...
首页> 外文期刊>The Journal of Experimental Biology >From the intrinsic properties to the functional role of a neuron phenotype: an example from electric fish during signal trade-off
【24h】

From the intrinsic properties to the functional role of a neuron phenotype: an example from electric fish during signal trade-off

机译:从神经元表型的内在特性到功能作用:信号折衷期间的电鱼示例

获取原文
获取原文并翻译 | 示例

摘要

This review deals with the question: what is the relationship between the properties of a neuron and the role that the neuron plays within a given neural circuit? Answering this kind of question requires collecting evidence from multiple neuron phenotypes and comparing the role of each type in circuits that perform well-defined computational tasks. The focus here is on the spherical neurons in the electrosensory lobe of the electric fish Gymnotus omarorum. They belong to the one-spike-onset phenotypeexpressed at the early stages of signal processing in various sensory modalities and diverse taxa. First, we refer to the one-spike neuron intrinsic properties, their foundation on a low-threshold K+ conductance, and the potential roles of this phenotype in different circuits within a comparative framework. Second, we present a brief description of the active electric sense of weakly electric fish and the particularities of spherical one-spike-onset neurons in the electrosensory lobe of G. omarorum. Third, we introduce one of the specific tasks in which these neurons are involved: the trade-off between self- and allo-generated signals. Fourth, we discuss recent evidence indicating a still-undescribed role for the one-spike phenotype. This role deals with the blockage of the pathway after being activated by the self-generated electric organ discharge and how this blockage favors self-generated electrosensory information in the context of allo-generated interference. Based on comparative analysis we conclude that one-spike-onset neurons may play several functional roles in animal sensory behavior. There are specific adaptations of the neuron's 'response function' to the circuit and task. Conversely, the way in which a task is accomplished depends on the intrinsic properties of the neurons involved. In short, the role of a neuron within a circuit depends on the neuron and its functional context.
机译:这篇评论讨论了一个问题:神经元的属性和神经元在给定神经回路中扮演的角色之间的关系是什么?回答此类问题需要从多种神经元表型中收集证据,并比较每种类型在执行定义明确的计算任务的电路中的作用。这里的重点是电鱼Gymnotus omarorum的电感应叶中的球形神经元。它们属于信号处理早期以各种感觉方式和不同分类群表达的单峰发作表型。首先,我们在比较框架内参考单峰神经元的内在特性,它们基于低阈值K +电导的基础以及该表型在不同电路中的潜在作用。其次,我们简要介绍弱电鱼的主动电感,以及大肠G. omarorum的电感应叶中球形一秒发作神经元的特殊性。第三,我们介绍了涉及这些神经元的特定任务之一:在自身和同种异体生成的信号之间进行权衡。第四,我们讨论了最近的证据,该证据表明单峰表型的作用尚未描述。该作用涉及被自身产生的器官放电激活后通路的阻塞,以及这种阻塞如何在同种异体产生干扰的情况下有利于自身产生的电传感信息。在比较分析的基础上,我们得出结论,单峰发作的神经元可能在动物的感官行为中发挥多种功能作用。神经元的“响应功能”对电路和任务有特定的适应。相反,完成任务的方式取决于所涉及神经元的固有属性。简而言之,电路中神经元的作用取决于神经元及其功能范围。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号