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Distinct types of non-cholinergic pedunculopontine neurons are differentially modulated during global brain states.

机译:在全脑状态下,不同类型的非胆碱能的足小神经元神经元受到不同的调节。

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摘要

The pedunculopontine nucleus (PPN) is critically involved in brain-state transitions that promote neocortical activation. In addition, the PPN is involved in the control of several behavioral processes including locomotion, motivation and reward, but the neuronal substrates that underlie such an array of functions remain elusive. Here we analyzed the physiological properties of non-cholinergic PPN neurons in vivo across distinct brain states, and correlated these with their morphological properties after juxtacellular labeling. We show that non-cholinergic neurons in the PPN whose firing is not strongly correlated to neocortical activity are highly heterogeneous and are composed of at least three different subtypes: (1) "quiescent" neurons, which are nearly silent during slow-wave activity (SWA) but respond robustly to neocortical activation; (2) "tonic firing" neurons, which have a stationary firing rate that is independent of neocortical activity across different brain states; and (3) "irregular firing" neurons, which exhibit a variable level of correlation with neocortical activity. The majority of non-cholinergic neurons have an ascending axonal trajectory, with the exception of some irregular firing neurons that have descending axons. Furthermore, we observed asymmetric synaptic contacts within the PPN arising from the axon collaterals of labeled neurons, suggesting that excitatory, non-cholinergic neurons can shape the activity of neighboring cells. Our results provide the first evidence of distinct firing properties associated with non-cholinergic neuronal subtypes in the PPN, suggesting a functional heterogeneity, and support the notion of a local network assembled by projection neurons, the properties of which are likely to determine the output of the PPN in diverse behavioral contexts.
机译:pedunculopontine核(PPN)关键参与促进新皮层激活的脑状态转换。此外,PPN还参与了对包括运动,动机和报酬在内的几种行为过程的控制,但是构成这种功能阵列的神经元基质仍然难以捉摸。在这里,我们分析了非胆碱能PPN神经元在不同脑状态下的体内生理特性,并将它们与近细胞标记后的形态学特性相关联。我们显示,PPN中非激发作用的非胆碱能神经元与新皮层活动没有高度相关性,并且由至少三种不同的亚型组成:(1)“静态”神经元,在慢波活动中几乎保持沉默( SWA),但对新皮质激活反应强烈; (2)“强直放电”神经元,其稳态发射速率与不同大脑状态的新皮层活动无关; (3)“不规则放电”神经元,其与新皮层活动的相关性呈可变水平。大多数非胆碱能神经元的轴突轨迹都在上升,除了一些具有下降轴突的不规则激发神经元。此外,我们观察到由标记神经元的轴突侧支引起的PPN内的不对称突触接触,表明兴奋性非胆碱能神经元可以塑造邻近细胞的活性。我们的结果提供了与PPN中非胆碱能神经元亚型相关的独特放电特性的第一个证据,表明了功能异质性,并支持了投射神经元组装的局部网络的概念,该网络的特性很可能决定了神经元的输出。 PPN在不同的行为环境中。

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