首页> 外文学位 >The roles of inhibition in hierarchical processing in the auditory system and the response features of inferior colliculus neurons revealed by in vivo whole cell recordings.
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The roles of inhibition in hierarchical processing in the auditory system and the response features of inferior colliculus neurons revealed by in vivo whole cell recordings.

机译:抑制作用在听觉系统的分级处理中以及体内全细胞记录揭示的下丘神经元的响应特征。

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摘要

The inferior colliculus (IC) receives inputs, which include both excitatory and inhibitory projections, from almost all lower auditory nuclei and thus is the major integration center in the auditory pathway. This dissertation evaluated three questions in order to understand the roles of inhibition in shaping response features of IC neurons, and how the influences of inhibition in the IC compare to the roles that inhibition plays in shaping the response properties of neurons in two lower nuclei, the dorsal nucleus of the lateral lemniscus (DNLL) and intermediate nucleus of the lateral lemniscus (INLL).;The first question asks what response features are expressed by cells in the DNLL and INLL, and to what degree those features are shaped by inhibition. The second question asks whether the response properties of IC cells are inherited from lower nuclei and to what degree are they created in the IC by the interactions of excitatory and inhibitory projections. To investigate these questions, I recorded single-unit activity evoked by the same set of stimuli in the three nuclei both before and while inhibition was blocked by iontophoresis of receptor blockers. The results showed that the response features of DNLL and INLL neurons are homogeneous and weakly influenced by inhibition. The response features of IC neurons, however, are heterogeneous and markedly shaped by inhibitory inputs. Thus, DNLL and INLL properties were either largely inherited or shaped by the convergence of excitatory projections, while IC response features were largely created in the IC by inhibition.;The third question asks what intrinsic and synaptic features underlie sound-evoked response properties in IC neurons. These features were evaluated with in vivo whole-cell recordings. Consistent with extracellular studies, a variety of tuning features were revealed among the IC population by whole-cell recordings, but the spectral extent of subthreshold excitatory and inhibitory inputs was surprisingly broad. Particular attention was given to a subset of IC neurons with special features in synaptic responses, discharge features and their intrinsic properties. These features provide unique insights into how sound-evoked synaptic response features and intrinsic properties might interact to produce the discharge features of these novel cells.
机译:下丘脑(IC)从几乎所有下听觉核接收输入,包括兴奋性和抑制性预测,因此是听觉途径的主要整合中心。本论文评估了三个问题,以了解抑制作用在塑造IC神经元反应特征中的作用,以及抑制作用在IC中的作用与抑制作用在塑造两个较低核中神经元的反应特性中所起的作用相比。侧脑膜双侧背核(DNLL)和侧脑膜双侧中核(INLL)。第一个问题是DNLL和INLL中的细胞表达了哪些反应特征,以及这些抑制作用在多大程度上形成了抑制作用?第二个问题是,IC细胞的响应特性是否从较低的核继承而来,并且通过兴奋性和抑制性投射的相互作用在IC中产生多少程度。为了研究这些问题,我记录了在受体阻滞剂的离子电渗疗法阻止和抑制之前和之后,三个核中同一组刺激引起的单单位活性。结果表明,DNLL和INLL神经元的反应特征是同质的,受到抑制的影响较弱。然而,IC神经元的反应特征是异质的,并且受抑制性输入的影响明显。因此,DNLL和INLL特性要么在很大程度上由兴奋性投影的遗传所继承或塑造,而IC响应特征在很大程度上是由抑制作用在IC中产生的;第三个问题是,哪些固有和突触特征是IC诱发声音的响应特性的基础神经元。通过体内全细胞记录评估这些特征。与细胞外研究一致,全细胞记录在IC人群中揭示了多种调节功能,但阈下兴奋性和抑制性输入的光谱范围却令人惊讶。特别注意了在突触反应,放电特征及其固有特性方面具有特殊特征的IC神经元子集。这些特征提供了关于声诱发的突触反应特征和内在特性如何相互作用以产生这些新型细胞的放电特征的独特见解。

著录项

  • 作者

    Xie, Ruili.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Neurosciences.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:09

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