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跨物种纹状体枢纽:将解剖结构与静息状态连接联系起来。

Cross-species striatal hubs: Linking anatomy to resting-state connectivity.

机构信息

Department of Psychiatry and Behavioral Sciences, Medical University of South Carolina, Charleston, USA.

McLean Hospital, Harvard Medical School, Boston, USA; University of Rochester School of Medicine & Dentistry, Rochester, USA.

出版信息

Neuroimage. 2024 Nov 1;301:120866. doi: 10.1016/j.neuroimage.2024.120866. Epub 2024 Sep 24.

Abstract

Corticostriatal connections are essential for motivation, cognition, and behavioral flexibility. There is broad interest in using resting-state functional magnetic resonance imaging (rs-fMRI) to link circuit dysfunction in these connections with neuropsychiatric disorders. In this paper, we used tract-tracing data from non-human primates (NHPs) to assess the likelihood of monosynaptic connections being represented in rs-fMRI data of NHPs and humans. We also demonstrated that existing hub locations in the anatomical data can be identified in the rs-fMRI data from both species. To characterize this in detail, we mapped the complete striatal projection zones from 27 tract-tracer injections located in the orbitofrontal cortex (OFC), dorsal anterior cingulate cortex (dACC), ventromedial prefrontal cortex (vmPFC), ventrolateral PFC (vlPFC), and dorsal PFC (dPFC) of macaque monkeys. Rs-fMRI seeds at the same regions of NHP and homologous regions of human brains showed connectivity maps in the striatum mostly consistent with those observed in the tracer data. We then examined the location of overlap in striatal projection zones. The medial rostral dorsal caudate connected with all five frontocortical regions evaluated in this study in both modalities (tract-tracing and rs-fMRI) and species (NHP and human). Other locations in the caudate also presented an overlap of four frontocortical regions, suggesting the existence of different locations with lower levels of input diversity. Small retrograde tracer injections and rs-fMRI seeds in the striatum confirmed these cortical input patterns. This study sets the ground for future studies evaluating rs-fMRI in clinical samples to measure anatomical corticostriatal circuit dysfunction and identify connectional hubs to provide more specific treatment targets for neurological and psychiatric disorders.

摘要

皮质纹状体连接对于动机、认知和行为灵活性至关重要。人们广泛关注利用静息态功能磁共振成像 (rs-fMRI) 将这些连接中的回路功能障碍与神经精神障碍联系起来。在本文中,我们使用非人类灵长类动物 (NHP) 的示踪数据来评估单突触连接是否存在于 NHP 和人类的 rs-fMRI 数据中。我们还证明了在两种物种的 rs-fMRI 数据中可以识别出解剖学数据中的现有中枢位置。为了详细描述这一点,我们从 27 个位于眶额皮层 (OFC)、背侧前扣带皮层 (dACC)、腹内侧前额叶皮层 (vmPFC)、腹外侧前额叶皮层 (vlPFC) 和背侧前额叶皮层 (dPFC) 的 NHP 皮质追踪剂注射中绘制了完整的纹状体投射区。NHP 和同源人类大脑的相同区域的 rs-fMRI 种子显示纹状体的连接图谱与示踪数据中观察到的图谱大多一致。然后,我们检查了纹状体投射区的重叠位置。在这两种模式(示踪和 rs-fMRI)和两种物种(NHP 和人类)中,中额背侧尾状核与本研究评估的所有五个额皮质区域都有连接。尾状核的其他部位也与四个额皮质区域重叠,这表明存在不同的位置,其输入多样性较低。纹状体中的逆行小示踪剂注射和 rs-fMRI 种子证实了这些皮质输入模式。这项研究为未来评估 rs-fMRI 在临床样本中的研究奠定了基础,以测量解剖皮质纹状体回路功能障碍,并确定连接中枢,为神经和精神障碍提供更具体的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6fa/11682661/2b0dbc642f9e/nihms-2031965-f0001.jpg

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