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通过 INS-fMRI 揭示猕猴丘觉-视皮层网络的功能拓扑结构。

Functional topography of pulvinar-visual cortex networks in macaques revealed by INS-fMRI.

机构信息

Key Laboratory for Biomedical Engineering of Ministry of Education, College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, China.

Interdisciplinary Institute of Neuroscience and Technology, School of Medicine, Zhejiang University, Hangzhou, China.

出版信息

J Comp Neurol. 2023 Apr;531(6):681-700. doi: 10.1002/cne.25456. Epub 2023 Feb 6.

Abstract

The pulvinar in the macaque monkey contains three divisions: the medial pulvinar (PM), the lateral pulvinar (PL), and the inferior pulvinar (PI). Anatomical studies have shown that connections of PM are preferentially distributed to higher association areas, those of PL are biased toward the ventral visual pathway, and those of PI are biased with the dorsal visual pathway. To study functional connections of the pulvinar at mesoscale, we used a novel method called INS-fMRI (infrared neural stimulation and functional magnetic resonance imaging). This method permits studies and comparisons of multiple pulvinar networks within single animals. As previously revealed, stimulations of different sites in PL and PI produced topographically organized focal activations in visual areas V1, V2, and V3. In contrast, PM stimulation elicited little or diffuse response. The relative activations of areas V1, V2, V3A, V3d, V3v, V4, MT, and MST revealed that connections of PL are biased to ventral pathway areas, and those of PI are biased to dorsal areas. Different statistical values of activated blood-oxygen-level-dependent responses produced the same center of activation, indicating stability of connectivity; it also suggests possible dynamics of broad to focal responses from single stimulation sites. These results demonstrate that infrared neural stimulation-induced connectivity is largely consistent with previous anatomical connectivity studies, thereby demonstrating validity of our novel method. In addition, it suggests additional interpretations of functional connectivity to complement anatomical studies.

摘要

猴脑中的丘脑枕分为三个部分

内侧丘脑枕(PM)、外侧丘脑枕(PL)和下侧丘脑枕(PI)。解剖学研究表明,PM 的连接优先分布在较高的联合区域,PL 的连接偏向腹侧视觉通路,PI 的连接偏向背侧视觉通路。为了在中尺度上研究丘脑枕的功能连接,我们使用了一种名为 INS-fMRI(红外神经刺激和功能磁共振成像)的新方法。这种方法允许在单个动物中研究和比较多个丘脑枕网络。如前所述,PL 和 PI 中不同部位的刺激会在 V1、V2 和 V3 等视觉区域产生具有地形组织的焦点激活。相比之下,PM 刺激引起的反应很少或扩散。V1、V2、V3A、V3d、V3v、V4、MT 和 MST 等区域的相对激活表明,PL 的连接偏向腹侧通路,PI 的连接偏向背侧区域。不同激活血氧水平依赖反应的统计值产生了相同的激活中心,这表明连接的稳定性;它还表明从单个刺激部位产生的广泛到焦点反应的可能动力学。这些结果表明,红外神经刺激诱导的连接在很大程度上与先前的解剖连接研究一致,从而证明了我们新方法的有效性。此外,它还提出了对功能连接的额外解释,以补充解剖学研究。

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