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Spike-Timing Codes Enhance the Representation of Multiple Simultaneous Sound-Localization Cues in the Inferior Colliculus

机译:尖峰计时代码增强了下腔囊中多个同时声音定位提示的表示

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摘要

To preserve multiple streams of independent information that converge onto a neuron, the information must be re-represented more efficiently in the neural response. Here we analyze the increase in the representational capacity of spike timing over rate codes using sound localization cues as an example.The inferior colliculus receives convergent input from multiple auditory brainstem nuclei, including sound localization information such as interaural level differences (ILDs), interaural timing differences (ITDs), and spectral cues. Virtual space techniques were used to create stimulus sets varying in two sound-localization parameters each. Information about the cues was quantified using a spike distance metric that allows one to separate contributions to the information arising from spike rate and spike timing.Spike timing enhances the representation of spectral and ILD cues at timescales averaging 12 ms. ITD information, however, is carried by a rate code. Comparing responses to frozen and random noise shows that the temporal information is mainly attributable to phase locking to temporal stimulus features, with an additional first-spike latency component. With rate-based codes, there is significant confounding of information about two cues presented simultaneously, meaning that the cues cannot be decoded independently. Spike-timing-based codes reduce this confounded information. Furthermore, the relative representation of the cues often changes as a function of the time resolution of the code, implying that information about multiple cues can be multiplexed onto individual spike trains.
机译:为了保留汇聚到神经元上的多个独立信息流,必须在神经反应中更有效地重新表示信息。在此我们以声音定位提示为例分析尖峰时间在速率代码上的表示能力的增加。下丘丘从多个听觉脑干核接收会聚的输入,包括声音定位信息,如耳间水平差(ILD),耳间定时差异(ITD)和频谱提示。虚拟空间技术用于创建每个声音定位参数都不同的刺激集。有关提示的信息使用尖峰距离度量进行量化,该距离度量可以使对尖峰速率和尖峰定时产生的信息的贡献分开。尖峰定时增强了平均时间为12 ms的频谱和ILD提示的表示。但是,ITD信息由费率代码携带。比较对冻结噪声和随机噪声的响应表明,时间信息主要归因于时间刺激特征的相位锁定,以及额外的第一尖峰潜伏时间分量。对于基于速率的代码,有关同时显示的两个提示的信息存在很大的混淆,这意味着无法独立解码这些提示。基于尖峰定时的代码减少了这种混杂的信息。此外,提示的相对表示经常根据代码的时间分辨率而变化,这意味着可以将有关多个提示的信息多路复用到各个峰值序列上。

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