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外侧缰核对梨状皮层活动的调制及精细气味辨别。

Lateral entorhinal modulation of piriform cortical activity and fine odor discrimination.

机构信息

Emotional Brain Institute, Nathan Kline Institute for Psychiatric Research, Orangeburg, New York 10962, USA.

出版信息

J Neurosci. 2013 Aug 14;33(33):13449-59. doi: 10.1523/JNEUROSCI.1387-13.2013.

Abstract

The lateral entorhinal cortex (LEC) receives direct input from olfactory bulb mitral cells and piriform cortical pyramidal cells and is the gateway for olfactory input to the hippocampus. However, the LEC also projects back to the piriform cortex and olfactory bulb. Activity in the LEC is shaped by input from the perirhinal cortices, hippocampus, and amygdala, and thus could provide a rich contextual modulation of cortical odor processing. The present study further explored LEC feedback to anterior piriform cortex by examining how LEC top-down input modulates anterior piriform cortex odor evoked activity in rats. Retrograde viral tracing confirmed rich LEC projections to both the olfactory bulb and piriform cortices. In anesthetized rats, reversible lesions of the ipsilateral LEC increased anterior piriform cortical single-unit spontaneous activity. In awake animals performing an odor discrimination task, unilateral LEC reversible lesions enhanced ipsilateral piriform cortical local field potential oscillations during odor sampling, with minimal impact on contralateral activity. Bilateral LEC reversible lesions impaired discrimination performance on a well learned, difficult odor discrimination task, but had no impact on a well learned simple odor discrimination task. The simple discrimination task was impaired by bilateral reversible lesions of the anterior piriform cortex. Given the known function of LEC in working memory and multisensory integration, these results suggest it may serve as a powerful top-down modulator of olfactory cortical function and odor perception. Furthermore, the results provide potential insight into how neuropathology in the entorhinal cortex could contribute to early olfactory deficits seen in Alzheimer's disease.

摘要

外侧缰状回(LEC)接收来自嗅球僧帽细胞和梨状皮质锥体细胞的直接输入,是嗅觉输入海马体的门户。然而,LEC 也向后投射到梨状皮质和嗅球。来自边缘皮质、海马体和杏仁核的输入塑造了 LEC 的活动,因此可以为皮质气味处理提供丰富的上下文调制。本研究通过检查 LEC 自上而下的输入如何调节大鼠前梨状皮质的气味诱发活动,进一步探索了 LEC 对前梨状皮质的反馈。逆行病毒追踪证实 LEC 向嗅球和梨状皮质投射丰富。在麻醉大鼠中,同侧 LEC 的可逆性损伤增加了前梨状皮质的单个单元自发活动。在执行气味辨别任务的清醒动物中,单侧 LEC 可逆性损伤增强了嗅觉采样期间同侧梨状皮质局部场电位振荡,对对侧活动的影响最小。双侧 LEC 可逆性损伤损害了对一个已很好学习的、困难的气味辨别任务的辨别性能,但对一个已很好学习的简单气味辨别任务没有影响。双侧前梨状皮质的可逆性损伤损害了简单的辨别任务。鉴于 LEC 在工作记忆和多感觉整合中的已知功能,这些结果表明它可能作为嗅觉皮质功能和嗅觉感知的强大自上而下的调制器。此外,这些结果为边缘回状皮层神经病理学如何导致阿尔茨海默病早期嗅觉缺陷提供了潜在的见解。

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