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Direct evidence for local oscillatory current sources and intracortical phase gradients in turtle visual cortex

机译:龟视觉皮层中局部振荡电流源和皮质内相梯度的直接证据

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Visual stimuli induce oscillations in the membrane potential of neurons in cortices of several species. In turtle, these oscillations take the form of linear and circular traveling waves. Such waves may be a consequence of a pacemaker that emits periodic pulses of excitation that propagate across a network of excitable neuro- nal tissue or may result from continuous and possibly reconfigu- rable phase shifts along a network with multiple weakly coupled neuronal oscillators. As a means to resolve the origin of wave propagation in turtle visual cortex, we performed simultaneous measurements of the local field potential at a series of depths throughout this cortex. Measurements along a single radial pen- etration revealed the presence of broadband current sources. with a center frequency near 20 Hz (gamma band), that were activated by visual stimulation. The spectral coherence between sources at two well-separated loci along a rostral--caudal axis revealed the pres- ence of systematic timing differences between localized cortical oscillators. These multiple oscillating current sources and their timing differences in a tangential plane are interpreted as the neuronal activity that underlies the wave motion revealed in previous imaging studies. The present data provide direct evidence for the inference from imaging of bidirectional wave motion that the stimulus-induced electrical waves in turtle visual cortex corre- spond to phase shifts in a network of coupled neuronal oscillators.
机译:视觉刺激在几种物种的皮质中引起神经元膜电位的振荡。在海龟中,这些振荡采取线性和圆形行波的形式。这样的波可能是起搏器的结果,该起搏器发出周期性的激励脉冲,在整个可兴奋的神经组织网络中传播,或者起因于沿着具有多个弱耦合神经振荡器的网络的连续且可能可重构的相移。作为解决海龟视觉皮层中波传播起源的一种方法,我们同时测量了整个皮层中一系列深度处的局部场电势。沿单个径向渗透的测量表明存在宽带电流源。中心频率接近20 Hz(伽马带),通过视觉刺激激活。沿鼻尖尾轴的两个完全分开的位点处的源之间的光谱相干性揭示了局部皮层振荡器之间存在系统定时差异。这些多个振荡电流源及其在切平面中的时序差异被解释为神经元活动,该活动是先前成像研究中揭示的波动的基础。目前的数据为双向波成像提供了直接的证据,即海龟视觉皮层中刺激诱发的电波与耦合的神经元振荡器网络中的相移相对应。

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