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The Laminar Cortex Model: A New Continuum Cortex Model Incorporating Laminar Architecture

机译:层皮质模型:包含层体系结构的新连续体皮质模型

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摘要

Local field potentials (LFPs) are widely used to study the function of local networks in the brain. They are also closely correlated with the blood-oxygen-level-dependent signal, the predominant contrast mechanism in functional magnetic resonance imaging. We developed a new laminar cortex model (LCM) to simulate the amplitude and frequency of LFPs. Our model combines the laminar architecture of the cerebral cortex and multiple continuum models to simulate the collective activity of cortical neurons. The five cortical layers (layer I, II/III, IV, V, and VI) are simulated as separate continuum models between which there are synaptic connections. The LCM was used to simulate the dynamics of the visual cortex under different conditions of visual stimulation. LFPs are reported for two kinds of visual stimulation: general visual stimulation and intermittent light stimulation. The power spectra of LFPs were calculated and compared with existing empirical data. The LCM was able to produce spontaneous LFPs exhibiting frequency-inverse (1/ƒ) power spectrum behaviour. Laminar profiles of current source density showed similarities to experimental data. General stimulation enhanced the oscillation of LFPs corresponding to gamma frequencies. During simulated intermittent light stimulation, the LCM captured the fundamental as well as high order harmonics as previously reported. The power spectrum expected with a reduction in layer IV neurons, often observed with focal cortical dysplasias associated with epilepsy was also simulated.
机译:局部场电势(LFP)被广泛用于研究大脑中局部网络的功能。它们也与血氧水平依赖性信号密切相关,后者是功能磁共振成像中的主要对比机制。我们开发了一个新的层状皮层模型(LCM)以模拟LFP的幅度和频率。我们的模型结合了大脑皮层的层状结构和多个连续体模型来模拟皮层神经元的集体活动。五个皮质层(I,II / III,IV,V和VI层)被模拟为单独的连续模型,在它们之间存在突触连接。 LCM用于模拟在不同视觉刺激条件下视觉皮层的动力学。据报道,LFP具有两种视觉刺激:普通视觉刺激和间歇性光刺激。计算了LFP的功率谱,并将其与现有经验数据进行了比较。 LCM能够产生自发的LFP,这些LFP表现出频率倒数(1 /ƒ)功率谱行为。电流源密度的层流曲线显示与实验数据相似。一般刺激增强了LFP与伽马频率相对应的振荡。在模拟的间歇性光刺激过程中,LCM捕获了先前报道的基波和高次谐波。还模拟了通常在伴有癫痫的局灶性皮质发育异常中观察到的第IV层神经元减少所预期的功率谱。

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