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Low-intensity electric fields induce two distinct response components in neocortical neuronal populations

机译:低强度电场在新皮层神经元群体中诱导两个不同的反应成分

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摘要

Low-intensity alternating electric fields applied to the scalp are capable of modulating cortical activity and brain functions, but the underlying mechanisms remain largely unknown. Here, we report two distinct components of voltage-sensitive dye signals induced by low-intensity, alternating electric fields in rodent cortical slices: a “passive component,” which corresponds to membrane potential changes directly induced by the electric field; and an “active component,” which is a widespread depolarization that is dependent on excitatory synaptic transmission. The passive component is stationary, with amplitude and phase accurately reflecting the cortical cytoarchitecture. In contrast, the active component is initiated from a local “hot spot” of activity and spreads to a large population as a propagating wave with rich local dynamics. The propagation of the active component may play a role in modulating large-scale cortical activity by spreading a low level of excitation from a small initiation point to a vast neuronal population.
机译:施加在头皮上的低强度交流电场能够调节皮层活动和大脑功能,但是其潜在机制仍然未知。在这里,我们报告由啮齿动物皮层中的低强度交替电场引起的电压敏感染料信号的两个不同成分:“无源成分”,它对应于电场直接引起的膜电位变化。以及“活性成分”,这是广泛的去极化,其依赖于兴奋性突触传递。被动组件是固定的,其幅度和相位准确地反映了皮质的细胞结构。相反,活性成分是从活动的局部“热点”开始的,并以具有丰富的局部动力学的传播波传播到大量人群。活性成分的传播可通过将低水平的激发信号从小的起始点扩散到大量的神经元种群,从而在调节大规模皮质活动中发挥作用。

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