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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Entorhinal cortex stimulation modulates amygdala and piriform cortex responses to olfactory bulb inputs in the rat.
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Entorhinal cortex stimulation modulates amygdala and piriform cortex responses to olfactory bulb inputs in the rat.

机译:内嗅皮层刺激调节杏仁核和梨状皮层对大鼠嗅球输入的反应。

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摘要

The rodent olfactory bulb sends direct projections to the piriform cortex and to two structures intimately implicated in memory processes, the entorhinal cortex and the amygdala. The piriform cortex has monosynaptic projections with the amygdala and the piriform cortex and is therefore in a position to modulate olfactory input either directly in the piriform cortex, or via the amygdala. In order to investigate this hypothesis, field potential signals induced in anesthetized rats by electrical stimulation of the olfactory bulb or the entorhinal cortex were recorded simultaneously in the piriform cortex (anterior part and posterior part) and the amygdala (basolateral nucleus and cortical nucleus). Single-site paired-pulse stimulation was used to assess the time courses of short-term inhibition and facilitation in each recording site in response to electrical stimulation of the olfactory bulb and entorhinal cortex. Paired-pulse stimulation of the olfactory bulb induced homosynaptic inhibition for short interpulse interpulse intervals (20-30 ms) in all the recording sites, with a significantly lower degree of inhibition in the anterior piriform cortex than in the other structures. At longer intervals (40-80 ms), paired-pulse facilitation was observed in all the structures. Paired-pulse stimulation of the entorhinal cortex mainly resulted in inhibition for the shortest interval duration (20 ms) in anterior piriform cortex, posterior piriform cortex and amygdala basolateral but not cortical nucleus. Double-site paired-pulse stimulation was then applied to determine if stimulation of the entorhinal cortex can modulate responses to olfactory bulb stimulation. For short interpulse intervals (20 ms) heterosynaptic inhibition was observed in anterior piriform cortex, posterior piriform cortex and amygdala basolateral but not cortical nucleus. The level of inhibition was greater in the basolateral nucleus than in the other structures. Taken together these data suggest that the entorhinal cortex exerts a main inhibitory effect on the olfactory input via the amygdala basolateral nucleus and to a lesser extent the piriform cortex. The potential role of these effects on the processing of olfactory information is discussed.
机译:啮齿类动物的嗅球直接投射到梨状皮层以及与记忆过程密切相关的两个结构,即内嗅皮层和杏仁核。梨状皮层具有与杏仁核和梨状皮层的单突触突起,因此可以直接在梨状皮层中或通过杏仁状体来调节嗅觉输入。为了研究这一假设,在梨状皮层(前,后部分)和杏仁核(基底外侧核和皮层核)中同时记录了通过嗅球或内嗅皮层的电刺激在麻醉大鼠中诱导的场电位信号。响应于嗅球和内嗅皮层的电刺激,使用单部位成对脉冲刺激来评估每个记录部位中短期抑制和促进的时间过程。嗅球的成对脉冲刺激在所有记录位点的短脉冲间脉冲间隔(20-30 ms)内诱导了同态突触抑制,与其他结构相比,梨形前皮层的抑制程度明显较低。在更长的时间间隔(40-80毫秒)内,在所有结构中均观察到了成对脉冲的促进作用。配对脉冲刺激内嗅皮层主要导致对梨状前皮层,梨状后皮层和杏仁核基底外侧的最短间隔持续时间(20 ms)的抑制,但对皮质核没有抑制作用。然后应用双部位成对脉冲刺激来确定内嗅皮质的刺激是否可以调节对嗅球刺激的反应。对于较短的脉冲间隔(20毫秒),在梨状前皮层,梨状后皮层和杏仁核基底外侧(但皮层核)未观察到异突触抑制。基底外侧核的抑制水平高于其他结构。这些数据加在一起表明,内嗅皮层通过杏仁核基底外侧核对嗅觉输入起主要抑制作用,而对梨状皮层的作用较小。讨论了这些效应对嗅觉信息处理的潜在作用。

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