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理解逆行性遗忘症:动物研究的启示。

Understanding retrosplenial amnesia: insights from animal studies.

机构信息

School of Psychology, Cardiff University, Tower Building, Cardiff, Wales, UK.

出版信息

Neuropsychologia. 2010 Jul;48(8):2328-38. doi: 10.1016/j.neuropsychologia.2009.09.030. Epub 2009 Oct 2.

Abstract

Bilateral damage in the posterior cingulate region can induce anterograde amnesia. Identifying the potential contributions of the various areas within this heterogeneous region has, however, largely depended on animal research. Within the posterior cingulate region the retrosplenial cortex stands out by virtue of its dense interconnections with the hippocampal formation and anterior thalamic nuclei. Consistent with these connections is the finding from lesion studies in animals that the retrosplenial cortex is necessary for navigation and spatial learning, and that these functions occur in close conjunction with the hippocampal formation and anterior thalamus. Suggested functions include the creation and maintenance of scenes, linked to the switching between scenes based on different frameworks (e.g. egocentric versus allocentric). More fine-grain analyses suggest that there are functional distinctions between the subregions within the retrosplenial cortex, though these subregions are likely to then act as a coordinated unit. Other studies reveal that the retrosplenial cortex is highly sensitive to damage in distal sites, including damage to sites that do not have direct retrosplenial connections. The resultant retrosplenial dysfunctions, which include decreases in metabolic activity and a loss of plasticity, may contribute both to diencephalic and temporal lobe amnesias as well as to Alzheimer's disease.

摘要

双侧后扣带回区域损伤可导致顺行性遗忘症。然而,确定该异质区域内各个区域的潜在贡献在很大程度上取决于动物研究。在后扣带回区域内,后扣带回皮层因其与海马结构和前丘脑核的密集连接而引人注目。与这些连接一致的是,动物损伤研究的发现表明,后扣带回皮层对于导航和空间学习是必要的,并且这些功能与海马结构和前丘脑密切相关。建议的功能包括创建和维持场景,这些场景与基于不同框架(例如,自我中心与客体中心)之间的场景切换有关。更精细的分析表明,后扣带回皮层的各个亚区之间存在功能上的区别,尽管这些亚区可能作为一个协调的单元发挥作用。其他研究表明,后扣带回皮层对远端部位的损伤非常敏感,包括对没有直接后扣带回连接的部位的损伤。由此产生的后扣带回功能障碍,包括代谢活性降低和失去可塑性,可能导致间脑和颞叶遗忘症以及阿尔茨海默病。

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