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卷尾猴(僧帽猴)中屏状核向前额叶皮质的投射。

Claustrum projections to prefrontal cortex in the capuchin monkey (Cebus apella).

作者信息

Reser David H, Richardson Karyn E, Montibeller Marina O, Zhao Sherry, Chan Jonathan M H, Soares Juliana G M, Chaplin Tristan A, Gattass Ricardo, Rosa Marcello G P

机构信息

Department of Physiology, Monash University Clayton, VIC, Australia.

Department of Physiology, Monash University Clayton, VIC, Australia ; Department of Psychology and Psychiatric Medicine, Monash University Clayton, VIC, Australia.

出版信息

Front Syst Neurosci. 2014 Jul 3;8:123. doi: 10.3389/fnsys.2014.00123. eCollection 2014.

Abstract

We examined the pattern of retrograde tracer distribution in the claustrum following intracortical injections into the frontal pole (area 10), and in dorsal (area 9), and ventral lateral (area 12) regions of the rostral prefrontal cortex in the tufted capuchin monkey (Cebus apella). The resulting pattern of labeled cells was assessed in relation to the three-dimensional geometry of the claustrum, as well as recent reports of claustrum-prefrontal connections in other primates. Claustrum-prefrontal projections were extensive, and largely concentrated in the ventral half of the claustrum, especially in the rostral 2/3 of the nucleus. Our data are consistent with a topographic arrangement of claustrum-cortical connections in which prefrontal and association cortices receive connections largely from the rostral and medial claustrum. Comparative aspects of claustrum-prefrontal topography across primate species and the implications of claustrum connectivity for understanding of cortical functional networks are explored, and we hypothesize that the claustrum may play a role in controlling or switching between resting state and task-associated cortical networks.

摘要

我们研究了在簇绒卷尾猴(僧帽猴)的额叶极(10区)、前额叶皮质嘴侧背侧(9区)和腹外侧(12区)区域进行皮质内注射后,屏状核内逆行示踪剂的分布模式。根据屏状核的三维几何结构以及其他灵长类动物中屏状核 - 前额叶连接的最新报道,对标记细胞的结果模式进行了评估。屏状核 - 前额叶投射广泛,并且主要集中在屏状核的腹侧半部,特别是在核的嘴侧2/3处。我们的数据与屏状核 - 皮质连接的拓扑排列一致,其中前额叶皮质和联合皮质主要接收来自嘴侧和内侧屏状核的连接。探讨了灵长类物种间屏状核 - 前额叶拓扑结构的比较方面以及屏状核连接性对理解皮质功能网络的影响,并且我们假设屏状核可能在静息状态和任务相关皮质网络之间的控制或切换中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de9a/4079979/ed2534981e66/fnsys-08-00123-g0001.jpg

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