Hoffman Steven J, Dotson Nicholas M, Lima Vinicius, Gray Charles M
Department of Cell Biology and Neuroscience, Montana State University, Bozeman, MT 59717, USA.
Current address: Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.
bioRxiv. 2024 Jan 30:2024.01.29.577843. doi: 10.1101/2024.01.29.577843.
Although cognitive functions are hypothesized to be mediated by synchronous neuronal interactions in multiple frequency bands among widely distributed cortical areas, we still lack a basic understanding of the distribution and task dependence of oscillatory activity across the cortical map. Here, we ask how the spectral and temporal properties of the local field potential (LFP) vary across the primate cerebral cortex, and how they are modulated during visual short-term memory. We measured the LFP from 55 cortical areas in two macaque monkeys while they performed a visual delayed match to sample task. Analysis of peak frequencies in the LFP power spectra reveals multiple discrete frequency bands between 3-80 Hz that differ between the two monkeys. The LFP power in each band, as well as the Sample Entropy, a measure of signal complexity, display distinct spatial gradients across the cortex, some of which correlate with reported spine counts in layer 3 pyramidal neurons. Cortical areas can be robustly decoded using a small number of spectral and temporal parameters, and significant task dependent increases and decreases in spectral power occur in all cortical areas. These findings reveal pronounced, widespread and spatially organized gradients in the spectral and temporal activity of cortical areas. Task-dependent changes in cortical activity are globally distributed, even for a simple cognitive task.
尽管认知功能被认为是由广泛分布的皮层区域中多个频段的同步神经元相互作用介导的,但我们仍然缺乏对整个皮层图谱上振荡活动的分布及其任务依赖性的基本理解。在这里,我们探讨了局部场电位(LFP)的频谱和时间特性在灵长类动物大脑皮层中的变化情况,以及它们在视觉短期记忆过程中是如何被调制的。我们在两只猕猴执行视觉延迟匹配样本任务时,测量了55个皮层区域的LFP。对LFP功率谱中的峰值频率进行分析,发现在3至80赫兹之间存在多个离散频段,两只猴子之间存在差异。每个频段的LFP功率以及作为信号复杂性度量的样本熵,在整个皮层上呈现出明显的空间梯度,其中一些与第3层锥体神经元中报道的棘突数量相关。使用少量的频谱和时间参数可以对皮层区域进行可靠解码,并且在所有皮层区域中都出现了与任务相关的频谱功率显著增加和减少的情况。这些发现揭示了皮层区域在频谱和时间活动方面显著、广泛且具有空间组织性的梯度变化。即使对于一个简单的认知任务,皮层活动中与任务相关的变化也是全局分布的。