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Difference in Response Reliability Predicted by Spectrotemporal Tuning in the Cochlear Nuclei of Barn Owls

机译:谷仓猫头鹰耳蜗核的光谱时域调谐预测的响应可靠性差异。

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摘要

The brainstem auditory pathway is obligatory for all aural information. Brainstem auditory neurons must encode the level and timing of sounds, as well as their time-dependent spectral properties, the fine structure, and envelope, which are essential for sound discrimination. This study focused on envelope coding in the two cochlear nuclei of the barn owl, nucleus angularis (NA) and nucleus magnocellularis (NM). NA and NM receive input from bifurcating auditory nerve fibers and initiate processing pathways specialized in encoding interaural time (ITD) and level (ILD) differences, respectively. We found that NA neurons, although unable to accurately encode stimulus phase, lock more strongly to the stimulus envelope than NM units. The spectrotemporal receptive fields (STRFs) of NA neurons exhibit a pre-excitatory suppressive field. Using multilinear regression analysis and computational modeling, we show that this feature of STRFs can account for enhanced across-trial response reliability, by locking spikes to the stimulus envelope. Our findings indicate a dichotomy in envelope coding between the time and intensity processing pathways as early as at the level of the cochlear nuclei. This allows the ILD processing pathway to encode envelope information with greater fidelity than the ITD processing pathway. Furthermore, we demonstrate that the properties of the STRFs of the neurons can be quantitatively related to spike timing reliability.
机译:脑干听觉通路对所有听觉信息都是必不可少的。脑干听觉神经元必须对声音的水平和时间进行编码,以及它们随时间变化的频谱特性,精细的结构和包络,这对于区分声音至关重要。这项研究侧重于谷仓猫头鹰的两个耳蜗核中的包膜编码,即角核(NA)和大细胞核(NM)。 NA和NM从分叉的听觉神经纤维接收输入,并分别启动专门编码听觉时间(ITD)和水平(ILD)差异的处理途径。我们发现,NA神经元虽然无法准确编码刺激相位,但与NM单位相比,其对刺激包膜的锁定更强。 NA神经元的光谱时间接受域(STRFs)表现出兴奋前抑制域。使用多线性回归分析和计算模型,我们证明了STRF的这一功能可以通过将峰值锁定在刺激包络上来说明增强的跨试验响应可靠性。我们的发现表明,早在耳蜗核水平,时间和强度加工途径之间的包膜编码就存在分歧。这允许ILD处理路径比ITD处理路径以更高的保真度编码信封信息。此外,我们证明了神经元的STRFs的属性可以定量与尖峰定时可靠性。

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