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α-Oscillations in the monkey sensorimotor network influence discrimination performance by rhythmical inhibition of neuronal spiking

机译:猴子感觉运动网络中的α振荡通过节律性抑制神经元突增来影响识别性能

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摘要

Extensive work in humans using magneto- and electroencepha-lography strongly suggests that decreased oscillatory α-activity (8-14 Hz) facilitates processing in a given region, whereas increased a-activity serves to actively suppress irrelevant or interfering processing. However, little work has been done to understand how a-activity is linked to neuronal firing. Here, we simultaneously recorded local field potentials and spikes from somatosensory, premotor, and motor regions while a trained monkey performed a vibrotactile discrimination task. In the local field potentials we observed strong activity in the a-band, which decreased in the sensorimotor regions during the discrimination task. This α-power decrease predicted better discrimination performance. Furthermore, the α-oscillations demonstrated a rhythmic relation with the spiking, such that firing was highest at the trough of the α-cycle. Firing rates increased with a decrease in a-power. These findings suggest that α-oscillations exercise a strong inhibitory influence on both spike timing and firing rate. Thus, the pulsed inhibition by α-oscillations plays an important functional role in the extended sensorimotor system.
机译:使用磁电图和脑电图法在人体上进行的大量研究强烈表明,降低的振荡α活性(8-14 Hz)有助于在给定区域进行加工,而增加的α活性有助于主动抑制无关或干扰的加工。但是,很少有工作来了解a活动如何与神经元放电有关。在这里,我们同时记录了局部场电位和来自体感,运动前和运动区的峰值,而受过训练的猴子则执行了触觉辨别任务。在局部场电势中,我们观察到了a波段的强活动,在区分任务期间,其在感觉运动区域下降了。 α功率的降低预示了更好的辨别性能。此外,α振荡表现出与尖峰的节奏关系,因此在α周期的谷点处发射最高。点火率随功率的降低而增加。这些发现表明,α振荡对尖峰正时和点火速率都具有强烈的抑制作用。因此,α振荡的脉冲抑制在扩展的感觉运动系统中起着重要的功能作用。

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  • 作者单位

    Donders Institute for Brain, Cognition, and Behaviour, Radboud University Nijmegen, 6500HB Nijmegen, The Netherlands;

    lnstituto de Fisiologia Celular-Neurociencias, Universidad Nacional Autonoma de Mexico, 04510 Mexico City, Mexico;

    lnstituto de Fisiologia Celular-Neurociencias, Universidad Nacional Autonoma de Mexico, 04510 Mexico City, Mexico;

    lnstituto de Fisiologia Celular-Neurociencias, Universidad Nacional Autonoma de Mexico, 04510 Mexico City, Mexico;

    Donders Institute for Brain, Cognition, and Behaviour, Radboud University Nijmegen, 6500HB Nijmegen, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:41:00

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