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雄性大鼠条件性恐惧反应的社会缓冲的神经通路。

The neural pathway underlying social buffering of conditioned fear responses in male rats.

机构信息

Laboratory of Veterinary Ethology, The University of Tokyo, Tokyo, Japan.

出版信息

Eur J Neurosci. 2012 Nov;36(10):3429-37. doi: 10.1111/j.1460-9568.2012.08257.x. Epub 2012 Aug 21.

Abstract

In social animals, the presence of an affiliative conspecific alleviates acute stress responses, and this is termed social buffering. However, the neural mechanisms underlying social buffering have not been elucidated. We have reported that the main olfactory system mediates social buffering of conditioned fear responses in male rats, and this is accompanied by suppression of the lateral and central amygdala. Therefore, olfactory signals are probably transmitted from the main olfactory system to the amygdala. Because the lateral and central amygdala do not receive projections from the main olfactory bulb, the site that links the main olfactory bulb and amygdala was presumed to be located within the main olfactory system. To find the linkage site, we generated lesions within the main olfactory system, and found that a bilateral lesion in the posteromedial region of the olfactory peduncle (pmOP) blocked social buffering. Next, we determined that the pmOP receives direct projections from the main olfactory bulb. Finally, we demonstrated that the connection between the pmOP and ipsilateral amygdala is important for social buffering, and that the pmOP projects directly to the ipsilateral amygdala, including the lateral and central amygdala. On the basis of these results, we suggest that the pmOP links the main olfactory blub to the amygdala and enables social buffering of conditioned fear responses. These results provide the first comprehensive picture of the neural pathway underlying the social buffering phenomenon.

摘要

在社会性动物中,同种亲和个体的存在可以减轻急性应激反应,这被称为社会缓冲。然而,社会缓冲的神经机制尚未阐明。我们曾报道,主要嗅觉系统介导了雄性大鼠条件性恐惧反应的社会缓冲,同时伴随着杏仁核外侧核和中央核的抑制。因此,嗅觉信号可能从主要嗅觉系统传递到杏仁核。由于外侧和中央杏仁核不接受来自嗅球的投射,因此连接嗅球和杏仁核的部位被认为位于主要嗅觉系统内。为了找到连接部位,我们在主要嗅觉系统中制造了损伤,并发现嗅脚后内侧区(pmOP)的双侧损伤阻断了社会缓冲。接下来,我们确定 pmOP 接收来自嗅球的直接投射。最后,我们证明 pmOP 与同侧杏仁核之间的连接对于社会缓冲很重要,并且 pmOP 直接投射到同侧杏仁核,包括外侧和中央杏仁核。基于这些结果,我们提出 pmOP 将嗅球与杏仁核连接起来,从而实现了对条件性恐惧反应的社会缓冲。这些结果提供了社会缓冲现象的神经通路的第一个全面图景。

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