...
首页> 外文期刊>Journal of Neurophysiology >Intrinsic physiological properties underlie auditory response diversity in the avian cochlear nucleus
【24h】

Intrinsic physiological properties underlie auditory response diversity in the avian cochlear nucleus

机译:内在生理特性在禽耳蜗核中的听觉反应多样性

获取原文
获取原文并翻译 | 示例

摘要

Sensory systems exploit parallel processing of stimulus features to enable rapid, simultaneous extraction of information. Mechanisms that facilitate this differential extraction of stimulus features can be intrinsic or synaptic in origin. A subdivision of the avian cochlear nucleus, nucleus angularis (NA), extracts sound intensity information from the auditory nerve and contains neurons that exhibit diverse responses to sound and current injection. NA neurons project to multiple regions ascending the auditory brain stem including the superior olivary nucleus, lateral lemniscus, and avian inferior colliculus, with functional implications for inhibitory gain control and sound localization. Here we investigated whether the diversity of auditory response patterns in NA can be accounted for by variation in intrinsic physiological features. Modeled sound-evoked auditory nerve input was applied to NA neurons with dynamic clamp during in vitro whole cell recording at room temperature. Temporal responses to auditory nerve input depended on variation in intrinsic properties, and the low-threshold K+ current was implicated as a major contributor to temporal response diversity and neuronal input-output functions. An auditory nerve model of acoustic amplitude modulation produced synchrony coding of modulation frequency that depended on the intrinsic physiology of the individual neuron. In Primary-Like neurons, varying low-threshold K+ conductance with dynamic clamp altered temporal modulation tuning bidirectionally. Taken together, these data suggest that intrinsic physiological properties play a key role in shaping auditory response diversity to both simple and more naturalistic auditory stimuli in the avian cochlear nucleus.
机译:感官系统利用刺激功能的并行处理,以实现快速,同时提取信息。促进这种差异提取刺激特征的机制可以是内在的或突触原点。禽流耳蜗核,核角突(NA)的细分,提取来自听觉神经声强信息并且包含表现出对声音和电流注入多样响应神经元。 Na神经元突出到多个区域上升听觉脑干,包括优质橄榄核,横向Lemniscus和禽劣质小学,具有抑制增益控制和声音定位的功能影响。在这里,我们调查了NA中的听觉反应模式的多样性是否可以通过内在生理特征的变异来占据。在室温下在体外细胞记录期间将模型的声音诱发听觉神经输入应用于具有动态夹具的Na神经元。对听觉神经输入的时间响应依赖于内在特性的变化,低阈值K +电流涉及时间响应多样性和神经元输入函数的主要贡献者。声振幅调制的听觉神经模型产生同步调制频率的编码的是依赖于个体神经元的固有生理学。在原代神经元中,用动态钳位改变低阈值K +电导,改变了双向的时间调制调整。在一起,这些数据表明,内在的生理特性在塑造听觉响应多样性在禽耳蜗核中的简单和更自然的听觉刺激方面发挥着关键作用。

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