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Three-Dimensional Heterogeneity of Cerebellar Interposed Nucleus-Recipient Zones in the Thalamic Nuclei / 神经科学通报·英文版
Neuroscience Bulletin ; (6): 1529-1541, 2021.
Article in English | WPRIM | ID: wpr-922669
ABSTRACT
The cerebellum is conceptualized as a processor of complex movements and is also endowed with roles in cognitive and emotional behaviors. Although the axons of deep cerebellar nuclei are known to project to primary thalamic nuclei, macroscopic investigation of the characteristics of these projections, such as the spatial distribution of recipient zones, is lacking. Here, we studied the output of the cerebellar interposed nucleus (IpN) to the ventrolateral (VL) and centrolateral (CL) thalamic nuclei using electrophysiological recording in vivo and trans-synaptic viral tracing. We found that IpN stimulation induced mono-synaptic evoked potentials (EPs) in the VL but not the CL region. Furthermore, both the EPs induced by the IpN and the innervation of IpN projections displayed substantial heterogeneity across the VL region in three-dimensional space. These findings indicate that the recipient zones of IpN inputs vary between and within thalamic nuclei and may differentially control thalamo-cortical networks.
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Full text: Available Index: WPRIM (Western Pacific) Main subject: Axons / Thalamic Nuclei / Cerebellar Nuclei / Cerebellum Language: English Journal: Neuroscience Bulletin Year: 2021 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Axons / Thalamic Nuclei / Cerebellar Nuclei / Cerebellum Language: English Journal: Neuroscience Bulletin Year: 2021 Type: Article