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首页> 外文期刊>Brain research >Dynamics of infraslow potentials in the primary auditory cortex: component analysis and contribution of specific thalamic-cortical and non-specific brainstem-cortical influences.
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Dynamics of infraslow potentials in the primary auditory cortex: component analysis and contribution of specific thalamic-cortical and non-specific brainstem-cortical influences.

机译:初级听觉皮层的超低位电位动态:成分分析和特定的丘脑-皮层和非特定的脑干-皮层影响。

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摘要

Several available reports demonstrate the presence of infraslow activity (0.5 Hz) in structures of the auditory system of the brain. It was reported earlier that specific alterations of this activity in the domain of seconds (0.1-0.5 Hz) occurred in the medial geniculate nucleus (MGN) and primary auditory cortex (A1) in response to acoustic stimuli. The present study was performed to test two hypotheses: (1) that potentials in the domain of seconds (0.1-0.5 Hz) reflect specific and direct interactions of the MGN and A1 during neural processing of sensory information, and (2) that low-frequency infraslow potentials in the A1 (0.1 Hz) are related to brainstem influences originating from the locus coeruleus (LC) and dorsal raphe nucleus (DRN). The experimental subjects were 25 adult rats with chronic stereotaxic electrodes implanted in the MGN, A1, LC, and DRN. The animals were anesthetized and infraslow activity was once recorded under several experimental conditions: (1) in the A1 before and after electrical stimulation of MGN, (2) in the A1 before and after electrical stimulation of LC, and (3) in the A1 before and after electrical stimulation of DRN. The effects of MGN stimulation were limited to overall increases in spectral power in the frequency domain of 0.1-0.5 Hz. Specifically, power increased in the frequencies of 0.1-0.25, 0.35-0.4, and 0.45-0.5 Hz in the A1 after MGN stimulation. The electrical stimulation of either the LC or DRN affected only multisecond activity (0.0167-0.04 Hz) in the A1 in the similar way (increase of powers of multisecond potentials), but it does not induced any changes in the activity with the frequencies of 0.1-0.5 Hz in this structure. These results support tentative conclusions that infraslow activity in the range of 0.1-0.5 Hz is implicated in specific mechanisms of interactions within the MGN-A1 thalamic-cortical system, whereas multisecond potentials (0.0167-0.04 Hz) in A1 are mainly attributed to the influences of brainstem nuclei (like LC and DRN) on general neuronal excitability of this auditory cortical area.
机译:一些可用的报告表明,在大脑的听觉系统的结构中存在次慢活动(<0.5 Hz)。早先有报道说,响应于声刺激,内侧膝状核(MGN)和初级听觉皮层(A1)在数秒的范围内(0.1-0.5 Hz)发生了这种活性的特定改变。进行本研究以检验两个假设:(1)几秒钟内的电势(0.1-0.5 Hz)反映了在感官信息的神经处理过程中MGN和A1的特异性和直接相互作用,以及(2) A1中的次红外线频率(<0.1 Hz)与源自脑蓝斑(LC)和背脊核(DRN)的脑干影响有关。实验对象是25只成年大鼠,其中的慢性立体定向电极植入MGN,A1,LC和DRN中。麻醉动物,并在几种实验条件下记录下次活动:(1)在MGN电刺激之前和之后的A1中,(2)在LC电刺激之前和之后的A1中,和(3)在A1中DRN电刺激前后。 MGN刺激的作用仅限于在0.1-0.5 Hz的频域中频谱功率的整体增加。具体而言,在MGN刺激后,A1中的功率以0.1-0.25、0.35-0.4和0.45-0.5 Hz的频率增加。 LC或DRN的电刺激以类似方式(增加多秒电位的功率)仅影响A1中的多秒活动(0.0167-0.04 Hz),但在频率为0.1时不会引起活动的任何变化。在这种结构中为-0.5 Hz。这些结果支持初步结论,即MGN-A1丘脑-皮层系统内相互作用的具体机制与0.1-0.5 Hz范围内的超低活动有关,而A1中的多秒电位(0.0167-0.04 Hz)主要归因于这种影响脑干核(如LC和DRN)对这个听觉皮层区域的一般神经元兴奋性的影响。

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