神经振荡与多感官处理

4区 医学 Q2 Biochemistry, Genetics and Molecular Biology
Yanfang Zuo, Zuoren Wang
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引用次数: 0

摘要

神经振荡通过协调同步神经元活动在感觉处理过程中发挥作用。伽马振荡的同步参与了前馈信号的局部计算,而阿尔法-贝塔振荡的同步参与了远距离区域的反馈处理。这些在空间和频谱上分离的双向信号可能通过跨频耦合机制进行整合。神经振荡的同步化也被认为是跨多种感觉模式的信息整合机制。来自一种模式的瞬时刺激或节律性刺激可能会通过跨模式相位重置或跨模式神经夹带机制,导致多个感觉皮层中正在进行的神经振荡相位一致。多个感觉皮层的同步活动更有可能促进下游区域更强的活动。与同步振荡相比,不同步振荡可能会阻碍信号处理,并通过将目标相关皮层中的振荡与分心相关皮层中的振荡设置为相反的相位来促进感觉选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neural Oscillations and Multisensory Processing.

Neural oscillations play a role in sensory processing by coordinating synchronized neuronal activity. Synchronization of gamma oscillations is engaged in local computation of feedforward signals and synchronization of alpha-beta oscillations is engaged in feedback processing over long-range areas. These spatially and spectrally segregated bi-directional signals may be integrated by a mechanism of cross-frequency coupling. Synchronization of neural oscillations has also been proposed as a mechanism for information integration across multiple sensory modalities. A transient stimulus or rhythmic stimulus from one modality may lead to phase alignment of ongoing neural oscillations in multiple sensory cortices, through a mechanism of cross-modal phase reset or cross-modal neural entrainment. Synchronized activities in multiple sensory cortices are more likely to boost stronger activities in downstream areas. Compared to synchronized oscillations, asynchronized oscillations may impede signal processing, and may contribute to sensory selection by setting the oscillations in the target-related cortex and the oscillations in the distractor-related cortex to opposite phases.

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来源期刊
Advances in experimental medicine and biology
Advances in experimental medicine and biology 医学-医学:研究与实验
CiteScore
5.90
自引率
0.00%
发文量
465
审稿时长
2-4 weeks
期刊介绍: Advances in Experimental Medicine and Biology provides a platform for scientific contributions in the main disciplines of the biomedicine and the life sciences. This series publishes thematic volumes on contemporary research in the areas of microbiology, immunology, neurosciences, biochemistry, biomedical engineering, genetics, physiology, and cancer research. Covering emerging topics and techniques in basic and clinical science, it brings together clinicians and researchers from various fields.
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