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通过弱外源性细胞外场对慢波神经振荡进行频率特异性调制揭示出一种共振模式。

Frequency-Specific Modulation of Slow-Wave Neural Oscillations via Weak Exogeneous Extracellular Fields Reveals a Resonance Pattern.

机构信息

ExpORL, Department of neurosciences, The Leuven Brain Institute, Katholieke Universiteit Leuven, Leuven B-3000, Belgium.

ExpORL, Department of neurosciences, The Leuven Brain Institute, Katholieke Universiteit Leuven, Leuven B-3000, Belgium

出版信息

J Neurosci. 2022 Aug 10;42(32):6221-6231. doi: 10.1523/JNEUROSCI.0177-22.2022. Epub 2022 Jul 5.

Abstract

Single neurons often exhibit endogenous oscillatory activity centered around a specific frequency band. Transcranial alternating current stimulation (tACS) can generate a weak oscillating extracellular field in the brain that causes subthreshold membrane potential shifts that can affect spike timing at the single neuron level. Many studies have now shown that the endogenous oscillation can be entrained when the tACS frequency matches that of the exogenous extracellular field. However, the effect of tACS on the amplitude of the endogenous oscillation has been less well studied. We investigated this by using exogenous extracellular fields to modulate slow-wave neural oscillations in the ketamine anesthetized male Wistar rat. We applied spatially broad extracellular fields of different frequencies while recording spiking activity from single neurons. The effect of the exogenous extracellular field on the slow-wave neural oscillation amplitude (NOA) followed a resonance pattern: large modulations were observed when the extracellular frequency matched the endogenous frequency of the neuron, while extracellular fields with frequencies far away from the endogenous frequency had little effect. No changes in spike-rate were observed for any of the extracellular fields applied. Our results demonstrate that in addition to the previously reported entrainment and Arnold tongue patterns, weak oscillating extracellular fields modulate the amplitude of the endogenous neural oscillation without any changes in spike-rate, and that this modulation follows a frequency-specific resonance pattern. Neural activity often oscillates around specific endogenous frequencies. Transcranial alternating current stimulation (tACS) is a neuromodulation method which biases spike-times and alter endogenous activity. Most tACS studies focus on entrainment effects which occur when tACS and endogenous neural frequencies are matched. In this study we varied the frequency of the applied tACS and investigated its effect on amplitude of the neural oscillation. Our results revealed a resonance pattern where tACS frequencies close to the endogenous frequency caused an increase in neural oscillation amplitude (NOA) specifically at the applied tACS frequency, while applying tACS frequencies farther away caused little or no change in NOA. Furthermore, applying tACS at differing frequencies caused the amplitude of the neural oscillation at the prestimulation endogenous frequency to decrease.

摘要

单个神经元通常表现出以特定频带为中心的内源性振荡活动。经颅交流电刺激 (tACS) 可以在大脑中产生一个微弱的振荡外场,导致亚阈膜电位变化,从而影响单个神经元水平的尖峰时间。许多研究现在表明,当 tACS 频率与外源性外场频率匹配时,内源性振荡可以被同步。然而,tACS 对内源性振荡幅度的影响研究得还不够充分。我们通过使用外源性外场来调制氯胺酮麻醉雄性 Wistar 大鼠的慢波神经振荡来研究这一点。我们在记录单个神经元的放电活动的同时,施加不同频率的空间广泛的外场。外源性外场对慢波神经振荡幅度 (NOA) 的影响遵循共振模式:当外场频率与神经元的内源性频率匹配时,观察到较大的调制;而外场频率远离内源性频率时,影响很小。对于施加的任何外场,都没有观察到尖峰率的变化。我们的结果表明,除了以前报道的同步和 Arnold 舌模式外,弱振荡外场在不改变尖峰率的情况下调节内源性神经振荡的幅度,并且这种调制遵循特定频率的共振模式。神经活动经常围绕特定的内源性频率振荡。经颅交流电刺激 (tACS) 是一种神经调节方法,它会偏向尖峰时间并改变内源性活动。大多数 tACS 研究都集中在同步效应上,即当 tACS 和内源性神经频率匹配时发生的同步效应。在这项研究中,我们改变了施加的 tACS 的频率,并研究了它对神经振荡幅度的影响。我们的结果揭示了一种共振模式,即施加的 tACS 频率接近内源性频率会导致特定于施加的 tACS 频率的神经振荡幅度增加 (NOA),而施加的 tACS 频率更远则会导致 NOA 几乎没有变化或没有变化。此外,施加不同频率的 tACS 会导致神经振荡在预刺激内源性频率下的幅度减小。

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