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首页> 外文期刊>Hippocampus >Behavior‐driven arc arc expression is reduced in all ventral hippocampal subfields compared to CA1, CA3, and dentate gyrus in rat dorsal hippocampus
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Behavior‐driven arc arc expression is reduced in all ventral hippocampal subfields compared to CA1, CA3, and dentate gyrus in rat dorsal hippocampus

机译:与大鼠背部海马的Ca1,Ca3和牙齿齿轮相比,所有腹侧海马子场中的行为驱动的弧形表达减少

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摘要

Abstract Anatomical connectivity and lesion studies reveal distinct functional heterogeneity along the dorsal–ventral axis of the hippocampus. The immediate early gene Arc is known to be involved in neural plasticity and memory and can be used as a marker for cell activity that occurs, for example, when hippocampal place cells fire. We report here, that Arc is expressed in a greater proportion of cells in dorsal CA1, CA3, and dentate gyrus (DG), following spatial behavioral experiences compared to ventral hippocampal subregions (dorsal CA1?=?33%; ventral CA1?=?13%; dorsal CA3?=?23%; ventral CA3?=?8%; and dorsal DG?=?2.5%; ventral DG?=?1.2%). The technique used here to obtain estimates of numbers of behavior‐driven cells across the dorsal–ventral axis, however, corresponds quite well with samples from available single unit recording studies. Several explanations for the two‐ to‐threefold reduction in spatial behavior‐driven cell activity in the ventral hippocampus can be offered. These include anatomical connectivity differences, differential gain of the self‐motion signals that appear to alter the scale of place fields and the proportion of active cells, and possibly variations in the neuronal responses to non‐spatial information within the hippocampus along its dorso‐ventral axis.
机译:摘要解剖连接和病变研究揭示了海马背腹轴的明显功能异质性。已知立即早期基因弧参与神经可塑性和记忆,并且可以用作细胞活性的标记,例如,当海马将电池发生火灾时发生。我们在此报告,在与腹侧海马子区域(背部Ca1(Dorsal Ca1)相比,在背部Ca1,Ca3和牙齿转酯(Dg)中的比例大部分细胞表达,这是较大比例的细胞,如腹侧海马子区域(背部Ca1?33%;腹侧Ca1?=? 13%;背部ca3?= 23%;腹侧ca3?=?8%;和背部dg?=?2.5%;腹侧dg?=?1.2%)。然而,用于获得跨越背腹轴的行为驱动的细胞数量估计的技术对应于可用的单个单元记录研究的样本。可以提供对腹侧海马中的空间行为驱动的细胞活性的两对三倍降低的几个解释。这些包括解剖连接差异,自动运动信号的差异增益,其似乎改变了地方场的规模和活性细胞的比例,并且可能在沿着其背侧腹部沿着海马内的非空间信息的神经元响应的变化轴。

著录项

  • 来源
    《Hippocampus》 |2018年第2期|共8页
  • 作者单位

    ARL Div of Neural Systems Memory and Aging and Evelyn F. McKnight Brain InstituteUniv;

    National Toxicology ProgramNIEHS Research Triangle ParkNorth Carolina;

    ARL Div of Neural Systems Memory and Aging and Evelyn F. McKnight Brain InstituteUniv;

    Canadian Centre for Behavioural NeuroscienceUniversity of LethbridgeT1K 3M4 Alberta;

    ARL Div of Neural Systems Memory and Aging and Evelyn F. McKnight Brain InstituteUniv;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

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