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True and False Recognition Memories of Odors Induce Distinct Neural Signatures

机译:气味的真假识别记忆诱导独特的神经签名

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摘要

Neural bases of human olfactory memory are poorly understood. Very few studies have examined neural substrates associated with correct odor recognition, and none has tackled neural networks associated with incorrect odor recognition. We investigated the neural basis of task performance during a yes–no odor recognition memory paradigm in young and elderly subjects using event-related functional magnetic resonance imaging. We explored four response categories: correct (Hit) and incorrect false alarm (FA) recognition, as well as correct (CR) and incorrect (Miss) rejection, and we characterized corresponding brain responses using multivariate analysis and linear regression analysis. We hypothesized that areas of the medial temporal lobe were differentially involved depending on the accuracy of odor recognition. In young adults, we found that significant activity in the hippocampus and the parahippocampal gyrus was associated with correct (true) recognition of odors, whereas the perirhinal cortex was associated with FAs and Misses. These findings are consistent with literature regarding hypothetical functional organization for memory processing. We also found that for correct recognition and rejection responses, the involvement of the hippocampus decreased when memory performances improved. In contrast to young individuals, elderly subjects were more prone to false memories and exhibited less specific activation patterns for the four response categories. Activation in the hippocampus and the parahippocampal gyrus was positively correlated with response bias scores for true and false recognition, demonstrating that conservative subjects produced an additional search effort leading to more activation of these two medial temporal lobe regions. These findings demonstrate that correct and incorrect recognition and rejection induce distinct neural signatures.
机译:人们对嗅觉记忆的神经基础知之甚少。很少有研究检查与正确气味识别相关的神经基质,而没有研究解决与错误气味识别相关的神经网络。我们使用事件相关的功能磁共振成像技术,对年轻人和老年受试者的是-无气味识别记忆范例进行了任务执行的神经基础。我们探索了四个响应类别:正确(Hit)和错误假警报(FA)识别,以及正确(CR)和错误(Miss)拒绝,并且我们使用多元分析和线性回归分析对相应的大脑反应进行了特征描述。我们假设根据气味识别的准确性不同程度地涉及颞叶内侧区域。在年轻人中,我们发现海马和海马旁回的显着活动与对气味的正确(正确)识别有关,而周围神经皮层与FA和Misses有关。这些发现与关于假设的记忆处理功能组织的文献一致。我们还发现,对于正确的识别和排斥反应,当记忆表现改善时,海马的参与减少。与年轻的个体相比,老年受试者更容易产生错误的记忆,并且在四个反应类别中表现出较少的特异性激活模式。海马和海马旁回的激活与正确和错误识别的反应偏差得分呈正相关,表明保守受试者产生了额外的搜索努力,导致这两个颞叶内侧区域的激活程度更高。这些发现表明,正确和不正确的识别和排斥反应会引起明显的神经信号。

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