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Entire Sound Representations Are Time-Compressed in Sensory Memory: Evidence from MMN

机译:整个声音表示在感觉记忆中受时间压缩:来自MMN的证据

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摘要

In order to examine the encoding of partial silence included in a sound stimulus in neural representation, time flow of the sound representations was investigated using mismatch negativity (MMN), an ERP component that reflects neural representation in auditory sensory memory. Previous work suggested that time flow of auditory stimuli is compressed in neural representations. The stimuli used were a full-stimulus of 170 ms duration, an early-gap stimulus with silence for a 20–50 ms segment (i.e., an omitted segment), and a late-gap stimulus with an omitted segment of 110–140 ms. Peak MMNm latencies from oddball sequences of these stimuli, with a 500 ms SOA, did not reflect time point of the physical gap, suggesting that temporal information can be compressed in sensory memory. However, it was not clear whether the whole stimulus duration or only the omitted segment duration is compressed. Thus, stimuli were used in which the gap was replaced by a tone segment with a 1/4 sound pressure level (filled), as well as the gap stimuli. Combinations of full-stimuli and one of four gapped or filled stimuli (i.e., early gap, late gap, early filled, and late filled) were presented in an oddball sequence (85 vs. 15%). If compression occurs only for the gap duration, MMN latency for filled stimuli should show a different pattern from those for gap stimuli. MMN latencies for the filled conditions showed the same pattern as those for the gap conditions, indicating that the whole stimulus duration rather than only gap duration is compressed in sensory memory neural representation. These results suggest that temporal aspects of silence are encoded in the same manner as physical sound.
机译:为了检查神经表示中声音刺激中包含的部分沉默的编码,我们使用失配负性(MMN)(一种在听觉感觉记忆中反映神经表示的ERP组件)研究了声音表示的时间流。先前的工作表明,听觉刺激的时间流在神经表征中被压缩。所使用的刺激是持续时间为170 ms的完全刺激,具有20–50 ms片段(即省略的片段)的沉默的早期间隙刺激和具有110-140 ms的省略片段的晚期间隙的刺激。 。来自这些刺激的奇异球序列的峰值MMNm潜伏期(具有500 ms的SOA)不能反映物理间隙的时间点,这表明可以在感觉记忆中压缩时间信息。但是,尚不清楚是整个刺激持续时间还是仅压缩了省略的片段持续时间。因此,使用了其中间隙被具有1/4声压级(填充的)的音段代替的刺激以及间隙刺激。完整刺激和四个间隙或填充刺激之一(即早期间隙,晚期间隙,早期填充和晚期填充)的组合以奇数球序列显示(85比15%)。如果压缩仅在间隙持续时间内发生,则填充刺激的MMN潜伏期应显示与间隙刺激不同的模式。填充条件下的MMN潜伏期与间隙条件下的潜伏期相同,表明在感觉记忆神经表示中压缩了整个刺激持续时间,而不仅仅是间隙持续时间。这些结果表明,沉默的时间方面与物理声音的编码方式相同。

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