Center for Neural Science, New York University, New York, New York 10012, USA.
J Neurosci. 2010 Oct 13;30(41):13739-49. doi: 10.1523/JNEUROSCI.0743-10.2010.
The local field potential (LFP) and multiunit activity (MUA) are extracellularly recorded signals that describe local neuronal network dynamics. In our experiments, the LFP and MUA, recorded from the same electrode in macaque primary visual cortex V1 in response to drifting grating visual stimuli, were evaluated on coarse timescales (∼1-5 s) and fine timescales (<0.1 s). On coarse timescales, MUA and the LFP both produced sustained visual responses to optimal and non-optimal oriented visual stimuli. The sustainedness of the two signals across the population of recording sites was correlated (correlation coefficient, ∼0.4). At most recording sites, the MUA was at least as sustained as the LFP and significantly more sustained for optimal orientations. In previous literature, the blood oxygen level-dependent (BOLD) signal of functional magnetic resonance imaging studies was found to be more strongly correlated with the LFP than with the MUA as a result of the lack of sustained response in the MUA signal. Because we found that MUA was as sustained as the LFP, MUA may also be correlated with BOLD. On fine timescales, we computed the coherence between the LFP and MUA over the frequency range 10-150 Hz. The LFP and MUA were weakly but significantly coherent (∼0.14) in the gamma band (20-90 Hz). The amount of gamma-band coherence was correlated with the power in the gamma band of the LFP. The data were consistent with the proposal that the LFP and MUA are generated in a noisy, resonant cortical network.
局部场电位(LFP)和多单位活动(MUA)是描述局部神经元网络动力学的细胞外记录信号。在我们的实验中,从猕猴初级视觉皮层 V1 中的同一电极记录的 LFP 和 MUA,在粗时间尺度(约 1-5 秒)和细时间尺度(<0.1 秒)上进行了评估。在粗时间尺度上,MUA 和 LFP 对最优和非最优取向的视觉刺激都产生了持续的视觉反应。两个信号在记录位点的群体中的持续性是相关的(相关系数,约为 0.4)。在大多数记录位点,MUA 的持续性至少与 LFP 一样长,对于最优取向的信号,MUA 的持续性显著更长。在之前的文献中,由于 MUA 信号缺乏持续反应,功能磁共振成像研究的血氧水平依赖性(BOLD)信号与 LFP 的相关性比与 MUA 的相关性更强。由于我们发现 MUA 与 LFP 一样具有持续性,因此 MUA 也可能与 BOLD 相关。在细时间尺度上,我们计算了 LFP 和 MUA 之间在 10-150 Hz 频率范围内的相干性。LFP 和 MUA 在伽马频段(20-90 Hz)具有微弱但显著的相干性(约 0.14)。伽马带相干性的数量与 LFP 中伽马带的功率相关。数据与 LFP 和 MUA 是在嘈杂、共振皮质网络中产生的假设一致。