Song Min, Shin Eun Ju, Seo Hyojung, Soltani Alireza, Steinmetz Nicholas A, Lee Daeyeol, Jung Min Whan, Paik Se-Bum
bioRxiv. 2024 Aug 4:2023.05.12.540610. doi: 10.1101/2023.05.12.540610.
Many anatomical and physiological features of cortical circuits, ranging from the biophysical properties of synapses to the connectivity patterns among different neuron types, exhibit consistent variation along the hierarchical axis from sensory to association areas. Notably, the scale of temporal correlation of neural activity at rest, known as the intrinsic timescale, increases systematically along this hierarchy in both primates and rodents, analogous to the growing scale and complexity of spatial receptive fields. However, how the timescales for task-related activity vary across brain regions and whether their hierarchical organization appears consistently across different mammalian species remain unexplored. Here, we show that both the intrinsic timescale and the timescales of task-related activity follow a similar hierarchical gradient in the cortices of monkeys, rats, and mice. We also found that these timescales covary similarly in both the cortex and basal ganglia, whereas the timescales of thalamic activity are shorter than cortical timescales and do not conform to the hierarchical order predicted by their cortical projections. These results suggest that the hierarchical gradient of cortical timescales might be a universal feature of intra-cortical circuits in the mammalian brain.
皮质回路的许多解剖学和生理学特征,从突触的生物物理特性到不同神经元类型之间的连接模式,在从感觉区域到联合区域的层级轴上都呈现出一致的变化。值得注意的是,静息时神经活动的时间相关性尺度,即所谓的固有时间尺度,在灵长类动物和啮齿动物中都沿着这一层级系统地增加,这类似于空间感受野的尺度和复杂性的增加。然而,与任务相关活动的时间尺度如何在不同脑区变化,以及它们的层级组织在不同哺乳动物物种中是否一致出现,仍有待探索。在这里,我们表明,固有时间尺度和与任务相关活动的时间尺度在猴子、大鼠和小鼠的皮质中都遵循类似的层级梯度。我们还发现,这些时间尺度在皮质和基底神经节中也有类似的共变,而丘脑活动的时间尺度比皮质时间尺度短,并且不符合其皮质投射所预测的层级顺序。这些结果表明,皮质时间尺度的层级梯度可能是哺乳动物脑内皮质回路的一个普遍特征。