Department of Neurobiology and Howard Hughes Medical Institute, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Neurosci. 2011 Aug 31;31(35):12674-82. doi: 10.1523/JNEUROSCI.1856-11.2011.
Characterizing the functional connectivity between neurons is key for understanding brain function. We recorded spikes and local field potentials (LFPs) from multielectrode arrays implanted in monkey visual cortex to test the hypotheses that spikes generated outward-traveling LFP waves and the strength of functional connectivity depended on stimulus contrast, as described recently. These hypotheses were proposed based on the observation that the latency of the peak negativity of the spike-triggered LFP average (STA) increased with distance between the spike and LFP electrodes, and the magnitude of the STA negativity and the distance over which it was observed decreased with increasing stimulus contrast. Detailed analysis of the shape of the STA, however, revealed contributions from two distinct sources-a transient negativity in the LFP locked to the spike (∼0 ms) that attenuated rapidly with distance, and a low-frequency rhythm with peak negativity ∼25 ms after the spike that attenuated slowly with distance. The overall negative peak of the LFP, which combined both these components, shifted from ∼0 to ∼25 ms going from electrodes near the spike to electrodes far from the spike, giving an impression of a traveling wave, although the shift was fully explained by changing contributions from the two fixed components. The low-frequency rhythm was attenuated during stimulus presentations, decreasing the overall magnitude of the STA. These results highlight the importance of accounting for the network activity while using STAs to determine functional connectivity.
描述神经元之间的功能连接对于理解大脑功能至关重要。我们记录了植入猴子视觉皮层的多电极阵列的尖峰和局部场电位(LFP),以测试最近提出的假设,即尖峰产生向外传播的 LFP 波,并且功能连接的强度取决于刺激对比度。这些假设是基于观察到的尖峰触发 LFP 平均(STA)的峰值负性的潜伏期随尖峰和 LFP 电极之间的距离而增加,并且 STA 负性的幅度和观察到的距离随刺激对比度的增加而减小。然而,对 STA 形状的详细分析显示,它来自两个不同的来源——与尖峰锁定的 LFP 中的瞬态负性(约 0ms),其随距离迅速衰减,以及在尖峰后约 25ms 出现的低频节律,其随距离衰减缓慢。LFP 的整体负峰,它结合了这两个组成部分,从靠近尖峰的电极到远离尖峰的电极从约 0ms 转移到约 25ms,给人一种传播波的印象,尽管这种转变完全可以通过改变两个固定成分的贡献来解释。低频节律在刺激呈现期间被衰减,从而降低了 STA 的整体幅度。这些结果强调了在使用 STA 确定功能连接时考虑网络活动的重要性。