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Cholinergic modulation of the resonance properties of stellate cells in layer II of medial entorhinal cortex.

机译:胆碱能调节内嗅皮层第二层中星状细胞的共振特性。

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摘要

In vitro whole cell patch-clamp recordings of stellate cells in layer II of medial entorhinal cortex show a subthreshold membrane potential resonance in response to a sinusoidal current injection of varying frequency. Physiological recordings from awake behaving animals show that neurons in layer II medial entorhinal cortex, termed "grid cells," fire in a spatially selective manner such that each cell's multiple firing fields form a hexagonal grid. Both the spatial periodicity of the grid fields and the resonance frequency change systematically in neurons along the dorsal to ventral axis of medial entorhinal cortex. Previous work has also shown that grid field spacing and acetylcholine levels change as a function of the novelty to a particular environment. Using in vitro whole cell patch-clamp recordings, our study shows that both resonance frequency and resonance strength vary as a function of cholinergic modulation. Furthermore, our data suggest that these changes in resonance properties are mediated through modulation of h-current and m-current.
机译:内侧内嗅皮层第二层中星状细胞的体外全细胞膜片钳记录显示,响应频率变化的正弦电流注入,亚阈值膜电位共振。醒着的行为动物的生理记录显示,内层第二层内嗅皮层中的神经元(称为“网格细胞”)以空间选择性方式发射,从而每个细胞的多个发射场形成一个六角形网格。网格区域的空间周期性和共振频率在神经元中沿着内嗅皮层的背轴到腹轴系统地改变。先前的工作还表明,网格场间距和乙酰胆碱水平根据特定环境的新颖性而变化。使用体外全细胞膜片钳录音,我们的研究表明,共振频率和共振强度随胆碱能调节而变化。此外,我们的数据表明,这些共振特性的变化是通过调节h电流和m电流来介导的。

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