胆碱能调节在定位和运动速度的神经编码中的潜在作用

Holger Dannenberg, James R. Hinman, Michael E. Hasselmo
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引用次数: 12

摘要

行为数据表明胆碱能调节可能在空间记忆的某些方面发挥作用,神经生理学数据表明神经元对空间维度做出反应,包括网格细胞和位置细胞,它们对位置和跑步速度做出反应。这些神经元表现出依赖于环境视觉配置的放电反应,这是由于新皮层的视觉反应区域的编码。本文就乙酰胆碱可能影响与行为相关的空间维度感觉编码的生理作用作一综述。特别是,皮层内乙酰胆碱的局部回路效应通过突触前抑制兴奋性和抑制性突触传递,以及皮质兴奋性和抑制性神经元的内在电流调节,调节相对于内部记忆表征的感觉输入的影响。此外,乙酰胆碱的回路效应调节皮层回路的动力学,包括theta和gamma频率的振荡。这些乙酰胆碱对局部电路和网络动力学的影响可能是乙酰胆碱在空间记忆任务的空间信息编码中的作用的基础。
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Potential roles of cholinergic modulation in the neural coding of location and movement speed

Behavioral data suggest that cholinergic modulation may play a role in certain aspects of spatial memory, and neurophysiological data demonstrate neurons that fire in response to spatial dimensions, including grid cells and place cells that respond on the basis of location and running speed. These neurons show firing responses that depend upon the visual configuration of the environment, due to coding in visually-responsive regions of the neocortex. This review focuses on the physiological effects of acetylcholine that may influence the sensory coding of spatial dimensions relevant to behavior. In particular, the local circuit effects of acetylcholine within the cortex regulate the influence of sensory input relative to internal memory representations via presynaptic inhibition of excitatory and inhibitory synaptic transmission, and the modulation of intrinsic currents in cortical excitatory and inhibitory neurons. In addition, circuit effects of acetylcholine regulate the dynamics of cortical circuits including oscillations at theta and gamma frequencies. These effects of acetylcholine on local circuits and network dynamics could underlie the role of acetylcholine in coding of spatial information for the performance of spatial memory tasks.

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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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