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Selective Dissociation Between Core and Extended Regions of the Face Processing Network in Congenital Prosopagnosia

机译:先天性前列腺癌患者面部处理网络核心区域和扩展区域之间的选择性分离

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摘要

There is growing consensus that accurate and efficient face recognition is mediated by a neural circuit composed of a posterior “core” and an anterior “extended” set of regions. Here, we characterize the distributed face network in human individuals with congenital prosopagnosia (CP)—a lifelong impairment in face processing—relative to that of matched controls. Using functional magnetic resonance imaging, we first uncover largely normal activation patterns in the posterior core face patches in CP. We also document normal activity of the amygdala (emotion processing) as well as normal or even enhanced functional connectivity between the amygdala and the core regions. Critically, in the same individuals, activation of the anterior temporal cortex (identity processing) is reduced and connectivity between this region and the posterior core regions is disrupted. The dissociation between the neural profiles of the anterior temporal lobe and amygdala was evident both during a task-related face scan and during a resting state scan, in the absence of visual stimulation. Taken together, these findings elucidate selective disruptions in neural circuitry in CP and offer an explanation for the known differential difficulty in identity versus emotional expression recognition in many individuals with CP.
机译:越来越多的人认为,准确有效的人脸识别是由后部“核心”和前部“扩展”区域组成的神经回路介导的。在这里,我们描述了先天性前列腺癌(CP)的人脸的分布式分布网络,这是人脸加工的终生障碍,相对于相匹配的对照组。使用功能磁共振成像,我们首先在CP的后核心面部斑块中发现大部分正常的激活模式。我们还记录了杏仁核的正常活动(情感处理),以及杏仁核和核心区域之间正常甚至增强的功能连接。至关重要的是,在同一个人中,前颞叶皮质的激活(身份处理)减少,并且该区域与后核心区域之间的连通性被破坏。在没有视觉刺激的情况下,与任务相关的面部扫描和静止状态扫描期间,前颞叶和杏仁核的神经轮廓之间的分离都很明显。综上所述,这些发现阐明了CP中神经回路的选择性破坏,并为已知的许多CP患者在身份识别与情感表达识别方面的差异性困难提供了解释。

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