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首页> 外文期刊>Neuron >Cerebellar inhibitory input to the inferior olive decreases electrical coupling and blocks subthreshold oscillations
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Cerebellar inhibitory input to the inferior olive decreases electrical coupling and blocks subthreshold oscillations

机译:小橄榄对小橄榄的抑制性输入会减少电耦合并阻止阈下振荡

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摘要

GABAergic projection neurons in the cerebellar nuclei (CN) innervate the inferior olive (IO) that in turn is the source of climbing fibers targeting Purkinje neurons in the cerebellar cortex. Anatomical evidence suggests that CN synapses modulate electrical coupling between IO neurons. Invivo studies indicate that they are also involved in controlling synchrony and rhythmicity of IO neurons. Here, we demonstrate using virally targeted channelrhodopsin in the cerebellar nucleo-olivary neurons that synaptic input can indeed modulate both the strength and symmetry of electrical coupling between IO neurons and alter network activity. Similar synaptic modifications of electrical coupling are likely to occur in other brain regions, where rapid modification of the spatiotemporal features of the coupled networks is needed to adequately respond to behavioral demands.
机译:小脑核(CN)中的GABA能投射神经元支配下橄榄(IO),而橄榄又是靶向小脑皮质Purkinje神经元的攀登纤维的来源。解剖证据表明,CN突触可调节IO神经元之间的电耦合。体内研究表明,它们还参与控制IO神经元的同步性和节律性。在这里,我们证明了在小脑核-橄榄神经元中使用病毒靶向的视紫红质,突触输入确实可以调节IO神经元之间电耦合的强度和对称性,并改变网络活动。电耦合的类似突触修饰可能发生在其他大脑区域,在这些区域中,需要对耦合网络的时空特征进行快速修饰以充分响应行为需求。

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