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Titlebook: Analysis and Modeling of Coordinated Multi-neuronal Activity; Masami Tatsuno Book 2015 Springer Science+Business Media New York 2015 Compu

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发表于 2025-3-21 19:14:59 | 显示全部楼层 |阅读模式
期刊全称Analysis and Modeling of Coordinated Multi-neuronal Activity
影响因子2023Masami Tatsuno
视频video
发行地址State-of-the-art introduction of multi-electrode recordings and how they contribute to the understanding of hippocampal memory.Overview of the modeling approach to hippocampal memory.Presentation of h
学科分类Springer Series in Computational Neuroscience
图书封面Titlebook: Analysis and Modeling of Coordinated Multi-neuronal Activity;  Masami Tatsuno Book 2015 Springer Science+Business Media New York 2015 Compu
影响因子Since information in the brain is processed by the exchange of spikes among neurons, a study of such group dynamics is extremely important in understanding hippocampus dependent memory. These spike patterns and local field potentials (LFPs) have been analyzed by various statistical methods. These studies have led to important findings of memory information processing. For example, memory-trace replay, a reactivation of behaviorally induced neural patterns during subsequent sleep, has been suggested to play an important role in memory consolidation. It has also been suggested that a ripple/sharp wave event (one of the characteristics of LFPs in the hippocampus) and spiking activity in the cortex have a specific relationship that may facilitate the consolidation of hippocampal dependent memory from the hippocampus to the cortex. The book will provide a state-of-the-art finding of memory information processing through the analysis of multi-neuronal data. The first half of the book is devoted to this analysis aspect. Understanding memory information representation and its consolidation, however, cannot be achieved only by analyzing the data. It is extremely important to construct a com
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Overview of Neural Activity in the Awake and Sleeping Hippocampustechnology (see Chaps. . and .) have made it possible to record the simultaneous activity of large numbers of cells, and this has increased our understanding of how the hippocampus functions both during behavior and at rest. In this chapter, we provide an overview of hippocampal anatomy and electrop
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Associative Reactivation of Place–Reward Information in the Hippocampal–Ventral Striatal Circuitry, such as obtaining rewards, are important for surviving in a changing environment and depend critically on communication between the hippocampus and ventral striatum. The potential contribution of subcortical brain areas such as the ventral striatum to memory consolidation has remained underexposed
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Hippocampal Sequences and the Cognitive Mapat hippocampal sequences functioned as a neural mechanism for memory consolidation, and recent experiments suggest a causal link between sequences during sleep and mnemonic processing. However, in addition to sleep, the hippocampus expresses sequences during active behavior and moments of waking res
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Causal Relationship Between SPWRs and Spatial Learning and Memoryng a transfer from the hippocampus to cortical areas. Hippocampal sharp-wave ripples (SPWRs) are transient fast oscillations (200 Hz) occurring during slow-wave sleep, rest, and short immobility periods. Because place cells are sequentially reactivated during SPWRs, and because their frequency would
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Packets of Sequential Neural Activity in Sensory Cortex evokes a 50–200 ms long burst of population activity. In this chapter, we summarize recent papers of the author showing that such bursts of neuronal activity are not randomly organized, but rather composed of stereotypical sequential spiking patterns. To underline this fine-scale internal organizat
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Memory Consolidation, Replay, and Cortico-Hippocampal Interactions based on dynamical processes such as oscillations, taking place during active behavior as well as sleep. Memory replay, that is, the reactivation, during sleep or other off-line periods, of the same configurations of neural activity that occurred during experience, is thought to be a key mechanism
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