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Thalamo-cortical interactions modeled by forced weakly connected oscillatory networks

机译:丘脑-皮层相互作用的强迫弱连接振荡网络建模。

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In this paper we do not discuss what a thalamo-cortical system modeled by a weakly connected oscillators can do, but we rather discuss what it cannot do. Interactions between any two cortical columns having oscillatory dynamics crucially depend on their frequencies. When the frequencies are different, the interactions are functionally insignificant (i.e., they average to zero) even when there are synaptic connections between the cortical columns. We say that there is a frequency gap that prevents interactions. When the frequencies are equal (or close) the oscillators interact via phase deviations. By adjusting the frequency of oscillations, each cortical column can turn on or off its connections with other columns. This mechanism resembles that of selective tuning in frequency modulated (FM) radios. A weak non-constant thalamic input can remove the frequency gap and link any two oscillators provided the input is chosen appropriately. In the case of many cortical columns with incommensurable frequency gaps the thalamic forcing will be chaotic. By adjusting its temporal activity, the thalamus has complete control over information processing taking place in important parts of the cortex.
机译:在本文中,我们不讨论由弱连接的振荡器建模的丘脑-皮层系统可以做什么,而只是讨论它不能做什么。任何两个具有振荡动力学的皮质柱之间的相互作用主要取决于它们的频率。当频率不同时,即使皮质柱之间存在突触连接,相互作用在功能上也无关紧要(即,它们平均为零)。我们说存在一个防止相互作用的频差。当频率相等(或接近)时,振荡器通过相位偏差进行交互。通过调节振荡频率,每个皮层色谱柱都可以打开或关闭其与其他色谱柱的连接。此机制类似于在调频(FM)无线电中进行选择性调谐的机制。弱非恒定丘脑输入可以去除频率间隙和链接任何两个振荡器提供的输入,适当地选择。如果许多皮层柱的频率间隙无法估量,则丘脑强迫将是混乱的。通过调节其颞活动,丘脑可以完全控制发生在皮质重要部位的信息处理。

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