Institute for Intelligent Systems, University of Memphis, Memphis, TN, USA; School of Communication Sciences & Disorders, University of Memphis, Memphis, TN, USA.
School of Communication Sciences & Disorders, University of Memphis, Memphis, TN, USA.
Neurosci Lett. 2014 Jun 20;572:53-7. doi: 10.1016/j.neulet.2014.04.037. Epub 2014 May 2.
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 (Q10 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 Q10 (frequency selectivity) but not FDLs (frequency discrimination); no correspondence was observed between Q10 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.
听觉滤波器理论表明,耳蜗信号处理的频率和时间分辨率之间存在生理上的折衷。我们使用听觉诱发脑电位和心理物理反应来研究人类听觉系统中这些频谱时间权衡的神经生理相关性。使用头皮记录的听觉脑干反应 (ABR) 评估时间分辨率,该反应由成对的点击引发。相继脉冲之间的刺激间隔(ICI)从 0.7 毫秒到 25 毫秒进行参数化,以作为刺激间隔的函数来绘制 ABR 幅度恢复。获得行为频率差异极限 (FDL) 和听觉滤波器选择性 (心理物理调谐曲线的 Q10),以评估行为频谱锐度与电生理估计的时间可分辨性之间的关系。随着 ICI 的增加,神经反应的幅度单调增加,范围从完全抑制(0.7 毫秒)到完全恢复(25 毫秒),时间分辨率约为 3-4 毫秒。ABR 时间阈值与行为 Q10(频率选择性)相关,但与 FDL(频率分辨力)不相关;Q10 和 FDL 之间没有对应关系。结果表明,更精细的频率选择性,而不是分辨力,与较差的时间分辨率相关。ABR 恢复与感知频率调谐之间的反比关系证明了人类听觉系统的时间-频率分辨率之间存在权衡。