首页> 外文期刊>Behavioural Brain Research: An International Journal >Cellular dynamical mechanisms for encoding the time and place of events along spatiotemporal trajectories in episodic memory.
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Cellular dynamical mechanisms for encoding the time and place of events along spatiotemporal trajectories in episodic memory.

机译:沿时空轨迹编码事件的时间和地点的细胞动力学机制。

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Understanding the mechanisms of episodic memory requires linking behavioral data and lesion effects to data on the dynamics of cellular membrane potentials and population interactions within brain regions. Linking behavior to specific membrane channels and neurochemicals has implications for therapeutic applications. Lesions of the hippocampus, entorhinal cortex and subcortical nuclei impair episodic memory function in humans and animals, and unit recording data from these regions in behaving animals indicate episodic memory processes. Intracellular recording in these regions demonstrates specific cellular properties including resonance, membrane potential oscillations and bistable persistent spiking that could underlie the encoding and retrieval of episodic trajectories. A model presented here shows how intrinsic dynamical properties of neurons could mediate the encoding of episodic memories as complex spatiotemporal trajectories. The dynamics of neurons allow encoding and retrieval of unique episodic trajectories in multiple continuous dimensions including temporal intervals, personal location, the spatial coordinates and sensory features of perceived objects and generated actions, and associations between these elements. The model also addresses how cellular dynamics could underlie unit firing data suggesting mechanisms for coding continuous dimensions of space, time, sensation and action.
机译:了解情节性记忆的机制需要将行为数据和病灶效应与有关脑区域内细胞膜电位动态变化和群体相互作用的数据联系起来。将行为与特定的膜通道和神经化学物质联系在一起对治疗应用具有影响。海马,内嗅皮层和皮层下核的损伤会破坏人类和动物的发作性记忆功能,行为动物中这些区域的单位记录数据表明发作性记忆过程。这些区域的细胞内记录显示出特定的细胞特性,包括共振,膜电位振荡和双稳态持续性尖峰信号,这些可能是情景轨迹的编码和检索的基础。这里介绍的模型显示了神经元的内在动力学特性如何介导作为复杂的时空轨迹的情节记忆的编码。神经元的动力学允许在多个连续维度上编码和检索独特的情节轨迹,包括时间间隔,个人位置,感知对象和产生的动作的空间坐标和感官特征以及这些元素之间的关联。该模型还解决了细胞动力学如何成为单位发射数据的基础,提出了用于编码空间,时间,感觉和动作的连续维度的机制。

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