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两名脑损伤面孔失认症患者梭状回中部的面孔身份编码异常。

Abnormal face identity coding in the middle fusiform gyrus of two brain-damaged prosopagnosic patients.

作者信息

Steeves Jennifer, Dricot Laurence, Goltz Herbert C, Sorger Bettina, Peters Judith, Milner A David, Goodale Melvyn A, Goebel Rainer, Rossion Bruno

机构信息

Centre for Vision Research, Department of Psychology, York University, Toronto, Canada.

出版信息

Neuropsychologia. 2009 Oct;47(12):2584-92. doi: 10.1016/j.neuropsychologia.2009.05.005. Epub 2009 May 18.

Abstract

We report a functional magnetic resonance imaging (fMRI) adaptation study of two well-described patients, DF and PS, who present face identity recognition impairments (prosopagnosia) following brain-damage. Comparing faces to non-face objects elicited activation in all visual areas of the cortical face processing network that were spared subsequent to brain damage. The common brain lesion in the two patients was in the right inferior occipital cortex, in the territory of the right "occipital face area" ('OFA'), which strengthens the critical role of this region in processing faces. Despite the lesion to the right 'OFA', there was normal range of sensitivity to faces in the right "fusiform face area" ('FFA') in both patients, supporting a non-hierarchical model of face processing at the cortical level. At the same time, however, sensitivity to individual face representations, as indicated by release from adaptation to identity, was abnormal in the right 'FFA' of both patients. This suggests that the right 'OFA' is necessary to individualize faces, perhaps through reentrant interactions with other cortical face sensitive areas. The lateral occipital area (LO) is damaged bilaterally in patient DF, who also shows visual object agnosia. However, in patient PS, in whom LO was spared, sensitivity to individual representations of non-face objects was still found in this region, as in the normal brain, consistent with her preserved object recognition abilities. Taken together, these observations, which fruitfully combine functional imaging and neuropsychology, place strong constraints on the possible functional organization of the cortical areas mediating face processing in the human brain.

摘要

我们报告了一项针对两名已详细描述的患者DF和PS的功能磁共振成像(fMRI)适应性研究,这两名患者在脑损伤后出现面部身份识别障碍(面孔失认症)。将面孔与非面孔物体进行比较时,在脑损伤后未受损的皮质面部处理网络的所有视觉区域均引发了激活。这两名患者的共同脑损伤位于右侧枕下回,即右侧“枕叶面部区域”(‘OFA’)范围内,这强化了该区域在处理面孔方面的关键作用。尽管右侧‘OFA’受损,但两名患者右侧“梭状回面部区域”(‘FFA’)对面孔的敏感度仍在正常范围内,这支持了皮质层面面部处理的非层级模型。然而,与此同时,两名患者右侧‘FFA’中对个体面部表征的敏感度(以身份适应性释放表示)均异常。这表明右侧‘OFA’对于区分不同面孔可能是必要的,或许是通过与其他皮质面部敏感区域的折返式相互作用来实现的。患者DF双侧枕外侧区(LO)受损,其还表现出视觉物体失认症。然而,在LO未受损的患者PS中,该区域对非面孔物体的个体表征仍具有敏感度,如同在正常大脑中一样,这与她保留的物体识别能力相符。综上所述,这些将功能成像与神经心理学有效结合的观察结果,对介导人类大脑面部处理的皮质区域可能的功能组织施加了严格限制。

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