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小脑-前额叶及小脑-顶叶功能连接的磁共振成像

Magnetic resonance imaging of cerebellar-prefrontal and cerebellar-parietal functional connectivity.

作者信息

Allen Greg, McColl Roderick, Barnard Holly, Ringe Wendy K, Fleckenstein James, Cullum C Munro

机构信息

Department of Psychiatry, University of Texas Southwestern Medical Center, Dallas, 75390-8846, USA.

出版信息

Neuroimage. 2005 Oct 15;28(1):39-48. doi: 10.1016/j.neuroimage.2005.06.013. Epub 2005 Jul 14.

Abstract

Recent studies of the cerebellum indicated its involvement in a diverse array of functions, and analyses of non-human primate neuroanatomy have revealed connections between cerebellum and cerebral cortex that might support cerebellar contributions to a wider range of functions than traditionally thought. These include cortico-ponto-cerebellar projections originating throughout cerebral cortex, in addition to projections from the dentate nucleus of the cerebellum to prefrontal and posterior parietal cortices via the thalamus. Such projections likely serve as important substrates for cerebellar involvement in human cognition, assuming their analogues are prominent in the human brain. These connections can be examined from a functional perspective through the use of functional connectivity MRI (FCMRI), a technique that allows the in vivo examination of coherence in MR signal among functionally related brain regions. Using this approach, low-frequency fluctuations in MR signal in the dentate nucleus correlated with signal fluctuations in cerebellar, thalamic, limbic, striatal, and cerebrocortical regions including parietal and frontal sites, with prominent coherence in dorsolateral prefrontal cortex. These findings indicate that FCMRI is a useful tool for examining functional relationships between the cerebellum and other brain regions, and they support the findings from non-human primate studies showing anatomic projections from cerebellum to regions of cerebral cortex with known involvement in higher cognitive functions. To our knowledge, this represents the first demonstration of functional coherence between the dentate nucleus and parietal and prefrontal cortices in the human brain, suggesting the presence of cerebellar-parietal and cerebellar-prefrontal functional connectivity.

摘要

最近对小脑的研究表明,它参与了各种各样的功能,对非人类灵长类动物神经解剖结构的分析揭示了小脑与大脑皮层之间的联系,这可能支持小脑对一系列功能的贡献比传统认为的更为广泛。这些联系包括源自整个大脑皮层的皮质-脑桥-小脑投射,以及从小脑齿状核通过丘脑投射到前额叶和顶叶后部皮层。假设这些投射在人类大脑中也很突出,那么它们可能是小脑参与人类认知的重要基础。通过使用功能连接磁共振成像(FCMRI),可以从功能角度检查这些联系,该技术能够在活体状态下检查功能相关脑区之间磁共振信号的一致性。采用这种方法,齿状核中磁共振信号的低频波动与小脑、丘脑、边缘系统、纹状体以及包括顶叶和额叶部位在内的大脑皮层区域的信号波动相关,在背外侧前额叶皮层有显著的一致性。这些发现表明,FCMRI是检查小脑与其他脑区之间功能关系的有用工具,并且支持了非人类灵长类动物研究的结果,即显示了从小脑到已知参与高级认知功能的大脑皮层区域的解剖学投射。据我们所知,这是首次在人类大脑中证明齿状核与顶叶和前额叶皮层之间存在功能一致性,表明存在小脑-顶叶和小脑-前额叶功能连接。

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