之间没有发现差异。在这两种设置中,仅在 500 毫秒的试验中发现 P50 抑制,而在 1000 毫秒的试验中没有发现。EEG-偶极子建模导致 4 个源位于额内侧回、岛叶、海马体和初级体感皮层。这些源与位于额内侧回、岛叶、屏状核和海马体的显著 fMRI 簇相对应。在有抑制作用的试验中,海马体和屏状核的活动更高,这表明这些脑区参与了 P50 抑制的抑制过程。相反,在额内侧回和岛叶的活动中发现了相反的情况,这表明这些脑区参与了 P50 振幅的产生。据我们所知,这是第一个证明 P50 抑制可以在 MRI 扫描仪内可靠评估的研究。