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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Beta-frequency (15-35 Hz) electroencephalogram activities elicited by toluene and electrical stimulation in the behaving rat.
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Beta-frequency (15-35 Hz) electroencephalogram activities elicited by toluene and electrical stimulation in the behaving rat.

机译:在行为正常的大鼠中,甲苯和电刺激引起的β频率(15-35 Hz)脑电图活动。

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Bursts of beta-frequency (15-35 Hz) electroencephalogram activity occur in the olfactory system during odour sampling, but their mode of propagation within the olfactory system and potential contribution to the mechanisms of learning and memory are unclear. We have elicited large-amplitude beta activity in the rat olfactory system by applying noxious olfactory stimuli (toluene), and have monitored the bursts via chronically-implanted electrodes. Following exposure to toluene, coherent bursts with a peak frequency of 19.8 +/- 0.9 Hz were observed in the olfactory bulb, piriform cortex, entorhinal cortex and dentate gyrus. The timing of the bursts and the phases of electroencephalogram cross-spectra indicate that beta bursts propagate in a caudal direction from the olfactory bulb to the entorhinal cortex. The time delays between peaks of bursts in these structures were similar to latency differences for field potentials evoked by olfactory bulb or piriform cortex test-pulses. Peaks of burst cycles in the dentate region, however, were observed just prior to those in the entorhinal cortex. Surprisingly, power in toluene-induced beta-frequency oscillations was not increased following long-term potentiation induced by tetanic stimulation of the olfactory bulb, piriform cortex and entorhinal cortex. The activity of local inhibitory mechanisms may therefore counteract the effects of synaptic enhancements in afferent pathways during beta bursts. Low-frequency electrical stimulation of the piriform cortex was most effective in inducing coherent oscillatory responses in the entorhinal cortex and dentate gyrus at stimulation frequencies between 12 and 16 Hz. The results show that repetitive polysynaptic volleys at frequencies in the beta band induced by either toluene or electrical stimulation are transmitted readily within the olfactory system. The propagation of neural activity within this frequency range may therefore contribute to the transmission of olfactory signals to the hippocampal formation, particularly for those odours which induce high-amplitude bursts of beta activity.
机译:在嗅觉采样期间,嗅觉系统会发生β频率(15-35 Hz)脑电图活动的爆发,但不清楚它们在嗅觉系统内的传播方式以及对学习和记忆机制的潜在贡献。我们通过应用有害的嗅觉刺激(甲苯)在大鼠嗅觉系统中引发了大幅度的β活性,并通过长期植入的电极监测了爆发。暴露于甲苯后,在嗅球,梨状皮层,内嗅皮层和齿状回中观察到峰值为19.8 +/- 0.9 Hz的连贯爆发。爆发的时间和脑电波谱的相位表明,β爆发从嗅球向尾部皮层沿尾方向传播。这些结构中爆发峰值之间的时间延迟类似于嗅球或梨状皮层测试脉冲引起的场电势的潜伏期差异。然而,在齿状区域中观察到爆裂周期的峰值恰好在内嗅皮层中。出人意料的是,由嗅球,梨状皮层和内嗅皮层的强直刺激引起的长期增强后,甲苯诱导的β-频率振荡的功率并未增加。因此,局部抑制机制的活性可以抵消β爆发期间传入途径中突触增强的影响。在12至16 Hz的刺激频率下,对梨状皮层的低频电刺激最有效地诱导内嗅皮层和齿状回的相干振荡响应。结果表明,由甲苯或电刺激引起的β带中的重复多突触齐射很容易在嗅觉系统内传播。因此,在该频率范围内神经活动的传播可能有助于嗅觉信号向海马结构的传递,尤其是对于那些引起β活性高幅度爆发的气味。

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