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梨状周皮质和嗅周后皮质的切断会损害情境中物体的识别,但不会损害情境恐惧条件反射。

Disconnection of the Perirhinal and Postrhinal Cortices Impairs Recognition of Objects in Context But Not Contextual Fear Conditioning.

作者信息

Heimer-McGinn Victoria R, Poeta Devon L, Aghi Krishan, Udawatta Methma, Burwell Rebecca D

机构信息

Department of Cognitive, Linguistic, and Psychological Sciences and.

Department of Cognitive, Linguistic, and Psychological Sciences and

出版信息

J Neurosci. 2017 May 3;37(18):4819-4829. doi: 10.1523/JNEUROSCI.0254-17.2017. Epub 2017 Apr 14.

Abstract

The perirhinal cortex (PER) is known to process object information, whereas the rodent postrhinal cortex (POR), homolog to the parahippocampal cortex in primates, is thought to process spatial information. A number of studies, however, provide evidence that both areas are involved in processing contextual information. In this study, we tested the hypothesis that the rat POR relies on object information received from the PER to form complex representations of context. Using three fear-conditioning (FC) paradigms (signaled, unsignaled, and renewal) and two context-guided object recognition tasks (with 3D and 2D objects), we examined the effects of crossed excitotoxic lesions to the POR and the contralateral PER. Performance of rats with crossed lesions was compared with that of rats with ipsilateral POR plus PER lesions and sham-operated rats. We found that rats with contralateral PER-POR lesions were impaired in object-context recognition but not in contextual FC. Therefore, interaction between the POR and PER is necessary for context-guided exploratory behavior but not for associating fear with context. Our results provide evidence for the hypothesis that the POR relies on object and pattern information from the PER to encode representations of context. The association of fear with a context, however, may be supported by alternate cortical and/or subcortical pathways when PER-POR interaction is not available. Our results suggest that contextual FC may represent a special case of context-guided behavior. Representations of context are important for perception, memory, decision making, and other cognitive processes. Moreover, there is extensive evidence that the use of contextual representations to guide appropriate behavior is disrupted in neuropsychiatric and neurological disorders including developmental disorders, schizophrenia, affective disorders, and Alzheimer's disease. Many of these disorders are accompanied by changes in parahippocampal and hippocampal structures. Understanding how context is represented in the brain and how parahippocampal structures are involved will enhance our understanding and treatment of the cognitive and behavioral symptoms associated with neurological disorders and neuropsychiatric disease.

摘要

已知嗅周皮质(PER)处理物体信息,而啮齿动物的嗅后皮质(POR)与灵长类动物的海马旁皮质同源,被认为处理空间信息。然而,多项研究提供的证据表明,这两个区域都参与处理情境信息。在本研究中,我们测试了以下假设:大鼠POR依赖于从PER接收的物体信息来形成复杂的情境表征。使用三种恐惧条件反射(FC)范式(有信号、无信号和恢复)以及两项情境引导的物体识别任务(使用3D和2D物体),我们研究了对POR和对侧PER进行交叉兴奋性毒性损伤的影响。将交叉损伤大鼠的表现与同侧POR加PER损伤大鼠和假手术大鼠的表现进行比较。我们发现,对侧PER-POR损伤的大鼠在物体-情境识别方面受损,但在情境FC方面未受损。因此,POR和PER之间的相互作用对于情境引导的探索行为是必要的,但对于将恐惧与情境关联则不是必需的。我们的结果为以下假设提供了证据:POR依赖于来自PER的物体和模式信息来编码情境表征。然而,当PER-POR相互作用不存在时,恐惧与情境的关联可能由其他皮质和/或皮质下通路支持。我们的结果表明,情境FC可能代表情境引导行为的一种特殊情况。情境表征对于感知、记忆、决策和其他认知过程很重要。此外,有大量证据表明,在包括发育障碍、精神分裂症、情感障碍和阿尔茨海默病在内的神经精神和神经疾病中,使用情境表征来指导适当行为会受到干扰。这些疾病中的许多都伴有海马旁和海马结构的变化。了解情境在大脑中如何表征以及海马旁结构如何参与其中,将增进我们对与神经疾病和神经精神疾病相关的认知和行为症状的理解和治疗。

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