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Electrophysiological Evidence of Auditory Temporal Perception Related to the Assimilation Between Two Neighboring Time Intervals

机译:与两个相邻时间间隔之间的同化相关的听觉时间知觉的电生理证据

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We conducted two event-related potential (ERP) experiments that examined the mechanisms of auditory temporal assimilation. Stimulus patterns consisted of two neighboring time intervals marked by three successive tone bursts (20 ms, 1000 Hz). Six stimuli were used in which the first time interval (T1) varied from 100 to 280 ms, while the second time interval (T2) was fixed at 200 ms. Two other stimuli of different T1/T2 combinations were employed. Participants judged whether T1 and T2 had the same duration or not by pressing a button. ERPs were recorded from 11 electrodes over the scalp. Behavioral data showed symmetrical assimilation; the participants judged the two neighboring time intervals as equal when the difference between the time intervals (T1-T2) was -40 to +40 ms. Electrophysiological data showed that two ERP components (P300 and CNV) emerged related to the temporal judgment. The P300 appeared in the parietal area at 400 ms after the 2nd tone burst, and its amplitude decreased as a function of T1. The CNV component appeared in the frontal area during T2 presentation, and its amplitude increased as a function of T1. In Experiment 2, 11 stimulus patterns were presented. In seven stimuli, T1 varied from 80 to 320 ms, and T2 was fixed at 200 ms. ERPs were recorded from 19 electrodes over the scalp. In this experiment, behavioral data showed asymmetrical assimilation; participants judged the two neighboring time intervals as equal when T1-T2 was -80 to +40 ms. Consistent with the results of Experiment 1, electrophysiological data showed the P300 and the CNV during T2. In addition, a slow negative component (SNCt) appeared in the right prefrontal area after the 3rd tone burst, and continued up to about 400 ms after the stimuli. The magnitude of this component was smaller when temporal assimilation occurred. These three ERP signatures seem to correlate with the process of temporal assimilation; (a) the P300 augmentation, which could be related to the participants' attention to the 1st interval and reflect the monitoring of the passage of time, (b) the CNV in the frontal area, which might have accompanied the process of memorizing the lengths of the time intervals, and (c) the SNCt in the right prefrontal area, which showed a reduction when temporal assimilation occurred. Our results showed spatiotemporal characteristics of the cortical processing of short time intervals and may assist the neurophysiological understanding of illusions in time and time perception in general.
机译:我们进行了两个事件相关电位(ERP)实验,检查了听觉时间同化的机制。刺激模式由两个相邻的时间间隔组成,这些时间间隔由三个连续的音调突发(20 ms,1000 Hz)标记。使用六个刺激,其中第一时间间隔(T1)从100到280毫秒变化,而第二时间间隔(T2)固定为200毫秒。使用了其他两个不同的T1 / T2组合刺激。参与者通过按下按钮来判断T1和T2的持续时间是否相同。从头皮上的11个电极记录ERPs。行为数据显示对称吸收。当时间间隔(T1-T2)之间的差为-40到+40 ms时,参与者将两个相邻的时间间隔视为相等。电生理数据表明,两个ERP组件(P300和CNV)的出现与时间判断有关。 P300在第二个音调爆发后的400毫秒出现在顶壁区域,其幅度随T1的变化而减小。在T2呈现过程中,CNV分量出现在额叶区域,其振幅随T1的增加而增加。在实验2中,提出了11种刺激模式。在七个刺激中,T1从80到320毫秒不等,T2固定为200毫秒。从头皮上的19个电极记录ERPs。在该实验中,行为数据显示出不对称的同化。当T1-T2为-80到+40 ms时,参与者认为两个相邻时间间隔相等。与实验1的结果一致,电生理数据显示T2期间P300和CNV。另外,在第三个音调爆发后,右前额叶区域出现了一个缓慢的负分量(SNCt),并在刺激后持续了约400 ms。当发生时间同化时,该分量的大小较小。这三个ERP签名似乎与时间同化的过程相关。 (a)P300增强,可能与参与者对第一个间隔的关注有关,并反映了时间的流逝,(b)额叶的CNV,可能伴随着记忆长度的过程时间间隔;(c)右前额叶区域的SNCt,当发生时间同化时,SNCt减小。我们的研究结果显示了短时间间隔的皮层处理的时空特征,并且可能有助于对时间和时间知觉中的错觉的神经生理理解。

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