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7T fMRI 下的红外神经刺激:一种用于快速在体映射灵长类杏仁核皮质连接的方法。

Infrared neural stimulation with 7T fMRI: A rapid in vivo method for mapping cortical connections of primate amygdala.

机构信息

Dept of Neurology of the Second Affiliated Hospital and Interdisciplinary Institute of Neuroscience and Technology, Zhejiang University School of Medicine, College of Biomedical Engineering & Instrument Science, Zhejiang University, Hangzhou, China.

Dept of Neuroscience, University of Rochester School of Medicine, Rochester, NY, United States.

出版信息

Neuroimage. 2021 May 1;231:117818. doi: 10.1016/j.neuroimage.2021.117818. Epub 2021 Feb 4.

Abstract

We have previously shown that INS-fMRI is a rapid method for mapping mesoscale brain networks in the macaque monkey brain. Focal stimulation of single cortical sites led to the activation of connected cortical locations, resulting in a global connectivity map. Here, we have extended this method for mapping brainwide networks following stimulation of single subcortical sites. As a testbed, we focused on the basal nucleus of the amygdala in the macaque monkey. We describe methods to target basal nucleus locations with submillimeter precision, pulse train stimulation methods, and statistical tests for assessing non-random nature of activations. Using these methods, we report that stimulation of precisely targeted loci in the basal nucleus produced sparse and specific activations in the brain. Activations were observed in the insular and sensory association cortices as well as activations in the cingulate cortex, consistent with known anatomical connections. What is new here is that the activations were focal and, in some cases, exhibited shifting topography with millimeter shifts in stimulation site. The precision of the method enables networks mapped from different nearby sites in the basal nucleus to be distinguished. While further investigation is needed to improve the sensitivity of this method, our analyses do support the reproducibility and non-random nature of some of the activations. We suggest that INS-fMRI is a promising method for mapping large-scale cortical and subcortical networks at high spatial resolution.

摘要

我们之前已经证明,INS-fMRI 是一种快速的方法,可以在猕猴大脑中绘制中尺度脑网络。对单个皮质部位的焦点刺激导致连接的皮质位置被激活,从而产生全局连通图。在这里,我们扩展了这种方法,用于在刺激单个皮质下部位后绘制全脑网络。作为一个测试平台,我们专注于猕猴的杏仁基底核。我们描述了使用亚毫米精度靶向基底核位置的方法、脉冲串刺激方法以及评估激活非随机性的统计测试。使用这些方法,我们报告说,在基底核中精确靶向的位置的刺激产生了大脑中稀疏和特定的激活。在岛叶和感觉联合皮质中观察到激活,以及扣带皮质中的激活,与已知的解剖连接一致。这里的新发现是,激活是焦点性的,并且在某些情况下,在刺激部位毫米级的移动时表现出拓扑变化。该方法的精度使得可以区分来自基底核中不同附近部位的映射网络。虽然需要进一步的研究来提高该方法的灵敏度,但我们的分析确实支持了一些激活的可重复性和非随机性。我们建议 INS-fMRI 是一种很有前途的方法,可以以高空间分辨率绘制大规模皮质和皮质下网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d80/9947864/9d0229619974/nihms-1864642-f0001.jpg

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