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Propagating wave and irregular dynamics: Spatiotemporal patterns of cholinergic theta oscillations in neocortex in vitro

机译:传播波和不规则动力学:体外新皮层胆碱能θ振荡的时空分布

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摘要

Neocortical “theta” oscillation (5- 12 Hz) has been observed in animals and human subjects but little is known about how the oscillation is organized in the cortical intrinsic networks. Here we use voltage-sensitive dye and optical imaging to study a carbachol/bicuculline induced theta (~8 Hz) oscillation in rat neocortical slices. The imaging has large signal-to-noise ratio, allowing us to map the phase distribution over the neocortical tissue during the oscillation. The oscillation was organized as spontaneous epochs and each epoch was composed of a “first spike”, a “regular” period (with relatively stable frequency and amplitude) and an “irregular” period (with variable frequency and amplitude) of oscillations. During each cycle of the regular oscillation one wave of activation propagated horizontally (parallel to the cortical lamina) across the cortical section at a velocity of ~50 mm/sec. Vertically the activity was synchronized through all cortical layers. This pattern of one propagating wave associated with one oscillation cycle was seen during all the regular cycles. The oscillation frequency varied noticeably at two neighboring horizontal locations (330 μm apart), suggesting that the oscillation is locally organized and each local oscillator is about equal or less than 300 μm wide horizontally. During irregular oscillations the spatiotemporal patterns were complex and sometimes the vertical synchronization decomposed, suggesting a de-coupling among local oscillators. Our data suggested that neocortical theta oscillation is sustained by multiple local oscillators. The coupling regime among the oscillators may determine the spatiotemporal pattern and switching between propagating waves and irregular patterns.
机译:在动物和人类受试者中已观察到新皮质“θ”振荡(5-12 Hz),但对皮质内在网络中的振荡如何组织的了解甚少。在这里,我们使用电压敏感的染料和光学成像来研究大鼠新皮质切片中卡巴胆碱/比库林引起的θ(〜8 Hz)振荡。成像具有大的信噪比,使我们能够在振荡期间绘制新皮层组织的相位分布图。振荡被组织为自发的时期,每个时期由一个振荡的“第一个尖峰”,一个“正常”时期(频率和振幅相对稳定)和一个“不规则”时期(频率和振幅可变)组成。在常规振荡的每个周期中,一个激活波以〜50 mm / sec的速度水平(平行于皮质椎板)在皮质部分传播。在垂直方向上,所有皮质层的活动均同步。在所有规则周期中都可以看到与一个振荡周期相关的一个传播波的模式。振荡频率在两个相邻的水平位置(相距330μm)处发生明显变化,这表明该振荡是局部组织的,并且每个局部振荡器的水平宽度大约等于或小于300μm。在不规则振荡期间,时空模式很复杂,有时垂直同步会分解,这表明本地振荡器之间存在解耦。我们的数据表明,新皮质theta振荡由多个本地振荡器维持。振荡器之间的耦合状态可以确定时空模式以及传播波和不规则模式之间的切换。

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