Limax在气味加工过程中的横向记忆储存和交叉抑制。

T Teyke, J W Wang, A Gelperin
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引用次数: 17

摘要

在完整的limmax maximus和向血腔注射LY后,标记的神经元群在左或右前脑叶中都有发现,但在两个前脑叶中都没有发现。这表明左右气味处理通路之间存在竞争性的相互作用,而前脑叶是其中的一部分。我们通过在鼻子上施加一股条件气味来诱发外腱束周围神经的神经放电,以记录左右气味处理通路之间的交叉抑制。用一种条件气味刺激一个上鼻所引起的外腱束周围神经的反应是强烈偏侧的,因为反应只发生在受刺激的一侧。同时用相同的条件气味刺激两个上鼻,在两个外侧束周神经中产生的反应类似于对单侧刺激的反应总和。同时刺激两个上鼻子,每个上鼻子都有不同的条件气味,导致两个外部腱束周围神经反应的强烈抑制。当同一侧的上、下鼻子同时受到刺激时,交叉抑制也很明显。一个侧向抑制机制,位于突触后的气味识别,似乎抑制外部束周神经的反应,如果两个鼻子接收到冲突的感觉输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lateralized memory storage and crossed inhibition during odor processing by Limax.

After odor conditioning intact Limax maximus and injecting LY into their haemocoel, labeled groups of neurons are found in either the right or left procerebral lobe but never in both procerebral lobes. This suggests that a competitive interaction occurs between right and left odor processing pathways of which the procerebral lobe is a part. We use the nerve discharge in the external peritentacular nerve evoked by applying a puff of conditioned odor to the nose to document crossed inhibition between left and right odor processing pathways. Responses in the external peritentacular nerve evoked by stimulating one superior nose with a conditioned odor are strongly lateralized as responses occur only on the stimulated side. Stimulating both superior noses simultaneously with the same conditioned odor yields responses in both external peritentacular nerves that resemble the sum of responses to unilateral stimulation. Simultaneously stimulating both superior noses, each with a different conditioned odor leads to strong inhibition of both external peritentacular nerve responses. The crossed inhibition is also evident if both superior and inferior noses on the same side are stimulated simultaneously. A lateral inhibitory mechanism, situated postsynaptic to odor recognition, appears to inhibit external peritentacular nerve responses if the two noses receive conflicting sensory inputs.

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