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NMDA-Based Pattern Discrimination in a Modeled Cortical Neuron

机译:皮质神经元模型中基于NMDA的模式识别

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Compartmental simulations of an anatomically characterized cortical pyramidal cell were carried out to study the integrative behavior of a complex dendritic tree. Previous theoretical (Feldman and Ballard 1982; Durbin and Rumelhart 1989; Mel 1990; Mel and Koch 1990; Poggio and Girosi 1990) and compartmental modeling (Koch et al. 1983; Shepherd et al. 1985; Koch and Poggio 1987; Rall and Segev 1987; Shepherd and Brayton 1987; Shepherd et al. 1989; Brown et al. 1991) work had suggested that multiplicative interactions among groups of neighboring synapses could greatly enhance the processing power of a neuron relative to a unit with only a single global firing threshold. This issue was investigated here, with a particular focus on the role of voltage-dependent N-methyl-D-asparate (NMDA) channels in the generation of cell responses. First, it was found that when a large proportion of the excitatory synaptic input to dendritic spines is carried by NMDA channels, the pyramidal cell responds preferentially to spatially clustered, rather than random, distributions of activated synapses. Second, based on this mechanism, the NMDA-rich neuron is shown to be capable of solving a nonlinear pattern discrimination task. We propose that manipulation of the spatial ordering of afferent synaptic connections onto the dendritic arbor is a possible biological strategy for pattern information storage during learning.
机译:隔室模拟解剖特征的皮质锥体细胞进行了研究复杂的树突状树的整合行为。先前的理论(Feldman和Ballard 1982; Durbin和Rumelhart 1989; Mel 1990; Mel和Koch 1990; Poggio和Girosi 1990)和分区模型(Koch等1983; Shepherd等1985; Koch和Poggio 1987; Rall和Segev 1987年; Shepherd和Brayton 1987年; Shepherd等人1989年; Brown等人1991年)的工作表明,邻近突触组之间的倍增相互作用可以大大增强神经元相对于仅具有单个全局触发阈值的单位的处理能力。这里研究了这个问题,特别关注电压依赖性N-甲基-D-天冬氨酸(NMDA)通道在细胞反应产生中的作用。首先,发现当NMDA通道携带向树突棘的大部分兴奋性突触输入时,锥体细胞优先响应于空间聚集而不是随机分布的活化突触分布。其次,基于这种机制,显示出富含NMDA的神经元能够解决非线性模式识别任务。我们建议操纵突触连接到树突状乔木的空间顺序是学习过程中模式信息存储的一种可能的生物学策略。

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  • 来源
    《Neural computation》 |1992年第4期|502-517|共16页
  • 作者

    Mel B;

  • 作者单位

    Computation and Neural Systems Program, Division of Biology, 216-76, California Institute of Technology, Pasadena, CA 91125 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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