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首页> 外文期刊>Neuron >Olfactory predictive codes and stimulus templates in piriform cortex.
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Olfactory predictive codes and stimulus templates in piriform cortex.

机译:梨状皮层中的嗅觉预测代码和刺激模板。

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摘要

Neuroscientific models of sensory perception suggest that the brain utilizes predictive codes in advance of a stimulus encounter, enabling organisms to infer forthcoming sensory events. However, it is poorly understood how such mechanisms are implemented in the olfactory system. Combining high-resolution functional magnetic resonance imaging with multivariate (pattern-based) analyses, we examined the spatiotemporal evolution of odor perception in the human brain during an olfactory search task. Ensemble activity patterns in anterior piriform cortex (APC) and orbitofrontal cortex (OFC) reflected the attended odor target both before and after stimulus onset. In contrast, prestimulus ensemble representations of the odor target in posterior piriform cortex (PPC) gave way to poststimulus representations of the odor itself. Critically, the robustness of target-related patterns in PPC predicted subsequent behavioral performance. Our findings directly show that the brain generates predictive templates or "search images" in PPC, with physical correspondence to odor-specific pattern representations, to augment olfactory perception.
机译:感觉知觉的神经科学模型表明,大脑在遇到刺激之前会利用预测代码,从而使生物体能够推断即将来临的感觉事件。但是,人们对这种机制如何在嗅觉系统中实现的了解很少。结合高分辨率功能磁共振成像与多元(基于模式)分析,我们检查了嗅觉搜索任务期间人脑中气味感知的时空演变。梨状前皮层(APC)和眶额皮层(OFC)中的集合活动模式反映了刺激发作之前和之后出现的气味目标。相比之下,后梨状皮层(PPC)中气味目标的刺激前合奏表示让位于气味本身的刺激后表示。至关重要的是,PPC中与目标相关的模式的鲁棒性可预测随后的行为表现。我们的发现直接表明,大脑会在PPC中生成预测模板或“搜索图像”,并与气味特定的模式表示形式进行物理对应,以增强嗅觉。

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