University of Leicester.
J Cogn Neurosci. 2018 Jan;30(1):42-49. doi: 10.1162/jocn_a_01187. Epub 2017 Sep 11.
There is growing evidence that ongoing brain oscillations may represent a key regulator of attentional processes and as such may contribute to behavioral performance in psychophysical tasks. OFC appears to be involved in the top-down modulation of sensory processing; however, the specific contribution of ongoing OFC oscillations to perception has not been characterized. Here we used the rat whiskers as a model system to further characterize the relationship between cortical state and tactile detection. Head-fixed rats were trained to report the presence of a vibrotactile stimulus (frequency = 60 Hz, duration = 2 sec, deflection amplitude = 0.01-0.5 mm) applied to a single vibrissa. We calculated power spectra of local field potentials preceding the onset of near-threshold stimuli from microelectrodes chronically implanted in OFC and somatosensory cortex. We found a dissociation between slow oscillation power in the two regions in relation to detection probability: Higher OFC but not somatosensory delta power was associated with increased detection probability. Furthermore, coherence between OFC and barrel cortex was reduced preceding successful detection. Consistent with the role of OFC in attention, our results identify a cortical network whose activity is differentially modulated before successful tactile detection.
越来越多的证据表明,持续的脑振荡可能是注意力过程的关键调节者,因此可能有助于心理物理任务中的行为表现。OFC 似乎参与了感觉处理的自上而下的调制;然而,持续 OFC 振荡对感知的具体贡献尚未得到描述。在这里,我们使用大鼠胡须作为模型系统,进一步描述皮质状态与触觉检测之间的关系。固定在头部的大鼠被训练报告单个触须上施加的振动触觉刺激(频率=60Hz,持续时间=2 秒,偏转角幅度=0.01-0.5mm)的存在。我们从慢性植入 OFC 和体感皮层的微电极中计算了近阈值刺激开始前局部场电位的功率谱。我们发现,在与检测概率有关的两个区域的慢振荡功率之间存在差异:OFC 的 delta 功率较高而不是体感皮层的 delta 功率与检测概率的增加有关。此外,在成功检测之前,OFC 和桶状皮层之间的相干性降低。与 OFC 在注意力中的作用一致,我们的结果确定了一个皮质网络,其活动在成功的触觉检测之前被差异调节。