首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Spectrotemporal resolution tradeoff in auditory processing as revealed by human auditory brainstem responses and psychophysical indices
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Spectrotemporal resolution tradeoff in auditory processing as revealed by human auditory brainstem responses and psychophysical indices

机译:听觉处理中的光谱仪器分辨率权衡,人类听觉脑干响应和心理物理指数揭示

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Auditory filter theory dictates a physiological compromise between frequency and temporal resolution of cochlear signal processing. We examined neurophysiological correlates of these spectrotemporal tradeoffs in the human auditory system using auditory evoked brain potentials and psychophysical responses. Temporal resolution was assessed using scalp-recorded auditory brainstem responses (ABRs) elicited by paired clicks. The inter-click interval (ICI) between successive pulses was parameterized from 0.7 to 25 ms to map ABR amplitude recovery as a function of stimulus spacing. Behavioral frequency difference limens (FDLs) and auditory filter selectivity (Q_(10) of psychophysical tuning curves) were obtained to assess relations between behavioral spectral acuity and electrophysiological estimates of temporal resolvability. Neural responses increased monotonically in amplitude with increasing ICI, ranging from total suppression (0.7 ms) to full recovery (25 ms) with a temporal resolution of ~3-4 ms. ABR temporal thresholds were correlated with behavioral Q_(10) (frequency selectivity) but not FDLs (frequency discrimination); no correspondence was observed between Q_(10) and FDLs. Results suggest that finer frequency selectivity, but not discrimination, is associated with poorer temporal resolution. The inverse relation between ABR recovery and perceptual frequency tuning demonstrates a time-frequency tradeoff between the temporal and spectral resolving power of the human auditory system.
机译:听觉过滤理论决定了耳蜗信号处理的频率和时间分辨率之间的生理折衷。我们使用听觉诱发的脑潜在和心理物理反应检查了人类听觉系统中这些光谱仪权衡的神经生理学相关性。使用由成对点击咔嗒声引出的头皮记录的听觉脑干响应(ABR)进行评估时间分辨率。连续脉冲之间的单击间隔(ICI)从0.7到25ms参数化,以将ABR振幅恢复映射为刺激间距。获得了行为频率差异限制(FDL)和听觉过滤器选择性(心理物理调谐曲线的Q_(10)),以评估行为光谱敏锐度与时态分解性的电生理估计之间的关系。神经响应随着ICI的增加而单调的振幅增加,从总抑制(0.7ms)到全恢复(25毫秒),时间分辨率为〜3-4毫秒。 ABR时间阈值与行为Q_(10)(频率选择性)相关,但不是FDLS(频率辨别); Q_(10)和FDL之间没有观察到对应。结果表明,频率选择性更精细,但不是歧视,与较差的时间分辨率相关联。 ABR恢复和感知频率调谐之间的逆关系演示了人类听觉系统的时间和光谱分辨率之间的时频折衷。

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