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在时间和频率上分离的光谱和时间线索的整合。

Integration of spectral and temporal cues separated in time and frequency.

作者信息

Espinoza-Varas B, Jamieson D G

出版信息

J Acoust Soc Am. 1984 Sep;76(3):732-8. doi: 10.1121/1.391259.

Abstract

Subjects discriminated a "standard" pair of tone bursts (T1, T2) from a "comparison" pair (T1 + delta t, T2 + delta f), containing increments in the duration delta t of the first burst and/or the frequency delta f of the second burst. The threshold (d' = 2.0) for delta t was measured as a function of delta f, and the threshold for delta f as a function of delta t. The integration of increments in duration and frequency was studied as a function of the spectral and temporal separation between T1 and T2. A trade-off between the values of delta t and delta f required for d' = 2.0 performance was observed. This integration takes place when delta t, delta f occur simultaneously in the same spectral region, and when they occur separated by up to 120 ms, or by up to a full octave. The efficiency of integration was similar for all conditions of temporal and spectral separation studied, because the discriminability of delta t and of delta f is also nearly uniform across experimental conditions. The results from all experimental conditions are adequately described by a vector summation model derived from TSD. In a subsidiary experiment, subjects categorized pure tones varying in duration and frequency as "high" or "low" in pitch and "long" or "short" in duration. It was found that combined variations in duration and frequency result in essentially independent perceptual processes, although pitch has a small effect upon the perceived duration. It is concluded that spectral-temporal integration is a general ability operating in a variety of stimulus conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

受试者要从一对“比较”的音脉冲(T1 + Δt,T2 + Δf)中辨别出一对“标准”音脉冲(T1,T2),其中第一个音脉冲的持续时间Δt和/或第二个音脉冲的频率Δf有所增加。测量了Δt的阈值(d' = 2.0)作为Δf的函数,以及Δf的阈值作为Δt的函数。研究了持续时间和频率增加量的整合情况,作为T1和T2之间频谱和时间间隔的函数。观察到在d' = 2.0的表现下,Δt和Δf的值之间存在权衡。当Δt、Δf在同一频谱区域同时出现,以及它们相隔长达120毫秒或整整一个八度时,这种整合就会发生。在所研究的所有时间和频谱间隔条件下,整合效率相似,因为在不同实验条件下,Δt和Δf的可辨别性也几乎是一致的。所有实验条件的结果都可以通过从TSD推导出来的向量求和模型得到充分描述。在一个辅助实验中,受试者将持续时间和频率不同的纯音归类为音高“高”或“低”、持续时间“长”或“短”。结果发现,持续时间和频率的组合变化会导致基本上独立的感知过程,尽管音高对感知到的持续时间有很小的影响。得出的结论是,频谱-时间整合是一种在各种刺激条件下都起作用的一般能力。(摘要截断于250字)

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