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人类内侧颞叶中的局部场电位和尖峰对图像类别具有选择性。

Local field potentials and spikes in the human medial temporal lobe are selective to image category.

作者信息

Kraskov Alexander, Quiroga Rodrigo Quian, Reddy Leila, Fried Itzhak, Koch Christof

机构信息

California Institute of Technology, California, USA.

出版信息

J Cogn Neurosci. 2007 Mar;19(3):479-92. doi: 10.1162/jocn.2007.19.3.479.

Abstract

Local field potentials (LFPs) reflect the averaged dendrosomatic activity of synaptic signals of large neuronal populations. In this study, we investigate the selectivity of LFPs and single neuron activity to semantic categories of visual stimuli in the medial temporal lobe of nine neurosurgical patients implanted with intracranial depth electrodes for clinical reasons. Strong selectivity to the category of presented images was found for the amplitude of LFPs in 8% of implanted microelectrodes and for the firing rates of single and multiunits in 14% of microelectrodes. There was little overlap between the LFP- and spike-selective microelectrodes. Separate analysis of the power and phase of LFPs revealed that the mean phase was category-selective around the theta frequency range and that the power of the LFPs was category-selective for high frequencies around the gamma rhythm. Of the 36 microelectrodes with amplitude-selective LFPs, 30 were found in the hippocampus. Finally, it was possible to readout information about the category of stimuli presented to the patients with both spikes and LFPs. Combining spiking and LFP activity enhanced the decoding accuracy in comparison with the accuracy obtained with each signal alone, especially for short time intervals.

摘要

局部场电位(LFPs)反映了大量神经元群体突触信号的平均树突体活动。在本研究中,我们调查了9名因临床原因植入颅内深度电极的神经外科患者颞叶内侧局部场电位和单个神经元活动对视觉刺激语义类别的选择性。在8%的植入微电极中发现局部场电位幅度对呈现图像的类别有强烈选择性,在14%的微电极中发现单个神经元和多个神经元的放电频率对呈现图像的类别有强烈选择性。局部场电位选择性微电极和锋电位选择性微电极之间几乎没有重叠。对局部场电位的功率和相位进行单独分析发现,平均相位在θ频率范围附近具有类别选择性,并且局部场电位的功率在γ节律附近的高频处具有类别选择性。在36个具有幅度选择性局部场电位的微电极中,有30个位于海马体中。最后,利用锋电位和局部场电位都有可能读出呈现给患者的刺激类别的信息。与单独使用每个信号获得的准确率相比,结合锋电位活动和局部场电位活动提高了解码准确率,尤其是在短时间间隔内。

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