皮质的调节室与胆碱能张力的局部调节

Jennifer J. Coppola , Nicholas J. Ward , Monika P. Jadi , Anita A. Disney
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引用次数: 27

摘要

神经调节信号通常被认为在整个皮层的影响是广泛的。然而,皮层回路特性的变化可能会引入对漫射调节信号的区域特异性反应。轴突神经支配模式、组织扭曲和分子扩散、降解途径的有效性、亚细胞受体定位和受体表达模式等特征可导致调节输入的局部修改。我们提出在皮层中存在调节室,并且可以通过局部电路结构特征的变化来定义。此外,我们认为这些隔室负责神经调节性张力的局部调节。对于胆碱能系统,这些调节室是皮质组织的区域,在这些区域内乙酰胆碱的信号条件相对统一,但在这些区域之间的信号可能会有很大的差异。在视觉系统中,隔室存在的证据表明,胆碱能调节可能在视觉通路中不同。我们认为,这些隔室的存在需要从局部皮质回路的细粒度控制的角度来思考胆碱能调制,而不是传统观点所暗示的该系统是漫反射调制器。此外,对调节区室的理解为更好地理解和纠正导致病理状态的信号修饰提供了机会。
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Modulatory compartments in cortex and local regulation of cholinergic tone

Neuromodulatory signaling is generally considered broad in its impact across cortex. However, variations in the characteristics of cortical circuits may introduce regionally-specific responses to diffuse modulatory signals. Features such as patterns of axonal innervation, tissue tortuosity and molecular diffusion, effectiveness of degradation pathways, subcellular receptor localization, and patterns of receptor expression can lead to local modification of modulatory inputs. We propose that modulatory compartments exist in cortex and can be defined by variation in structural features of local circuits. Further, we argue that these compartments are responsible for local regulation of neuromodulatory tone. For the cholinergic system, these modulatory compartments are regions of cortical tissue within which signaling conditions for acetylcholine are relatively uniform, but between which signaling can vary profoundly. In the visual system, evidence for the existence of compartments indicates that cholinergic modulation likely differs across the visual pathway. We argue that the existence of these compartments calls for thinking about cholinergic modulation in terms of finer-grained control of local cortical circuits than is implied by the traditional view of this system as a diffuse modulator. Further, an understanding of modulatory compartments provides an opportunity to better understand and perhaps correct signal modifications that lead to pathological states.

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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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