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Gamma oscillations in V1 are correlated with GABAA receptor density: A multi-modal MEG and Flumazenil-PET study

机译:V1中的伽马振荡与GABAA受体密度相关:多模式MEG和Flumazenil-PET研究

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摘要

High-frequency oscillations in the gamma-band reflect rhythmic synchronization of spike timing in active neural networks. The modulation of gamma oscillations is a widely established mechanism in a variety of neurobiological processes, yet its neurochemical basis is not fully understood. Modeling, in-vitro and in-vivo animal studies suggest that gamma oscillation properties depend on GABAergic inhibition. In humans, search for evidence linking total GABA concentration to gamma oscillations has led to promising -but also to partly diverging- observations. Here, we provide the first evidence of a direct relationship between the density of GABAA receptors and gamma oscillatory gamma responses in human primary visual cortex (V1). By combining Flumazenil-PET (to measure resting-levels of GABAA receptor density) and MEG (to measure visually-induced gamma oscillations), we found that GABAA receptor densities correlated positively with the frequency and negatively with amplitude of visually-induced gamma oscillationsin V1. Our findings demonstrate that gamma-band response profiles of primary visual cortex across healthy individuals are shaped by GABAA-receptor-mediated inhibitory neurotransmission. These results bridge the gap with in-vitro and animal studies and may have future clinical implications given that altered GABAergic function, including dysregulation of GABAA receptors, has been related to psychiatric disorders including schizophrenia and depression.
机译:γ波段中的高频振荡反映了主动神经网络中尖峰定时的节奏性同步。 γ振荡的调制是各种神经生物学过程中广泛建立的机制,但其神经化学基础尚未完全了解。建模,体外和体内动物研究表明,γ振荡特性取决于GABA能抑制。在人类中,寻找将总GABA浓度与伽马振荡联系起来的证据不仅带来了希望,而且也导致了部分分歧。在这里,我们提供了人类主要视觉皮层(V1)中GABAA受体的密度与伽马振荡伽马响应之间直接关系的第一个证据。通过结合Flumazenil-PET(用于测量GABAA受体密度的静息水平)和MEG(用于测量视觉诱发的伽马振动),我们发现V1中GABAA受体密度与视觉诱发的伽马振动的频率呈正相关,与振幅呈负相关。我们的发现表明,健康个体中主要视觉皮层的γ波段反应谱是由GABAA受体介导的抑制性神经传递形成的。这些结果弥补了体外和动物研究的空白,并且鉴于改变的GABA能功能(包括GABA A受体的调节异常)与精神病(包括精神分裂症和抑郁症)有关,可能具有未来的临床意义。

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